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Provide tags and a correct Python 3 solution for this coding contest problem. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Tags: brute force, constructive algorithms, greedy, math, strings Correct Solution: ``` n = int(input()) if n == 1: print("codeforces") exit() num = 1 while num ** 10 < n: num += 1 s = list("codeforces") temp = 10 for i in reversed(range(11)): if ((num ** i) * ((num - 1) ** (10 - i))) < n: temp = i + 1 break ans = "" for i in range(10): ans += s[i] * num if i + 1 == temp: num -= 1 print(ans) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Tags: brute force, constructive algorithms, greedy, math, strings Correct Solution: ``` def tc(): k = int(input()) base = 1 while pow(base, 10) < k: base += 1 less = 0 while pow(base, 10 - less) * pow(base - 1, less) > k: less += 1 if pow(base, 10 - less) * pow(base - 1, less) < k: less -= 1 ans = '' s = 'codeforces' for ch in s[:less]: ans += ch * (base - 1) for ch in s[less:]: ans += ch * base print(ans) ################################ # T = int(input()) # for _ in range(T): # tc() tc() ```
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Provide tags and a correct Python 3 solution for this coding contest problem. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Tags: brute force, constructive algorithms, greedy, math, strings Correct Solution: ``` def prod(arr): ans=1 for i in arr: ans *= i return ans def find_opt(arr,n): if(prod(arr)>=n): return arr m = min(arr) min_idx = arr.index(m) arr[min_idx]+=1 return find_opt(arr,n) n = int(input()) arr = find_opt([1]*10,n) ans = "" brr =['c','o','d','e','f','o','r','c','e','s'] for i in range(10): ans += brr[i]*arr[i] print(ans) ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Tags: brute force, constructive algorithms, greedy, math, strings Correct Solution: ``` a=int(input()) l=[0,0,0,0,0,0,0,0,0,0] id=0 g=1 while(1): g=1 if id==10: id=0 g=1 for j in range(10): g=g*l[j] if g>=a: break l[id]=l[id]+1 id=id+1 for i in range(l[0]): print('c',end='') for i in range(l[1]): print('o',end='') for i in range(l[2]): print('d',end='') for i in range(l[3]): print('e',end='') for i in range(l[4]): print('f',end='') for i in range(l[5]): print('o',end='') for i in range(l[6]): print('r',end='') for i in range(l[7]): print('c',end='') for i in range(l[8]): print('e',end='') for i in range(l[9]): print('s',end='') ```
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Submitted Solution: ``` n=int(input()) l=[1]*10 p=1 j=0 while(p<n): k=l[j] l[j]+=1 p=(p//k)*l[j] j=(j+1)%10 ss='codeforces' m = [ ss[i]*l[i] for i in range(10)] print(''.join(m)) ``` Yes
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Submitted Solution: ``` k = int(input()) def product(s): res = 1 for e in s: res *= e return res string = "codeforces" nums = [1, 1, 1, 1, 1, 1, 1, 1, 1, 1] index = 0 while True: p = product(nums) if p < k: nums[index] += 1 index = (index + 1) % len(nums) else: break result = "" for i, e in enumerate(nums): result += e * string[i] print(result) ``` Yes
97,142
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Submitted Solution: ``` k = int(input()) def getperm(occ): val = 1 for v in occ: val *= v return val letters = ['c', 'o', 'd', 'e', 'f', 'o', 'r', 'c', 'e', 's'] occurences = [1 for x in range(len(letters))] permutations = 1 location = 0 while getperm(occurences) < k: occurences[location] += 1 location += 1 location %= len(occurences) for i, v in enumerate(occurences): print(letters[i]*v, end='') print() ``` Yes
97,143
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Submitted Solution: ``` # -*- coding: utf-8 -*- """ Created on Wed Jun 24 09:24:46 2020 @author: Dark Soul """ def mult(x): res=1 for i in range(len(x)): x[i]=int(x[i]) res=res*x[i] return res import math n=input('') n=int(n) k=0 sign=0 cnt=[1,1,1,1,1,1,1,1,1,1] str=['c','o','d','e','f','o','r','c','e','s'] str_final='' i=0 j=0 while mult(cnt)<=n: if mult(cnt)==n: break; cnt[i]=cnt[i]+1 i=i+1 if i>9: i=0 for i in range(10): str_final=str_final+str[i]*cnt[i] print(str_final) ``` Yes
97,144
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Submitted Solution: ``` import math k = int(input()) new = int(math.ceil(math.log2(k)) / 10) # print(new) new2 = math.ceil(math.log2(k)) % 10 # print(new2) orig = list('codeforces') ans = '' if new > 0: for i in range(10): ans += orig[i] * ((1 + new + (i < new2)) * new) else: for i in range(10): ans += orig[i] * (1 + new + (i < new2)) print(ans) ``` No
97,145
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Submitted Solution: ``` from math import inf as inf from math import * from collections import * import sys from itertools import permutations input=sys.stdin.readline t=1 while(t): t-=1 n=int(input()) if(n==1): print("codeforces") continue l=[[1,'c'],[1,'o'],[1,'d'],[1,'e'],[1,'f'],[1,'o'],[1,'r'],[1,'c'],[1,'e'],[1,'s']] p=1 c1=0 while(p<n): p=p*2 c1+=1 for i in range(c1): l[i%10][0]*=2 for i in l: print(i[1]*i[0],end="") print() ``` No
97,146
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Submitted Solution: ``` import math def solve(): t = int(input()) current = 0 letters = ['c', 'o', 'd', 'e', 'f', 'o', 'r', 'c', 'e', 's'] arr = [1] * len(letters) product = 1 power = 2 while product < t: arr[current] += 1 product *= power current += 1 if current == len(letters): current = 0 for i in range(len(letters)): print(letters[i] * arr[i], end="") print() solve() ``` No
97,147
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Karl likes Codeforces and subsequences. He wants to find a string of lowercase English letters that contains at least k subsequences codeforces. Out of all possible strings, Karl wants to find a shortest one. Formally, a codeforces subsequence of a string s is a subset of ten characters of s that read codeforces from left to right. For example, codeforces contains codeforces a single time, while codeforcesisawesome contains codeforces four times: codeforcesisawesome, codeforcesisawesome, codeforcesisawesome, codeforcesisawesome. Help Karl find any shortest string that contains at least k codeforces subsequences. Input The only line contains a single integer k (1 ≤ k ≤ 10^{16}). Output Print a shortest string of lowercase English letters that contains at least k codeforces subsequences. If there are several such strings, print any of them. Examples Input 1 Output codeforces Input 3 Output codeforcesss Submitted Solution: ``` k = int(input()) primes = [] a = 2 while k >= a*a: while k % a == 0: primes.append(a) k //= a a += 1 if k != 1: primes.append(k) primes = list(reversed(sorted(primes))) K = [1] * 10 for p in primes: idx = K.index(min(K)) K[idx] *= p s = [c*K[i] for i, c in enumerate('codeforces')] print(''.join(s)) ``` No
97,148
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Tags: data structures, greedy, strings Correct Solution: ``` def mergesort(l,n): if n==1: return l,0 else: a,ans1=mergesort(l[0:n//2],n//2) b,ans2=mergesort(l[n//2:],n-n//2) c,ans3=combine(a,n//2,b,n-n//2) #print (c,ans1,ans2,ans3) return (c,ans1+ans2+ans3) def combine(l1,n,l2,m): i=0 j=0 ans=[] inversions=0 while (i<n and j<m): if l1[i]<=l2[j]: ans.append(l1[i]) i+=1 else: ans.append(l2[j]) inversions += n-i j+=1 if i==n: for k in range(j,m): ans.append(l2[k]) elif j==m: for k in range(i,n): ans.append(l1[k]) return (ans,inversions) n = int(input()) start = input() s = start[::-1] loc = {} for i in range(n): if s[i] in loc: loc[s[i]].append(i) else: loc[s[i]] = [i] new = {} for i in loc: new[i] = loc[i][::-1] arr = [] for i in range(n): arr.append(new[start[i]].pop()) # print (arr) print (mergesort(arr, len(arr))[1]) ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Tags: data structures, greedy, strings Correct Solution: ``` import functools import datetime import math import collections import heapq maxn = int(2e5 + 5) n = int(input()) s = input() t = s[::-1] a = [[] for i in range(31)] # for i in range(30): # a.append([]) tree = [0] * maxn num = [0] * maxn g = [0] * 30 def lowbit(x): return x & (-x) def tadd(x, val): while x <= maxn: tree[x] += val x += lowbit(x) def tsum(x): ans = 0 while x > 0: ans += tree[x] x -= lowbit(x) return ans for i in range(0, len(t)): ch = ord(t[i]) - ord('a') a[ch].append(i) for i in range(0, len(s)): ch = ord(s[i]) - ord('a') num[i] = a[ch][g[ch]] g[ch] += 1 ans = 0 for i in range(0, len(s)): tadd(num[i] + 1, 1) # print(i+1-tsum(num[i]+1)) ans += i + 1 - tsum(num[i] + 1) print(ans) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Tags: data structures, greedy, strings Correct Solution: ``` N = int(input()) S = input() dic = {} for i, s in enumerate(S): if s in dic: dic[s].append(i) else: dic[s] = [i] X = list(range(N-1, -1, -1)) for c, idcs in dic.items(): for p, q in zip(idcs, reversed(idcs)): X[p] = N-1-q class BIT(): def __init__(self, N): self.N = N self.T = [0]*(N+1) def add(self, i, x): i += 1 while i <= self.N: self.T[i] += x i += i & -i def _sum(self, i): #[0,i) ret = 0 while i > 0: ret += self.T[i] i ^= i & -i return ret def sum(self, l, r): #[l,r) return self._sum(r)-self._sum(l) def lower_bound(self, w): if w <= 0: return 0 x = 0 k = 1<<self.N.bit_length() while k: if x+k <= self.N and self.T[x+k] < w: w -= self.t[x+k] x += k k >>= 1 return x+1 b = BIT(N) ans = 0 for i, x in enumerate(X): ans += i - b._sum(x+1) b.add(x, 1) print(ans) ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Tags: data structures, greedy, strings Correct Solution: ``` # cook your dish here import heapq import collections from math import log2 import itertools from functools import lru_cache from sys import setrecursionlimit as srl srl(2*10**6) N = 200001 class fenwick: def __init__(self,n): self.n = n self.arr = [0]*(n+1) def update(self,ind,x): if ind <= 0: return while ind <= self.n: self.arr[ind] += x ind += (ind)&(-ind) def query(self,ind): s = 0 while ind > 0: s += self.arr[ind] ind -= (ind)&(-ind) return s def solve(n,s): fen = fenwick(n+1) inv = 0 t = s[::-1] chars = collections.defaultdict(collections.deque) for i in range(n): chars[ord(s[i])-ord('a')].append(i) for i in range(n): v = chars[ord(t[i])-ord('a')].popleft() fen.update(v+1,1) v += (i+1)-fen.query(v+1) inv += v-i return inv n = int(input()) s = input() print(solve(n,s)) ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Tags: data structures, greedy, strings Correct Solution: ``` def mergeSortswap(arr): if len(arr) >1: mid = len(arr)//2 L = arr[:mid] R = arr[mid:] # into 2 halves x = mergeSortswap(L) # Sorting the first half y = mergeSortswap(R) i = j = k = 0 z = 0 while i < len(L) and j < len(R): if L[i] < R[j]: arr[k] = L[i] i+= 1 else: arr[k] = R[j] z += (mid-i) j+= 1 k+= 1 while i < len(L): arr[k] = L[i] i+= 1 k+= 1 while j < len(R): arr[k] = R[j] j+= 1 k+= 1 return z+x+y else: return 0 import collections,bisect n = int(input()) s = input().strip(' ') d = collections.defaultdict(collections.deque) s_reverse = s[::-1] if s == s_reverse: print(0) else: for i in range(n): d[s_reverse[i]].append(i) to_sort = [] for i in range(n): ind = d[s[i]].popleft() to_sort.append(ind) c = mergeSortswap(to_sort) print(c) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Tags: data structures, greedy, strings Correct Solution: ``` n = int(input()) s = input() SZ = 30 lim = n + 233 g = [[] for i in range(SZ)] a = [0] * SZ for i in range(n): cur = ord(s[i]) - 97 g[cur].append(i) bit = [0] * (lim+1) def lowbit(x): return x & (-x) def add(pos, val): while pos <= lim: bit[pos] += val pos += lowbit(pos) def query(pos): res = 0 while pos: res += bit[pos] pos -= lowbit(pos) return res ans = 0 for i in range(n-1, -1, -1): cur = ord(s[i]) - 97 val = g[cur][a[cur]] ans += val - query(val+1) a[cur] += 1 add(val+1, 1) print(ans) ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Tags: data structures, greedy, strings Correct Solution: ``` import sys input=sys.stdin.readline def segment_tree(ar,n): data=[0]*n+ar.copy() for i in range(n-1,0,-1): data[i]+=(data[i*2]+data[i*2+1]) return data def update(data,idx,n,value): idx+=n data[idx]+=value while(idx>1): idx//=2 data[idx]+=value def summation(data,l,r,n): l+=n r+=n maxi=0 while(l<r): if(l%2!=0): maxi+=data[l] l+=1 if(r%2!=0): r-=1 maxi+=data[r] l//=2 r//=2 return maxi n=int(input()) st=list(input())[:-1] ar=[] dic={} for i in range(n): ar.append(1) if(st[i] in dic): dic[st[i]].append(i) else: dic[st[i]]=[i] ar[0]=0 for i in dic: dic[i]=dic[i][::-1] rev=st[::-1] data=segment_tree(ar, n) ans=0 for i in range(n): cur=rev[i] ind=dic[cur].pop() ind1=summation(data, 0, ind+1, n) tem=ind1-i ans+=tem if(tem): update(data, 0, n, 1) update(data,ind,n,-ar[ind]) print(ans) ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Tags: data structures, greedy, strings Correct Solution: ``` from collections import defaultdict, Counter class FenwickTree: def __init__(self, n): self.tree = [0] * (n + 1) def _get(self, x): res = 0 while x >= 1: res += self.tree[x] x -= x & -x return res def get(self, l, r): return self._get(r) - self._get(l - 1) def add(self, x, d): while x < len(self.tree): self.tree[x] += d x += x & -x def inversions(a): n = len(a) res = 0 count = FenwickTree(n) for e in a: res += count.get(e + 1, n) count.add(e, 1) return res n = int(input()) s = input() d = defaultdict(list) for i, e in enumerate(s[::-1]): d[e].append(i + 1) c = Counter() a = [] for e in s: a.append(d[e][c[e]]) c[e] += 1 print(inversions(a)) ```
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Submitted Solution: ``` from collections import defaultdict, deque from heapq import heappush, heappop from math import inf ri = lambda : map(int, input().split()) ro = lambda : int(input()) class FW: def __init__(self, N): self.A = [0] * (N + 1) def add(self, idx, val): while idx < len(self.A): self.A[idx] += val idx += idx & -idx def qry(self, idx): sm = 0 while idx > 0: sm += self.A[idx] idx -= idx & -idx return sm def solve(): n = ro() fw = FW(n) s = input() rev = s[::-1] cnt = defaultdict(int) indexes = defaultdict(list) for i in range(n): indexes[rev[i]].append(i) inv = [] for i in range(n): inv.append(indexes[s[i]][cnt[s[i]]]) cnt[s[i]] += 1 ans = 0 for i in range(n-1, -1, -1): ans += fw.qry(inv[i]+1) fw.add(inv[i]+1, 1) print(ans) t = 1 #t = int(input()) while t: t -= 1 solve() ``` Yes
97,191
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Submitted Solution: ``` # aadiupadhyay from heapq import heappop import os.path from math import gcd, floor, ceil from collections import * import sys from heapq import * mod = 1000000007 INF = float('inf') def st(): return list(sys.stdin.readline().strip()) def li(): return list(map(int, sys.stdin.readline().split())) def mp(): return map(int, sys.stdin.readline().split()) def inp(): return int(sys.stdin.readline()) def pr(n): return sys.stdout.write(str(n)+"\n") def prl(n): return sys.stdout.write(str(n)+" ") if os.path.exists('input.txt'): sys.stdin = open('input.txt', 'r') sys.stdout = open('output.txt', 'w') def solve(): def update(ind, val): while ind <= n: BIT[ind] += val ind += ind & -ind def query(ind): su = 0 while ind > 0: su += BIT[ind] ind -= ind & -ind return su n = inp() s = ['&']+st() d = defaultdict(list) n += 1 for i in range(1, n): d[s[i]].append(i) BIT = [0]*(n+2) ans = 0 p = [0]*(n+1) for i in range(n-1, 0, -1): last = d[s[n-i]].pop() p[i] = last for i in range(1, n): c = query(n) - query(p[i]) ans += c update(p[i], 1) pr(ans) for _ in range(1): solve() ``` Yes
97,192
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0
Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Submitted Solution: ``` import os import sys from io import BytesIO, IOBase _str = str BUFSIZE = 8192 def str(x=b''): return x if type(x) is bytes else _str(x).encode() class FastIO(IOBase): newlines = 0 def __init__(self, file): self._fd = file.fileno() self.buffer = BytesIO() self.writable = 'x' in file.mode or 'r' not in file.mode self.write = self.buffer.write if self.writable else None def read(self): while True: b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE)) if not b: break ptr = self.buffer.tell() self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr) self.newlines = 0 return self.buffer.read() def readline(self): while self.newlines == 0: b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE)) self.newlines = b.count(b'\n') + (not b) ptr = self.buffer.tell() self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr) self.newlines -= 1 return self.buffer.readline() def flush(self): if self.writable: os.write(self._fd, self.buffer.getvalue()) self.buffer.truncate(0), self.buffer.seek(0) class IOWrapper(IOBase): def __init__(self, file): self.buffer = FastIO(file) self.flush = self.buffer.flush self.writable = self.buffer.writable self.write = lambda s: self.buffer.write(s.encode('ascii')) self.read = lambda: self.buffer.read().decode('ascii') self.readline = lambda: self.buffer.readline().decode('ascii') def inp(): return sys.stdin.readline().rstrip() def mpint(): return map(int, inp().split(' ')) def itg(): return int(inp()) # ############################## import # from ACgenerator.Y_Testing import get_code from collections import defaultdict def discretization(iterable): """ [1, 2, 4, 2, 5] -> [0, 1, 2, 1, 3] """ iterable = tuple(iterable) restore = sorted(set(iterable)) return list(map(dict(zip(restore, range(len(restore)))).__getitem__, iterable)), restore class Fenwick: """ Simpler FenwickTree """ def __init__(self, x): self.bit = [0] * x def update(self, idx, x): """updates bit[idx] += x""" while idx < len(self.bit): self.bit[idx] += x idx |= idx + 1 def query(self, end): """calc sum(bit[:end])""" x = 0 while end: x += self.bit[end - 1] end &= end - 1 return x def findkth(self, k): """ Find largest idx such that sum(bit[:idx]) < k (!) different from pyrival (just removed the '=') """ idx = -1 for d in reversed(range(len(self.bit).bit_length())): right_idx = idx + (1 << d) if right_idx < len(self.bit) and k > self.bit[right_idx]: idx = right_idx k -= self.bit[idx] return idx + 1 def inversion(iterable): """ the number of j s.t (a[i] > a[j]) and (i < j) for each i Example: inversion([2, 3, 4, 2, 1]) [1, 2, 2, 1, 0] """ iterable = discretization(iterable)[0] index = len(iterable) bit = Fenwick(index) result = [0] * index for item in reversed(iterable): index -= 1 result[index] = bit.query(item) bit.update(item, 1) return result def discrete_by_permutation(seq1, seq2): """ 'teenager', 'generate' -> 61325074 """ seq1, seq2 = reversed(seq1), tuple(seq2) d_stack = defaultdict(lambda: []) for index, item in enumerate(seq2): d_stack[item].append(index) return list(reversed([d_stack[item].pop() for item in seq1])) def bubble_step(s1, s2): """ :return the minimum step that have to perform s1 to s2 with swapping the neighboring elements """ return sum(inversion(discrete_by_permutation(s1, s2))) # ############################## main def main(): # print("YES" if solve() else "NO") # print("yes" if solve() else "no") # solve() print(solve()) # for _ in range(itg()): # print(solve()) def solve(): _, s = itg(), inp() return bubble_step(s, s[::-1]) DEBUG = 0 URL = 'https://codeforces.com/contest/1430/problem/E' if __name__ == '__main__': if DEBUG: import requests # ImportError: cannot import name 'md5' from 'sys' (unknown location) from ACgenerator.Y_Test_Case_Runner import TestCaseRunner runner = TestCaseRunner(main, URL) inp = runner.input_stream print = runner.output_stream runner.checking() else: sys.stdin, sys.stdout = IOWrapper(sys.stdin), IOWrapper(sys.stdout) main() # Please check! ``` Yes
97,193
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Submitted Solution: ``` #import modules here import math,sys,os #from itertools import permutations, combinations from collections import defaultdict,deque,OrderedDict,Counter import bisect as bi #import heapq from io import BytesIO, IOBase mod=10**9+7 # region fastio BUFSIZE = 8192 class FastIO(IOBase): newlines = 0 def __init__(self, file): self._fd = file.fileno() self.buffer = BytesIO() self.writable = "x" in file.mode or "r" not in file.mode self.write = self.buffer.write if self.writable else None def read(self): while True: b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE)) if not b: break ptr = self.buffer.tell() self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr) self.newlines = 0 return self.buffer.read() def readline(self): while self.newlines == 0: b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE)) self.newlines = b.count(b"\n") + (not b) ptr = self.buffer.tell() self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr) self.newlines -= 1 return self.buffer.readline() def flush(self): if self.writable: os.write(self._fd, self.buffer.getvalue()) self.buffer.truncate(0), self.buffer.seek(0) class IOWrapper(IOBase): def __init__(self, file): self.buffer = FastIO(file) self.flush = self.buffer.flush self.writable = self.buffer.writable self.write = lambda s: self.buffer.write(s.encode("ascii")) self.read = lambda: self.buffer.read().decode("ascii") self.readline = lambda: self.buffer.readline().decode("ascii") sys.stdin, sys.stdout = IOWrapper(sys.stdin), IOWrapper(sys.stdout) input = lambda: sys.stdin.readline().rstrip("\r\n") #input functions def minp(): return map(int, sys.stdin.readline().rstrip().split()) def linp(): return list(map(int, sys.stdin.readline().rstrip().split())) def inp(): return int(input()) def print_list(l): print(' '.join(map(str,l))) #functions def BinarySearch(a,x): i=bi.bisect_left(a, x) if i != len(a) and a[i] == x: return i else: return -1 def gcd(a,b): return math.gcd(a,b) def is_prime(n): """returns True if n is prime else False""" if n < 5 or n & 1 == 0 or n % 3 == 0: return 2 <= n <= 3 s = ((n - 1) & (1 - n)).bit_length() - 1 d = n >> s for a in [2, 325, 9375, 28178, 450775, 9780504, 1795265022]: p = pow(a, d, n) if p == 1 or p == n - 1 or a % n == 0: continue for _ in range(s): p = (p * p) % n if p == n - 1: break else: return False return True def mulinverse(a): return pow(a,mod-2,mod) ####################Let's Go Baby######################## from collections import defaultdict as dc def reversePairs(nums): if not nums: return 0 res = 0 def merge(a,b): nonlocal res temp = [] i,j = 0,0 m = len(a) n = len(b) while i<m and j<n: if a[i]<=b[j]: temp.append(a[i]) i+=1 else: temp.append(b[j]) j+=1 res+=m-i if i<m: temp+=a[i:] else: temp+=b[j:] return temp def mergesort(L): length = len(L) if length==1: return L k = length>>1 a = mergesort(L[:k]) b = mergesort(L[k:]) return merge(a,b) mergesort(nums) return res n = inp() s = input() t = s[::-1] res = 0 flag = [0]*(n) dic = dc(int) for i in range(n): c = t[i] key = s.find(c,dic[c]) dic[c] = key+1 flag[key] = i #print(dic) print(reversePairs(flag)) ``` Yes
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Submitted Solution: ``` n=int(input()) s=input() if s==s[::-1]: print(0) else: print(n//2) ``` No
97,195
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Submitted Solution: ``` import sys input=sys.stdin.readline def update(inp,add,ar): global n while(inp<n): ar[inp]+=add inp+=(inp&(-inp)) def fun1(inp,ar): global n ans=0 while(inp): ans+=ar[inp] inp-=(inp&(-inp)) return ans n=int(input()) st=list(input()) st=st[:-1] li=[0]*(n+1) rev=st[::-1] dic={} for i in range(n): if(st[i] in dic): dic[st[i]].append(i) else: dic[st[i]]=[i] for i in dic: dic[i]=dic[i][::-1] ans=0 pas=0 j=0 for i in range(n): while(st[j]=='-'): j+=1 pas+=1 if(st[j]==rev[i]): dic[st[j]].pop() j+=1 else: ind=dic[rev[i]][-1]+1 st[ind-1]='-' dic[rev[i]].pop() su=fun1(ind,li) ans+=(ind-su-j-1+pas) update(ind,1,li) print(ans) ``` No
97,196
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Submitted Solution: ``` def update(inp,add,ar): global n while(inp<n): ar[inp]+=add inp+=(inp&(-inp)) def fun1(inp,ar): global n ans=0 while(inp): ans+=ar[inp] inp-=(inp&(-inp)) return ans n=int(input()) st=list(input()) li=[0]*(n+1) rev=st[::-1] dic={} for i in range(n): if(st[i] in dic): dic[st[i]].append(i) else: dic[st[i]]=[i] for i in dic: dic[i]=dic[i][::-1] ans=0 pas=0 j=0 for i in range(n): while(st[j]=='-'): j+=1 pas+=1 if(st[j]==rev[i]): dic[st[j]].pop() j+=1 else: ind=dic[rev[i]][-1]+1 st[ind-1]='-' dic[rev[i]].pop() su=fun1(ind,li) ans+=(max(ind-su-j-1+pas,0)) update(ind,1,li) print(ans) ``` No
97,197
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s. You have to reverse it — that is, the first letter should become equal to the last letter before the reversal, the second letter should become equal to the second-to-last letter before the reversal — and so on. For example, if your goal is to reverse the string "abddea", you should get the string "aeddba". To accomplish your goal, you can swap the neighboring elements of the string. Your task is to calculate the minimum number of swaps you have to perform to reverse the given string. Input The first line contains one integer n (2 ≤ n ≤ 200 000) — the length of s. The second line contains s — a string consisting of n lowercase Latin letters. Output Print one integer — the minimum number of swaps of neighboring elements you have to perform to reverse the string. Examples Input 5 aaaza Output 2 Input 6 cbaabc Output 0 Input 9 icpcsguru Output 30 Note In the first example, you have to swap the third and the fourth elements, so the string becomes "aazaa". Then you have to swap the second and the third elements, so the string becomes "azaaa". So, it is possible to reverse the string in two swaps. Since the string in the second example is a palindrome, you don't have to do anything to reverse it. Submitted Solution: ``` a=int(input()) b=str(input()) if a==len(b): print(b[::-1]) else: pass ``` No
97,198
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0
Provide a correct Python 3 solution for this coding contest problem. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 "Correct Solution: ``` n = int(input()) a = list(input()) b = list(set(a)) ans = 1 for i in b: ans %= 10**9+7 ans *= a.count(i)+1 print((ans-1)%(10**9+7)) ```
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0
Provide a correct Python 3 solution for this coding contest problem. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 "Correct Solution: ``` _,s=open(0);a=1 for i in set(s):a*=s.count(i)+1 print(a//2%(10**9+7)-1) ```
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0
Provide a correct Python 3 solution for this coding contest problem. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 "Correct Solution: ``` n=int(input()) s=input() cnt=[0]*26 for i in s:cnt[ord(i)-ord('a')]+=1 mo=10**9+7 r=1 for i in cnt: r*=i+1 r%=mo print((r-1+mo)%mo) ```
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Provide a correct Python 3 solution for this coding contest problem. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 "Correct Solution: ``` N=int(input()) X=[0 for i in range(26)] S=input() for i in S: X[ord(i)-97]+=1 ans=1 P=10**9+7 for i in X: ans=ans*(i+1) ans%=P ans-=1 print(ans) ```
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0
Provide a correct Python 3 solution for this coding contest problem. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 "Correct Solution: ``` N = int(input()) S = input() ans = 1 for c in range(ord('a'), ord('z') + 1): ans *= S.count(chr(c)) + 1 print((ans-1) % (10**9 + 7)) ```
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0
Provide a correct Python 3 solution for this coding contest problem. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 "Correct Solution: ``` from collections import Counter n = int(input()) S = input() mod = 10**9+7 n = Counter(S) ans = 1 for i, j in n.items(): ans *= (j+1) print((ans-1)%mod) ```
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0
Provide a correct Python 3 solution for this coding contest problem. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 "Correct Solution: ``` from collections import Counter n=int(input()) s=input() S=Counter(s) ans=1 for i in S.values(): ans *=i+1 print((ans-1)%(10**9+7)) ```
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Provide a correct Python 3 solution for this coding contest problem. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 "Correct Solution: ``` MOD=10**9+7 N=int(input()) S=input() cnt=[0]*26 for x in S: cnt[ord(x)-97]+=1 res=1 for i in range(26): res=res*(cnt[i]+1)%MOD print(res-1) ```
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 Submitted Solution: ``` n,s=open(0);a=1 for c in set(s.strip()):a*=s.count(c)+1 print(~-a%(10**9+7)) ``` Yes
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 Submitted Solution: ``` cnt = [0] * 26 n = int(input()) s = input() for c in s: cnt[ord(c) - ord('a')] += 1 res = 1 for i in cnt: res *= i + 1 print((res - 1) % (10 ** 9 + 7)) ``` Yes
97,664
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 Submitted Solution: ``` n=int(input()) s=input() mod=10**9+7 t=dict() for c in s: t.setdefault(c,1) t[c]+=1 ans=1 for v in t.values(): ans=ans*v%mod print(ans-1) ``` Yes
97,665
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 Submitted Solution: ``` from collections import Counter n,s=int(input()),input();c=[s[i]for i in range(n)];a=Counter(c);ans=1 for i in a:ans*=a[i]+1 print((ans-1)%(10**9+7)) ``` Yes
97,666
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 Submitted Solution: ``` import string n = int(input()) s = input() total = 2**n-1 k = 0 for i in string.ascii_lowercase: c = s.count(i) if c > 1: l = 2**(n-c) total -= l k += c - 1 if k > 1: total += k print(total) ``` No
97,667
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 Submitted Solution: ``` N = int(input()) S = input() ans = 1 for c in [chr(x) for x in range(97, 97 + 26)]: ans *= S.count(c) + 1 print(ans - 1) ``` No
97,668
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 Submitted Solution: ``` N = int(input()) S = input() iD = 10**9+7 aT={} for s in S: if s in aT: aT[s]+=1 else: aT[s]=1 iRes = (2**N) - 1 iC = 0 iC2 = 0 for s in aT: iT = aT[s] if 1 < iT: iRes -= 2**(N-iT) if 0 < iC : iC2 += 2**(N-iC -iT) iRes += iC2 iC += iT print(iRes % iD) ``` No
97,669
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string S of length N. Among its subsequences, count the ones such that all characters are different, modulo 10^9+7. Two subsequences are considered different if their characters come from different positions in the string, even if they are the same as strings. Here, a subsequence of a string is a concatenation of one or more characters from the string without changing the order. Constraints * 1 \leq N \leq 100000 * S consists of lowercase English letters. * |S|=N Input Input is given from Standard Input in the following format: N S Output Print the number of the subsequences such that all characters are different, modulo 10^9+7. Examples Input 4 abcd Output 15 Input 3 baa Output 5 Input 5 abcab Output 17 Submitted Solution: ``` if __name__ == '__main__': mod = 10**9 +7 N = int(input()) S = str(input()) letter = defaultdict(int) for i in range(N): letter[S[i]] += 1 count = 1 for c in letter: count *= (letter[c]+1) count%mod print(count-1) ``` No
97,670
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Provide a correct Python 3 solution for this coding contest problem. Problem statement Given the string $ S $. Find the number of all anagrams in $ S $ that are palindromic. An anagram of the string $ X $ is an anagram of $ Y $, which means that $ X $ is equal to $ Y $, or that the rearranged characters of $ X $ are equal to $ Y $. For example, for the string abcd, abcd and cbda are anagrams, but abed, cab and abcdd are not anagrams. When the string $ X $ is a palindrome, it means that the reverse reading of $ X $ is equal to $ X $ itself. For example, abc and ab are not palindromes, and a and abccba are palindromes. Constraint * $ 1 \ leq | S | \ leq 40 $ ($ | S | $ is the length of the string $ S $) * $ S $ contains only lowercase letters. * The answer is guaranteed to be less than $ 2 ^ {63} $. input Input follows the following format. $ S $ output Output the number on one line. Examples Input ab Output 0 Input abba Output 2 "Correct Solution: ``` from collections import Counter import math s = input() dic = Counter(s) n_odd = 0 for c in dic: if dic[c] & 1: n_odd += 1 if n_odd > 1: print(0) exit() dic[c] -= 1 ans = math.factorial(len(s) // 2) for num in dic.values(): ans //= math.factorial(num // 2) print(ans) ```
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Provide a correct Python 3 solution for this coding contest problem. Problem statement Given the string $ S $. Find the number of all anagrams in $ S $ that are palindromic. An anagram of the string $ X $ is an anagram of $ Y $, which means that $ X $ is equal to $ Y $, or that the rearranged characters of $ X $ are equal to $ Y $. For example, for the string abcd, abcd and cbda are anagrams, but abed, cab and abcdd are not anagrams. When the string $ X $ is a palindrome, it means that the reverse reading of $ X $ is equal to $ X $ itself. For example, abc and ab are not palindromes, and a and abccba are palindromes. Constraint * $ 1 \ leq | S | \ leq 40 $ ($ | S | $ is the length of the string $ S $) * $ S $ contains only lowercase letters. * The answer is guaranteed to be less than $ 2 ^ {63} $. input Input follows the following format. $ S $ output Output the number on one line. Examples Input ab Output 0 Input abba Output 2 "Correct Solution: ``` import collections from math import * s=input() a=collections.Counter(s) o=0 for x in a: if a[x]&1: o+=1 if o>1:print(0);break a[x]-=1 else: b=factorial(len(s)//2) for x in a.values(): b//=factorial(x//2) print(b) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Tags: implementation Correct Solution: ``` s = 'abcdefghijklmnopqrstuvwxyz' for _ in range(int(input())): n, k = list(map(int, input().strip().split())) q = n//k rem = n % k print(s[:k]*q + s[:rem]) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Tags: implementation Correct Solution: ``` t = int(input()) alp = list('abcdefghijklmnopqrstuvwxyz') for i in range(t): n, k = tuple(map(int, input().split())) j = 0 s = '' while len(s) != n: s += alp[j] if j == k - 1: j = -1 j += 1 print(s) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Tags: implementation Correct Solution: ``` num=int(input()) alph="abcdefghijklmnopqrstuvwxyz" while num: a=[] r=[] n,k=map(int,input().split()) f=int(n/k) for i in range(k): a.append(alph[i]) for i in range(len(a)): for j in range(f): r.append(a[i]) while len(r)!=n: r.append(a[k-1]) print("".join(r)) num-=1 ```
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Tags: implementation Correct Solution: ``` alphabet = 'abcdefghijklmnopqrstuvwxyz' t = int(input()) for i in range(t): x, y = list(map(int, input().split())) k = x // y s = '' for i in range(k): s += alphabet[:y] k = x % y if k != 0: s += alphabet[:k] print(s) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Tags: implementation Correct Solution: ``` t = int(input()) for i in range(t): n, k = input().split(' ') n = int(n) k = int(k) res = [] y = 97 for i in range(n): res.append(y + i%k) print("".join([chr(e) for e in res])) ```
97,862
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Tags: implementation Correct Solution: ``` t = int(input()) for _ in range(t) : n, k = map(int, input().split()) for i in range(n) : print(chr(ord('a') + i % k), end=''); print() ```
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Tags: implementation Correct Solution: ``` t=int(input()) for _ in range(t): n,k=map(int,input().split()) s='' for i in range(97,97+k): s+=chr(i) s=s*(n//k)+s[:n%k] print(s) ```
97,864
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Tags: implementation Correct Solution: ``` for _ in range(int(input())): n, k = [int(i) for i in input().split()] res = "" for i in range(k-1): for _ in range(n // k): res += chr(97 + i) res += chr(97+k-1) * (n - ((n // k) * (k - 1))) print(res) ```
97,865
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Submitted Solution: ``` n = int(input()) for i in range(n): a,b=list(map(int,input().split())) c = 0 st=[] for j in range(a): s = (c+ord("a")) st.append(chr(s)) c = (c+1)%b for k in range(len(st)): print(st[k],end="") print("\n") a = [] ``` Yes
97,866
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Submitted Solution: ``` def main(): n, k = map(int, input().split()) res = '' for i in range(n): res += chr(ord('a') + i % k) print(res) if __name__ == '__main__': t = int(input()) for _ in range(t): main() ``` Yes
97,867
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Submitted Solution: ``` def solve(): n, k = map(int, input().split()) for i in range(n): print(chr(ord('a') + i % k), end="") print("") t = eval(input()) while t: solve() t -= 1 ``` Yes
97,868
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Submitted Solution: ``` import sys t = int(input()) for i in range(t): n, k = map(int, sys.stdin.readline().split()) s = "" for a in range(n): s+= chr(ord("a")+(a%k)) print(s) ``` Yes
97,869
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Submitted Solution: ``` from random import randint a=int(input()) b=[] c=0 d=[] e=0 f='abcdefghijklmnopqrstuvwxyz' for i in range(a): n,k=map(int,input().split()) for i in range(n): print(f[e],end='') e+=1 e=0 print() ``` No
97,870
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Submitted Solution: ``` import string cases = int(input()) for _ in range(cases): lst = [int(x) for x in input().split()] letter = string.ascii_lowercase word = "" while len(word) < lst[0]: for i in letter[:lst[1]]: word = word + i print(word) ``` No
97,871
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Submitted Solution: ``` t=int(input()) a="abcdefghijklmnopqrstuvxyz" for i in range(t): n,k=map(int,input().split()) print(((n//k)*a[:k])+a[:n%k]) ``` No
97,872
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given two integers n and k. Your task is to construct such a string s of length n that for each i from 1 to k there is at least one i-th letter of the Latin alphabet in this string (the first letter is 'a', the second is 'b' and so on) and there are no other letters except these. You have to maximize the minimal frequency of some letter (the frequency of a letter is the number of occurrences of this letter in a string). If there are several possible answers, you can print any. You have to answer t independent queries. Input The first line of the input contains one integer t (1 ≤ t ≤ 100) — the number of queries. The next t lines are contain queries, one per line. The i-th line contains two integers n_i and k_i (1 ≤ n_i ≤ 100, 1 ≤ k_i ≤ min(n_i, 26)) — the length of the string in the i-th query and the number of characters in the i-th query. Output Print t lines. In the i-th line print the answer to the i-th query: any string s_i satisfying the conditions in the problem statement with constraints from the i-th query. Example Input 3 7 3 4 4 6 2 Output cbcacab abcd baabab Note In the first example query the maximum possible minimal frequency is 2, it can be easily seen that the better answer doesn't exist. Other examples of correct answers: "cbcabba", "ccbbaaa" (any permutation of given answers is also correct). In the second example query any permutation of first four letters is acceptable (the maximum minimal frequency is 1). In the third example query any permutation of the given answer is acceptable (the maximum minimal frequency is 3). Submitted Solution: ``` T = int(input()) k = 0 s = '' while True: if T == 0: break T = T - 1 a, b = map(int, input().split()) for i in range(b): for j in range(a // b): s += chr(ord('a') + i) for i in range(a % b): s += 'a' print(s) ``` No
97,873
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Tags: implementation, number theory, strings Correct Solution: ``` s = input().strip() import math, functools, sys, heapq @functools.lru_cache(None) def check_prime(p): for i in range(2, int(math.sqrt(p)) + 1): if p % i == 0: return False return True primes = [] n = len(s) for p in range(2, n + 1): if check_prime(p): primes.append(p) cnt = {} for c in s: try: cnt[c] += 1 except KeyError: cnt[c] = 1 pq = [] for key in cnt: heapq.heappush(pq, (-cnt[key], key)) sets = [] for p in primes: inds = set() for i in range(1, n // p + 1): inds.add(p * i) done = False for i, st in enumerate(sets): if st & inds: sets[i] = st | inds done = True break if not done: sets.append(inds) # print(inds, sets) sets.sort(key=lambda x: len(x), reverse=True) # print(primes) # print(sets) ans = [None for _ in range(n)] for st in sets: if not pq: print('NO') sys.exit() cnt, c = heapq.heappop(pq) if -cnt >= len(st): for i in st: ans[i-1] = c cnt = -cnt - len(st) if cnt > 0: heapq.heappush(pq, (-cnt, c)) else: print('NO') sys.exit() # print(ans) i = 0 cnt, c = heapq.heappop(pq) cnt = -cnt while i < n: if ans[i] is not None: i += 1 continue if cnt == 0 and pq: cnt, c = heapq.heappop(pq) cnt = -cnt ans[i] = c cnt -= 1 i += 1 print('YES') print(''.join(ans)) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Tags: implementation, number theory, strings Correct Solution: ``` from collections import Counter d, t = 'NO', input() c, n = Counter(t), len(t) p = [1] * (n + 1) for i in range(2, n // 2 + 1): if p[i]: p[i::i] = [0] * (n // i) p.pop(0) s = n - sum(p) u = v = '' for q, k in c.items(): if not (v or k < s): k -= s v = q u += q * k if v: d, j = 'YES\n', 0 for q in p: d += u[j] if q else v j += q print(d) ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Tags: implementation, number theory, strings Correct Solution: ``` from collections import Counter d, t = 'NO', input() c, n = Counter(t), len(t) p = [0] * (n + 1) for i in range(2, n // 2 + 1): if 1 - p[i]: p[i::i] = [1] * (n // i) s = sum(p) u = v = '' for q, k in c.items(): if v or k < s: u += q * k else: u += q * (k - s) v = q if v: d, j = 'YES\n', 0 for i in range(1, n + 1): if p[i]: d += v else: d += u[j] j += 1 print(d) ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Tags: implementation, number theory, strings Correct Solution: ``` import sys from functools import lru_cache, cmp_to_key from heapq import merge, heapify, heappop, heappush # from math import * from collections import defaultdict as dd, deque, Counter as C from itertools import combinations as comb, permutations as perm from bisect import bisect_left as bl, bisect_right as br, bisect from time import perf_counter from fractions import Fraction import copy import time starttime = time.time() mod = int(pow(10, 9) + 7) mod2 = 998244353 def data(): return sys.stdin.readline().strip() def out(*var, end="\n"): sys.stdout.write(' '.join(map(str, var))+end) def L(): return list(sp()) def sl(): return list(ssp()) def sp(): return map(int, data().split()) def ssp(): return map(str, data().split()) def l1d(n, val=0): return [val for i in range(n)] def l2d(n, m, val=0): return [l1d(n, val) for j in range(m)] try: # sys.setrecursionlimit(int(pow(10,4))) sys.stdin = open("input.txt", "r") # sys.stdout = open("../output.txt", "w") except: pass def pmat(A): for ele in A: print(*ele,end="\n") # def seive(): # prime=[1 for i in range(10**6+1)] # prime[0]=0 # prime[1]=0 # for i in range(10**6+1): # if(prime[i]): # for j in range(2*i,10**6+1,i): # prime[j]=0 # return prime s=input() n=len(s) A=[i for i in range(n+1)] def par(x): if A[x]==x: return x return par(A[x]) def union(x,y): u=par(x) v=par(y) if u==v: return if u<v: A[v]=u else: A[u]=v for i in range(2,n+1): if A[i]!=i: continue for j in range(2*i,n+1,i): union(i,j) d={} for i in range(1,n+1): d[A[i]]=d.get(A[i],0)+1 cnt={} for c in s: cnt[c]=cnt.get(c,0)+1 B1=[[d[i],i] for i in d] B2=[[cnt[i],i] for i in cnt] B1.sort(reverse=True) B2.sort() i=0 C={} if len(B1)<len(B2): print("NO") exit() while(i<len(B1)): x=B1[i][0] for j in range(len(B2)): if B2[j][0]>=x: B2[j][0]-=x C[B1[i][1]]=B2[j][1] break else: print("NO") exit() i+=1 print("YES") for i in range(1,n+1): print(C[A[i]],end="") print() endtime = time.time() # print(f"Runtime of the program is {endtime - starttime}") ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Tags: implementation, number theory, strings Correct Solution: ``` from collections import Counter def is_prime(x): if x < 2: return 0 for i in range(2, x): if x % i == 0: return False return True def proc(s): n = len(s) same = set() for p in range(2,n+1): if not is_prime(p): continue if p * 2 > n: continue for i in range(2, n//p+1): same.add(p*i) same.add(p) counter = Counter(s) ch, count = counter.most_common(1)[0] if count < len(same): print("NO") return same = [x-1 for x in same] w = [x for x in s] for i in same: if w[i] == ch: continue for j in range(n): if j not in same and w[j] == ch: tmp = w[j] w[j] = w[i] w[i] = tmp break print("YES") print(''.join(w)) s = input() proc(s) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Tags: implementation, number theory, strings Correct Solution: ``` def SieveOfEratosthenes(n): # Create a boolean array "prime[0..n]" and initialize # all entries it as true. A value in prime[i] will # finally be false if i is Not a prime, else true. prime = [True for i in range(n + 1)] p = 2 while (p * p <= n): # If prime[p] is not changed, then it is a prime if (prime[p] == True): # Update all multiples of p for i in range(p * 2, n + 1, p): prime[i] = False p += 1 prime[0]= False prime[1]= False return prime s = input() primes = SieveOfEratosthenes(len(s)) length = len(s) unique = set() unique.add(1) for i in range(2, len(s)+1): if primes[i] and 2*i > length: unique.add(i) # print(unique) count = dict() sameHave = 1 sameC = s[0] for c in s: if c not in count: count[c] = 1 else: count[c] += 1 if(count[c] > sameHave): sameHave = count[c] sameC = c # print(count) uniqueList = [] for char in s: if char != sameC: uniqueList.append(char) # print(uniqueList) sameNeed = length - len(unique) # print(sameNeed, sameHave, sameC) if sameHave >= sameNeed: print("YES") out = "" for i in range(1, len(s)+1): if i in unique: if len(uniqueList) != 0: out += uniqueList.pop() else: out += sameC else: out += sameC print(out) else: print("NO") ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Tags: implementation, number theory, strings Correct Solution: ``` #!/usr/bin/python3 s = input() d = dict() for c in s: if c not in d: d[c] = 0 d[c] += 1 cnto = 1 isprime = [True] * (len(s) + 1) for p in range(2, len(s) + 1): if isprime[p]: for i in range(p * p, len(s) + 1, p): isprime[i] = False for i in range(1, len(s) + 1): if i > len(s) // 2 and isprime[i]: cnto += 1 cnto = len(s) - cnto if max(d.values()) < cnto: print("NO") else: print("YES") m = max(d.values()) for c, v in d.items(): if v == m: d[c] -= cnto mc = c break ans = [] buf = [] for c, v in d.items(): for i in range(v): buf.append(c) for i in range(1, len(s) + 1): if i == 1 or (i > len(s) // 2 and isprime[i]): ans.append(buf[-1]) buf.pop() else: ans.append(mc) print("".join(ans)) ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Tags: implementation, number theory, strings Correct Solution: ``` import math ch='abcdefghijklmnopqrstuvwxyz' def sieve(n): p = 2 while (p * p <= n): if (prime[p] == True): for i in range(p * 2, n + 1, p): prime[i] = False p += 1 prime[0]= False prime[1]= False s = ['#']+list(input()) lis=[0]*26 n = len(s)-1 prime = [True for i in range(1000 + 1)] sieve(1000) ans=['']*(n+1) aa=[] aa.append(1) for i in s[1:]: lis[ord(i)-ord('a')]+=1 for i in range(n//2+1,n+1,1): if prime[i]: aa.append(i) v = n-len(aa) th=-1 for i in range(26): if lis[i]>=v: th=i if th==-1: print("NO") exit() for i in range(2,n+1): if i not in aa: ans[i]=ch[th] lis[th]-=1 j=0 #print(ans,aa,lis) for i in aa: while j<26 and lis[j]<=0: j+=1 ans[i]=ch[j] lis[j]-=1 # print(ans,lis) print("YES") print(*ans[1:],sep='') ```
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Submitted Solution: ``` s = input() if len(s) == 1: exit(print('YES\n' + s)) d, ans, sieve = {}, [0] * len(s), [0] * 1005 for i in s: d[i] = d.get(i, 0) + 1 for i in range(2, len(s) + 1): if not sieve[i]: for j in range(i * i, 1005, i): sieve[j] = 1 mx = max(d, key=lambda x: d[x]) for j in range(2, len(s) // 2 + 1): ans[j - 1] = mx d[mx] -= 1 if d[mx] < 0: exit(print('NO')) for i in range(len(s) // 2 + 1, len(s) + 1): if not sieve[i]: mx = max(d, key=lambda x: d[x] and x != ans[1]) if not d[mx]: mx = ans[1] ans[i - 1] = mx d[mx] -= 1 else: ans[i - 1] = ans[1] d[ans[1]] -= 1 if d[mx] < 0 or d[ans[1]] < 0: exit(print('NO')) print('YES') mx = max(d, key=lambda x: d[x]) print(mx + ''.join(ans[1:])) ``` Yes
97,962
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Submitted Solution: ``` import sys import math from collections import defaultdict MAXNUM = math.inf MINNUM = -1 * math.inf ASCIILOWER = 97 ASCIIUPPER = 65 def getInt(): return int(sys.stdin.readline().rstrip()) def getInts(): return map(int, sys.stdin.readline().rstrip().split(" ")) def getString(): return sys.stdin.readline().rstrip() def printOutput(ans): sys.stdout.write() pass def getPrimes(s): primes = [2] MAX = s + 1 for i in range(3, MAX): STOP = math.ceil(math.sqrt(i) + 1) isPrime = True for j in range(2, STOP): if i % j == 0: isPrime = False if isPrime: primes.append(i) return primes def solve(let, s): primes = getPrimes(len(s)) bigindices = [] oneIndices = [] ones = 0 for i in primes: k = len(s) // i if k > 1: bigindices.append(i) if k == 1: oneIndices.append(i) ones += 1 solution = [0 for _ in range(len(s))] bigK = max(let, key=lambda x: let[x]) total = 0 for index in bigindices: for i in range(index, len(solution) + 1, index): if solution[i-1] == 0: solution[i - 1] = bigK total += 1 #print(len(s)) #print(total) #print(bigindices) #print(oneIndices) if total > let[bigK]: return "NO", None else: let[bigK] -= total #print("afterbig") #print(solution) for item in oneIndices: for key, val in let.items(): if val >= 1: let[key] -= 1 ones -= 1 solution[item - 1] = key break if ones != 0: return "NO", None #print("afteroneind") #print(solution) for i in range(len(solution)): if solution[i] == 0: for key, val in let.items(): if val > 0: val -= 1 solution[i] = key break return "YES", "".join(solution) def readinput(): lettercount = defaultdict(int) string = getString() for ele in string: lettercount[ele] += 1 ans = solve(lettercount, string) print(ans[0]) if ans[0] != "NO": print(ans[1]) readinput() ``` Yes
97,963
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Submitted Solution: ``` p=[1]*1001 for i in range(2,1001): if p[i]: for j in range(i,1001,i):p[j]=0 p[i]=1 a=input() z=len(a) l=[0]*26 for i in a:l[ord(i)-97]+=1 gh=0 for i in range(z//2+1,z+1):gh+=p[i] if max(l)<z-1-gh:exit(print("NO")) ans=['']*(z+1) t=l.index(max(l)) for i in range(2,1+(z//2)):ans[i]=chr(t+97);l[t]-=1 for i in range(1+(z//2),z+1): if p[i]==0:ans[i]=chr(t+97);l[t]-=1 j=0 for i in range(1,z+1): if ans[i]=='': while l[j]<=0:j+=1 ans[i]=chr(j+97);l[j]-=1 print("YES") print(''.join(ans[1::])) ``` Yes
97,964
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Submitted Solution: ``` from collections import Counter is_prime = lambda x: all(x % d for d in range(2, int(x **.5) + 1)) s = input() n = len(s) K = {1} | {x for x in range(n // 2 + 1, n + 1) if is_prime(x)} k = len(K) ch, m = max(Counter(s).items(), key=lambda x: x[1]) if m + k < n: print('NO') else: print('YES') s = list(s.replace(ch, '', n - k)) A = [0] * n for i in range(n): A[i] = s.pop() if (i + 1) in K else ch print(''.join(A)) ``` Yes
97,965
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Submitted Solution: ``` dp=[] def sieve(): n=10**4 global dp dp=[True]*n dp[0]=False dp[1]=False i=0 while (i*i)<=n: j=i if dp[i]: for jj in range(2*j,n,j): dp[jj]=False i+=1 sieve() s=input() if s=='abcd': print('NO') exit() n=len(s) d={} for i in s: if i in d:d[i]+=1 else:d[i]=1 #print(dp[:4]) for p in range(2,len(s)+1): if dp[p]: arr=[] for i in range(len(s)//p): arr.append(p*(i+1)) for i in s: if max(arr)<=n and len(arr)<=d[i]: s1=[0]*n print(arr) for j in arr:s1[j-1]=i d[i]-=len(arr) #print(d) #print(s1) for ii in s: if d[ii]>0: k=0 kk=0 while kk<n and k<d[ii]: if s1[kk]==0: s1[kk]=ii k+=1 kk+=1 d[ii]-=k# print(d) # print(s1) print('YES') print(''.join(s1)) exit() print('NO') ``` No
97,966
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Submitted Solution: ``` s = input() d, ans, sieve = {}, [0] * len(s), [0] * 1005 for i in s: d[i] = d.get(i, 0) + 1 for i in range(2, len(s) + 1): if not sieve[i]: for j in range(i * i, 1005, i): sieve[j] = 1 mx = max(d, key=lambda x: d[x]) for j in range(i, len(s) + 1, i): if not ans[j - 1]: ans[j - 1] = mx d[mx] -= 1 if d[mx] < 0: exit(print('NO')) print('YES') mx = max(d, key=lambda x: d[x]) print(mx + ''.join(ans[1:])) ``` No
97,967
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Submitted Solution: ``` import heapq primenumbers=[2,3,5,7,11,13,17,19,23,29,31,37,41,43,47, 53,59,61,67,71,73,79,83,89,97, 101,103,107,109,113,127,131,137,139,149, 151,157,163,167,173,179,181,191,193,197,199, 211,223,227,229,233,239,241, 251,257,263,269,271,277,281,283,293, 307,311,313,317,331,337,347,349, 353,359,367,373,379,383,389,397, 401,409,419,421,431,433,439,443,449, 457,461,463,467,479,487,491,499, 503,509,521,523,541,547, 557,563,569,571,577,587,593,599, 601,607,613,617,619,631,641,643,647, 653,659,661,673,677,683,691, 701,709,719,727,733,739,743, 751,757,761,769,773,787,797, 809,811,821,823,827,829,839, 853,857,859,863,877,881,883,887, 907,911,919,929,937,941,947, 953,967,971,977,983,991,997] ss=input() s=len(ss) for index in range(168): if primenumbers[index]==s: indextemp=index break elif primenumbers[index]>s: indextemp=index-1 break same=[[]] for i in range(indextemp+1): tempV=[] temp=primenumbers[i] while temp<=s: if temp not in same[-1]: tempV.append(temp) temp+=primenumbers[i] same.append(tempV) same.remove(same[0]) amount=[] for i in same: heapq.heappush(amount,len(i)) dic={} for i in ss: if i not in dic.keys(): dic[i]=1 else: dic[i]+=1 amountC=[] for i in dic.keys(): heapq.heappush(amountC,dic[i]) pointer=True if len(amount)>len(amountC): print('NO') else: for i in range(len(amount)): if amount[i]>amountC[i]: print('NO') pointer=False break if pointer: print('YES') print(ss) ``` No
97,968
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. You are given a string s, consisting of small Latin letters. Let's denote the length of the string as |s|. The characters in the string are numbered starting from 1. Your task is to find out if it is possible to rearrange characters in string s so that for any prime number p ≤ |s| and for any integer i ranging from 1 to |s| / p (inclusive) the following condition was fulfilled sp = sp × i. If the answer is positive, find one way to rearrange the characters. Input The only line contains the initial string s, consisting of small Latin letters (1 ≤ |s| ≤ 1000). Output If it is possible to rearrange the characters in the string so that the above-mentioned conditions were fulfilled, then print in the first line "YES" (without the quotes) and print on the second line one of the possible resulting strings. If such permutation is impossible to perform, then print the single string "NO". Examples Input abc Output YES abc Input abcd Output NO Input xxxyxxx Output YES xxxxxxy Note In the first sample any of the six possible strings will do: "abc", "acb", "bac", "bca", "cab" or "cba". In the second sample no letter permutation will satisfy the condition at p = 2 (s2 = s4). In the third test any string where character "y" doesn't occupy positions 2, 3, 4, 6 will be valid. Submitted Solution: ``` import os,io from sys import stdout import collections import random import math from operator import itemgetter input = io.BytesIO(os.read(0,os.fstat(0).st_size)).readline from collections import Counter # import sys # sys.setrecursionlimit(10**6) def primes(n): """ Returns a list of primes < n """ sieve = [True] * n for i in range(3,int(n**0.5)+1,2): if sieve[i]: sieve[i*i::2*i]=[False]*((n-i*i-1)//(2*i)+1) return [2] + [i for i in range(3,n,2) if sieve[i]] def binomial_coefficient(n, k): if 0 <= k <= n: ntok = 1 ktok = 1 for t in range(1, min(k, n - k) + 1): ntok *= n ktok *= t n -= 1 return ntok // ktok else: return 0 def powerOfK(k, max): if k == 1: return [1] if k == -1: return [-1, 1] result = [] n = 1 while n <= max: result.append(n) n *= k return result def prefixSum(arr): for i in range(1, len(arr)): arr[i] = arr[i] + arr[i-1] return arr def divisors(n): i = 1 result = [] while i*i <= n: if n%i == 0: if n/i == i: result.append(i) else: result.append(i) result.append(n/i) i+=1 return result # from functools import lru_cache # @lru_cache(maxsize=None) s = input().decode('utf-8').strip() # n = int(input()) # l = list(map(int, input().split())) c = Counter(s) dp = [0] * len(s) primes = primes(len(s)) components = [] for p in primes: l = [] for i in range(p, len(s)+1, p): l.append(i) for comp in components: if len(list(set(comp) & set(l))): comp += l break else: if len(l): components.append(l) need = [] for comp in components: need.append(len(set(comp))) import heapq heap = [] for e, v in c.items(): heapq.heappush(heap, (-v, e)) result = [""] * (len(s)) for comp in components: i, letter = heapq.heappop(heap) i = -i indexes = set(comp) if i >= len(indexes): heapq.heappush(heap, (-(i-len(indexes)), letter)) for index in set(comp): result[index-1] = letter else: print("NO") break else: while len(heap): i, letter = heapq.heappop(heap) for j in range(len(result)): if i == 0: break if result[j] == "": result[j] = letter i -= 1 print("YES") print("".join(result)) # a = sorted(list(c.values())) # b = sorted(need) # # i, j = len(b)-1, len(a)-1 # while i >= 0 and j >= 0: # if b[i] <= a[j]: # a[j] -= b[i] # i -= 1 # else: # j -= 1 # # if i == -1: # print("YES") # else: # print("NO") ``` No
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0
Provide tags and a correct Python 3 solution for this coding contest problem. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Tags: binary search, data structures, divide and conquer, dp, two pointers Correct Solution: ``` import sys,io,os;Z=io.BytesIO(os.read(0,os.fstat(0).st_size)).readline def f(l,h): global L,S if h-l<2:return L[l]%2 m=(l+h)//2;c=x=r=s=0;d=1 for i in range(m-1,l-1,-1): if L[i]%2: c+=1 if c>x:x=c if d:r=c else:c=d=0 S[i]=x;s+=x c=x=t=0;d=e=1;p=m-max(1,r);w=S[m-1] for i in range(m,h): if L[i]%2: c+=1 if c>x:x=c if d: while S[p]<x+r: if p>l:v=min(S[p-1],x+r)-S[p] else:v=x+r-S[l];S[l]=x+r s+=v*(m-p);w+=v if p>l:p-=1 else: if e<r and w<x:w+=1;s+=e;e+=1 while S[p]<x: if p>l:s+=(min(S[p-1],x)-S[p])*(m-p);p-=1 else:s+=(x-S[l])*(m-l);S[l]=x else:c=d=0 t+=s return t+f(l,m)+f(m,h) n=int(Z());S=[0]*n;L=Z();print(f(0,n)) ```
98,083
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Provide tags and a correct Python 3 solution for this coding contest problem. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Tags: binary search, data structures, divide and conquer, dp, two pointers Correct Solution: ``` from sys import stdin import sys import heapq def bitadd(a,w,bit): x = a+1 while x <= (len(bit)-1): bit[x] += w x += x & (-1 * x) def bitsum(a,bit): ret = 0 x = a+1 while x > 0: ret += bit[x] x -= x & (-1 * x) return ret n = int(stdin.readline()) s = stdin.readline()[:-1] bit = [0] * (n+10) dp = [0] * (n+10) y = 0 ans = 0 for i in range(n): if s[i] == "0": while y > 0: dp[y] += 1 bitadd(y,y,bit) y -= 1 dp[0] += 1 else: bitadd(y,-1*dp[y]*y,bit) bitadd(y+1,-1*dp[y+1]*(y+1),bit) dp[y+1] += dp[y] dp[y] = 0 y += 1 bitadd(y,dp[y]*y,bit) now = bitsum(i,bit) + (1+y)*y//2 #print (bitsum(i,bit),(1+y)*y//2,dp) ans += now print (ans) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Tags: binary search, data structures, divide and conquer, dp, two pointers Correct Solution: ``` n = int(input());a = map(int, input());acc = 0;back = 0;top = 0;cur = 0;s = [] for i,x in enumerate(a): if x == 0:cur = 0 else: if cur > 0:s.pop() cur += 1 if cur >= top:top = cur;back = (cur + 1) * (cur) // 2 + (i - cur + 1) * cur;s = [(cur, i)] else: back += i - (s[-1][1] - cur + 1) if cur >= s[-1][0]:s.pop() s += [(cur, i)] acc += back print(acc) ```
98,085
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0
Provide tags and a correct Python 3 solution for this coding contest problem. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Tags: binary search, data structures, divide and conquer, dp, two pointers Correct Solution: ``` n = int(input()) s = input() tot=0 cur=0 hist=[0]*(n) i=0 while (i<n): if (s[i]=='0'): tot+=cur else: l=i r=i while (r+1<n and s[r+1]=='1'): r+=1 for x in range(r-l+1): cur+=(l+x+1)-hist[x] tot+=cur hist[x]=r-x+1 i=r i+=1 print(tot) ```
98,086
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0
Provide tags and a correct Python 3 solution for this coding contest problem. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Tags: binary search, data structures, divide and conquer, dp, two pointers Correct Solution: ``` import sys input = sys.stdin.buffer.readline n = int(input()) s = input().decode()[:n] one, rm, pos = 0, [0]*n, [n]*(n+1) for p in range(n-1, -1, -1): u = s[p] if u == '1': one += 1 rm[p] = pos[one]-p elif one: for i in range(one): pos[i+1] = p+i+1 one = 0 sm, mx, one = 0, 0, 0 for u in s: if u == '1': one += 1 else: one = 0 mx = max(mx, one) sm += mx res = sm for u in rm: sm -= u res += sm print(res) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Tags: binary search, data structures, divide and conquer, dp, two pointers Correct Solution: ``` n=int(input()) l=map(int,input()) c,s,w,p=[0]*(n+3),0,0,0 for i in l: if i==1: p+=1 s+=c[p-1]+max(1,p-1) c[p]+=c[p-1] c[p-1]=0 c[max(1,p-1)]+=1 else: p=0 c[0]+=1 w+=s print(w) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Tags: binary search, data structures, divide and conquer, dp, two pointers Correct Solution: ``` import math,sys n=int(input()) s=input() dp=[0]*(n+1) currlength=0 d=[-1]*(n+1) for i in range(n): if s[i]=='0': dp[i+1]=dp[i] if currlength>0: for j in range(currlength): d[j+1]=i-j-1 currlength=0 else: currlength+=1 numsegs=i-d[currlength]-1 dp[i+1]=dp[i]+numsegs+1 print(sum(dp)) ```
98,089
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Provide tags and a correct Python 3 solution for this coding contest problem. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Tags: binary search, data structures, divide and conquer, dp, two pointers Correct Solution: ``` from sys import stdin n= int(stdin.readline()) s = stdin.readline().strip() total = 0 crnt = 0 hist = [0] * n i = 0 while(i < n): if (s[i] == '0'): total += crnt else: #find longest segment of ones from here l = i r = i while(r+1 < n and s[r+1] == '1'): r += 1 #Update with found segment #print(l,r, "l,r") for j in range(r-l+1): #print((l+j+1), hist[j]) crnt += (l+j+1) - hist[j] total += crnt hist[j] = r-j+1 #print() i = r i+= 1 print(total) ```
98,090
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Submitted Solution: ``` n = int(input()) s = input() res,now,r = 0,0,0 x = [-1]*(n+1) while r<n: l = r if s[r]=='0': while r<n and s[r]=='0': r+=1 res += (r-l)*now else: while r<n and s[r]=='1': r+=1 for k in range(1,r-l+1): now += l+k-1-x[k] res += now x[k] = r-k print(res) ``` Yes
98,091
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Submitted Solution: ``` #!/usr/bin/env python import os import sys from io import BytesIO, IOBase class SegmentTree: def __init__(self, data, default=0, func=max): """initialize the segment tree with data""" self._default = default self._func = func self._len = len(data) self._size = _size = 1 << (self._len - 1).bit_length() self.data = [default] * (2 * _size) self.data[_size:_size + self._len] = data for i in reversed(range(_size)): self.data[i] = func(self.data[i + i], self.data[i + i + 1]) def __delitem__(self, idx): self[idx] = self._default def __getitem__(self, idx): return self.data[idx + self._size] def __setitem__(self, idx, value): idx += self._size self.data[idx] = value idx >>= 1 while idx: self.data[idx] = self._func(self.data[2 * idx], self.data[2 * idx + 1]) idx >>= 1 def __len__(self): return self._len def query(self, start, stop): """func of data[start, stop)""" start += self._size stop += self._size res_left = res_right = self._default while start < stop: if start & 1: res_left = self._func(res_left, self.data[start]) start += 1 if stop & 1: stop -= 1 res_right = self._func(self.data[stop], res_right) start >>= 1 stop >>= 1 return self._func(res_left, res_right) def __repr__(self): return "SegmentTree({0})".format(self.data) def main(): n = int(input()) s = input() lastZero = -1 contiguousOneAfter = [0] * n contiguousOneBefore = [0] * n for i in range(n): if s[i] == '0': cnt = 1 for j in range(i-1,lastZero,-1): contiguousOneAfter[j] = cnt cnt += 1 lastZero = i if s[-1] == '1': cnt = 1 for j in range(n-1,lastZero,-1): contiguousOneAfter[j] = cnt cnt += 1 primAns = 0 curMax = 0 curCnt = 0 for i in range(n): if s[i] == "1": curCnt += 1 if s[i] == "0": curCnt = 0 if curCnt > curMax: curMax = curCnt contiguousOneBefore[i] = curCnt primAns += curMax whenBlocked = [0] * n segTree = SegmentTree([0] * (n + 1),0) for i in range(n-1,-1,-1): if s[i] == '1': whenBlocked[i] = n - segTree.query(contiguousOneAfter[i],n + 1) if contiguousOneBefore[i] == 1: for j in range(i, i + contiguousOneAfter[i] + 1): if n - j >= 0 and n - j <= n and j < n: segTree.__setitem__(contiguousOneBefore[j],n - j) ans = primAns for i in range(n): if s[i] == "1": primAns -= whenBlocked[i] - i ans += primAns print(ans) # region fastio BUFSIZE = 8192 class FastIO(IOBase): newlines = 0 def __init__(self, file): self._fd = file.fileno() self.buffer = BytesIO() self.writable = "x" in file.mode or "r" not in file.mode self.write = self.buffer.write if self.writable else None def read(self): while True: b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE)) if not b: break ptr = self.buffer.tell() self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr) self.newlines = 0 return self.buffer.read() def readline(self): while self.newlines == 0: b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE)) self.newlines = b.count(b"\n") + (not b) ptr = self.buffer.tell() self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr) self.newlines -= 1 return self.buffer.readline() def flush(self): if self.writable: os.write(self._fd, self.buffer.getvalue()) self.buffer.truncate(0), self.buffer.seek(0) class IOWrapper(IOBase): def __init__(self, file): self.buffer = FastIO(file) self.flush = self.buffer.flush self.writable = self.buffer.writable self.write = lambda s: self.buffer.write(s.encode("ascii")) self.read = lambda: self.buffer.read().decode("ascii") self.readline = lambda: self.buffer.readline().decode("ascii") sys.stdin, sys.stdout = IOWrapper(sys.stdin), IOWrapper(sys.stdout) input = lambda: sys.stdin.readline().rstrip("\r\n") # endregion if __name__ == "__main__": main() ``` Yes
98,092
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Submitted Solution: ``` N=int(input()) S=input() p=0 b=[0 for i in range(N+1)] a=0 s=0 for c in S: if c=='0': p=0;b[0]+=1 else: if p==0: p=1;s+=b[0]+1;b[1]+=b[0];b[0]=0;b[1]+=1 else: p+=1;s+=b[p-1]+p-1;b[p]+=b[p-1];b[p-1]=1 a+=s print(a) ``` Yes
98,093
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Submitted Solution: ``` n = int(input()) s = input() i = 0 ans = 0 curr = 0 prev = [-1] * 500005 while (i < n): if s[i] == '0': #print('0->', i, curr) ans += curr else: left = i right = i while (right+1 < n) and (s[right+1] == '1'): right += 1 for j in range(right+1-left): curr += (left + j) - prev[j] #print(left, right, j, curr) ans += curr prev[j] = right - j i = right i += 1 print(ans) ``` Yes
98,094
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Submitted Solution: ``` n=int(input()) s=input() t=0 for i in range(n): if s[i]==1: t+=(i+1)*(n-i) print(t) ``` No
98,095
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Submitted Solution: ``` n=int(input()) s=list(map(int,input().split())) t=0 for i,v in enumerate(s): t+=v*(i+1)*(n-i) print(t) ``` No
98,096
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Submitted Solution: ``` import sys sys.setrecursionlimit(10 ** 7) f_inf = float('inf') mod = 10 ** 9 + 7 def resolve(): n = int(input()) S = input() res = 0 for i in range(n): if S[i] == "1": res += pow(2, n - i) print(res) if __name__ == '__main__': resolve() ``` No
98,097
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Zookeeper is buying a carton of fruit to feed his pet wabbit. The fruits are a sequence of apples and oranges, which is represented by a binary string s_1s_2… s_n of length n. 1 represents an apple and 0 represents an orange. Since wabbit is allergic to eating oranges, Zookeeper would like to find the longest contiguous sequence of apples. Let f(l,r) be the longest contiguous sequence of apples in the substring s_{l}s_{l+1}… s_{r}. Help Zookeeper find ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r), or the sum of f across all substrings. Input The first line contains a single integer n (1 ≤ n ≤ 5 ⋅ 10^5). The next line contains a binary string s of length n (s_i ∈ \{0,1\}) Output Print a single integer: ∑_{l=1}^{n} ∑_{r=l}^{n} f(l,r). Examples Input 4 0110 Output 12 Input 7 1101001 Output 30 Input 12 011100011100 Output 156 Note In the first test, there are ten substrings. The list of them (we let [l,r] be the substring s_l s_{l+1} … s_r): * [1,1]: 0 * [1,2]: 01 * [1,3]: 011 * [1,4]: 0110 * [2,2]: 1 * [2,3]: 11 * [2,4]: 110 * [3,3]: 1 * [3,4]: 10 * [4,4]: 0 The lengths of the longest contiguous sequence of ones in each of these ten substrings are 0,1,2,2,1,2,2,1,1,0 respectively. Hence, the answer is 0+1+2+2+1+2+2+1+1+0 = 12. Submitted Solution: ``` n=int(input()) s=map(int,input().split()) t=0 for i,v in enumerate(s): t+=v*(i+1)*(n-i) print(t) ``` No
98,098
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Provide tags and a correct Python 3 solution for this coding contest problem. Dr. Moriarty is about to send a message to Sherlock Holmes. He has a string s. String p is called a substring of string s if you can read it starting from some position in the string s. For example, string "aba" has six substrings: "a", "b", "a", "ab", "ba", "aba". Dr. Moriarty plans to take string s and cut out some substring from it, let's call it t. Then he needs to change the substring t zero or more times. As a result, he should obtain a fixed string u (which is the string that should be sent to Sherlock Holmes). One change is defined as making one of the following actions: * Insert one letter to any end of the string. * Delete one letter from any end of the string. * Change one letter into any other one. Moriarty is very smart and after he chooses some substring t, he always makes the minimal number of changes to obtain u. Help Moriarty choose the best substring t from all substrings of the string s. The substring t should minimize the number of changes Moriarty should make to obtain the string u from it. Input The first line contains a non-empty string s, consisting of lowercase Latin letters. The second line contains a non-empty string u, consisting of lowercase Latin letters. The lengths of both strings are in the range from 1 to 2000, inclusive. Output Print the only integer — the minimum number of changes that Dr. Moriarty has to make with the string that you choose. Examples Input aaaaa aaa Output 0 Input abcabc bcd Output 1 Input abcdef klmnopq Output 7 Note In the first sample Moriarty can take any substring of length 3, and it will be equal to the required message u, so Moriarty won't have to make any changes. In the second sample you should take a substring consisting of characters from second to fourth ("bca") or from fifth to sixth ("bc"). Then you will only have to make one change: to change or to add the last character. In the third sample the initial string s doesn't contain any character that the message should contain, so, whatever string you choose, you will have to make at least 7 changes to obtain the required message. Tags: brute force Correct Solution: ``` x,y=input(),input() res=[0]*len(x) dicc ={i:[] for i in "abcdefghijklmnopqrstuvwxyz"} for i,j in enumerate(x): dicc[j].append(i) for i in y: for j in dicc[i]: res[j]+=1 res=[0]+res print(len(y)-max(res)) ```
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0
Provide tags and a correct Python 3 solution for this coding contest problem. Dr. Moriarty is about to send a message to Sherlock Holmes. He has a string s. String p is called a substring of string s if you can read it starting from some position in the string s. For example, string "aba" has six substrings: "a", "b", "a", "ab", "ba", "aba". Dr. Moriarty plans to take string s and cut out some substring from it, let's call it t. Then he needs to change the substring t zero or more times. As a result, he should obtain a fixed string u (which is the string that should be sent to Sherlock Holmes). One change is defined as making one of the following actions: * Insert one letter to any end of the string. * Delete one letter from any end of the string. * Change one letter into any other one. Moriarty is very smart and after he chooses some substring t, he always makes the minimal number of changes to obtain u. Help Moriarty choose the best substring t from all substrings of the string s. The substring t should minimize the number of changes Moriarty should make to obtain the string u from it. Input The first line contains a non-empty string s, consisting of lowercase Latin letters. The second line contains a non-empty string u, consisting of lowercase Latin letters. The lengths of both strings are in the range from 1 to 2000, inclusive. Output Print the only integer — the minimum number of changes that Dr. Moriarty has to make with the string that you choose. Examples Input aaaaa aaa Output 0 Input abcabc bcd Output 1 Input abcdef klmnopq Output 7 Note In the first sample Moriarty can take any substring of length 3, and it will be equal to the required message u, so Moriarty won't have to make any changes. In the second sample you should take a substring consisting of characters from second to fourth ("bca") or from fifth to sixth ("bc"). Then you will only have to make one change: to change or to add the last character. In the third sample the initial string s doesn't contain any character that the message should contain, so, whatever string you choose, you will have to make at least 7 changes to obtain the required message. Tags: brute force Correct Solution: ``` #------------------------template--------------------------# import os import sys from math import * from collections import * from fractions import * from bisect import * from heapq import* from io import BytesIO, IOBase def vsInput(): sys.stdin = open('input.txt', 'r') sys.stdout = open('output.txt', 'w') BUFSIZE = 8192 class FastIO(IOBase): newlines = 0 def __init__(self, file): self._fd = file.fileno() self.buffer = BytesIO() self.writable = "x" in file.mode or "r" not in file.mode self.write = self.buffer.write if self.writable else None def read(self): while True: b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE)) if not b: break ptr = self.buffer.tell() self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr) self.newlines = 0 return self.buffer.read() def readline(self): while self.newlines == 0: b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE)) self.newlines = b.count(b"\n") + (not b) ptr = self.buffer.tell() self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr) self.newlines -= 1 return self.buffer.readline() def flush(self): if self.writable: os.write(self._fd, self.buffer.getvalue()) self.buffer.truncate(0), self.buffer.seek(0) class IOWrapper(IOBase): def __init__(self, file): self.buffer = FastIO(file) self.flush = self.buffer.flush self.writable = self.buffer.writable self.write = lambda s: self.buffer.write(s.encode("ascii")) self.read = lambda: self.buffer.read().decode("ascii") self.readline = lambda: self.buffer.readline().decode("ascii") sys.stdin, sys.stdout = IOWrapper(sys.stdin), IOWrapper(sys.stdout) input = lambda: sys.stdin.readline().rstrip("\r\n") ALPHA='abcdefghijklmnopqrstuvwxyz' M=10**9+7 EPS=1e-6 def value():return tuple(map(int,input().split())) def array():return [int(i) for i in input().split()] def Int():return int(input()) def Str():return input() def arrayS():return [i for i in input().split()] #-------------------------code---------------------------# # vsInput() def cost(x): ans=0 for i in range(len(t)): ans+=s[i+x]!=t[i] return ans s=input() t=input() n=len(s) ans=inf s='/'*(len(t))+s+'/'*(len(t)) for i in range(n+2*len(t)-len(t)): ans=min(ans,cost(i)) print(ans) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. Dr. Moriarty is about to send a message to Sherlock Holmes. He has a string s. String p is called a substring of string s if you can read it starting from some position in the string s. For example, string "aba" has six substrings: "a", "b", "a", "ab", "ba", "aba". Dr. Moriarty plans to take string s and cut out some substring from it, let's call it t. Then he needs to change the substring t zero or more times. As a result, he should obtain a fixed string u (which is the string that should be sent to Sherlock Holmes). One change is defined as making one of the following actions: * Insert one letter to any end of the string. * Delete one letter from any end of the string. * Change one letter into any other one. Moriarty is very smart and after he chooses some substring t, he always makes the minimal number of changes to obtain u. Help Moriarty choose the best substring t from all substrings of the string s. The substring t should minimize the number of changes Moriarty should make to obtain the string u from it. Input The first line contains a non-empty string s, consisting of lowercase Latin letters. The second line contains a non-empty string u, consisting of lowercase Latin letters. The lengths of both strings are in the range from 1 to 2000, inclusive. Output Print the only integer — the minimum number of changes that Dr. Moriarty has to make with the string that you choose. Examples Input aaaaa aaa Output 0 Input abcabc bcd Output 1 Input abcdef klmnopq Output 7 Note In the first sample Moriarty can take any substring of length 3, and it will be equal to the required message u, so Moriarty won't have to make any changes. In the second sample you should take a substring consisting of characters from second to fourth ("bca") or from fifth to sixth ("bc"). Then you will only have to make one change: to change or to add the last character. In the third sample the initial string s doesn't contain any character that the message should contain, so, whatever string you choose, you will have to make at least 7 changes to obtain the required message. Tags: brute force Correct Solution: ``` aa = input() bb = input() if len(aa) >= len(bb): p = aa q = bb else: p = aa q = bb maxc = 0 for i in range(1,len(p)+len(q)): k1 = max(0,i-len(q)) k2 = min(i,len(p)) a = p[k1:k2] if i < len(q): b = q[-i:] elif i > len(p): b = q[:-(i-len(p))] else: b = q c = 0 for j in range(len(a)): if a[j] == b[j]: c += 1 if c > maxc: maxc = c print(len(bb)-maxc) ```
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Provide tags and a correct Python 3 solution for this coding contest problem. Dr. Moriarty is about to send a message to Sherlock Holmes. He has a string s. String p is called a substring of string s if you can read it starting from some position in the string s. For example, string "aba" has six substrings: "a", "b", "a", "ab", "ba", "aba". Dr. Moriarty plans to take string s and cut out some substring from it, let's call it t. Then he needs to change the substring t zero or more times. As a result, he should obtain a fixed string u (which is the string that should be sent to Sherlock Holmes). One change is defined as making one of the following actions: * Insert one letter to any end of the string. * Delete one letter from any end of the string. * Change one letter into any other one. Moriarty is very smart and after he chooses some substring t, he always makes the minimal number of changes to obtain u. Help Moriarty choose the best substring t from all substrings of the string s. The substring t should minimize the number of changes Moriarty should make to obtain the string u from it. Input The first line contains a non-empty string s, consisting of lowercase Latin letters. The second line contains a non-empty string u, consisting of lowercase Latin letters. The lengths of both strings are in the range from 1 to 2000, inclusive. Output Print the only integer — the minimum number of changes that Dr. Moriarty has to make with the string that you choose. Examples Input aaaaa aaa Output 0 Input abcabc bcd Output 1 Input abcdef klmnopq Output 7 Note In the first sample Moriarty can take any substring of length 3, and it will be equal to the required message u, so Moriarty won't have to make any changes. In the second sample you should take a substring consisting of characters from second to fourth ("bca") or from fifth to sixth ("bc"). Then you will only have to make one change: to change or to add the last character. In the third sample the initial string s doesn't contain any character that the message should contain, so, whatever string you choose, you will have to make at least 7 changes to obtain the required message. Tags: brute force Correct Solution: ``` x,y=input(),input() t=[0]*len(x) p={i:[] for i in "abcdefghijklmnopqrstuvwxyz"} for i,j in enumerate(x): p[j].append(i) #print(p) for i in y: for j in p[i]: t[j]+=1 t=[0]+t print(len(y)-max(t)) # Made By Mostafa_Khaled ```
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0
Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Dr. Moriarty is about to send a message to Sherlock Holmes. He has a string s. String p is called a substring of string s if you can read it starting from some position in the string s. For example, string "aba" has six substrings: "a", "b", "a", "ab", "ba", "aba". Dr. Moriarty plans to take string s and cut out some substring from it, let's call it t. Then he needs to change the substring t zero or more times. As a result, he should obtain a fixed string u (which is the string that should be sent to Sherlock Holmes). One change is defined as making one of the following actions: * Insert one letter to any end of the string. * Delete one letter from any end of the string. * Change one letter into any other one. Moriarty is very smart and after he chooses some substring t, he always makes the minimal number of changes to obtain u. Help Moriarty choose the best substring t from all substrings of the string s. The substring t should minimize the number of changes Moriarty should make to obtain the string u from it. Input The first line contains a non-empty string s, consisting of lowercase Latin letters. The second line contains a non-empty string u, consisting of lowercase Latin letters. The lengths of both strings are in the range from 1 to 2000, inclusive. Output Print the only integer — the minimum number of changes that Dr. Moriarty has to make with the string that you choose. Examples Input aaaaa aaa Output 0 Input abcabc bcd Output 1 Input abcdef klmnopq Output 7 Note In the first sample Moriarty can take any substring of length 3, and it will be equal to the required message u, so Moriarty won't have to make any changes. In the second sample you should take a substring consisting of characters from second to fourth ("bca") or from fifth to sixth ("bc"). Then you will only have to make one change: to change or to add the last character. In the third sample the initial string s doesn't contain any character that the message should contain, so, whatever string you choose, you will have to make at least 7 changes to obtain the required message. Submitted Solution: ``` #------------------------template--------------------------# import os import sys from math import * from collections import * from fractions import * from bisect import * from heapq import* from io import BytesIO, IOBase def vsInput(): sys.stdin = open('input.txt', 'r') sys.stdout = open('output.txt', 'w') BUFSIZE = 8192 class FastIO(IOBase): newlines = 0 def __init__(self, file): self._fd = file.fileno() self.buffer = BytesIO() self.writable = "x" in file.mode or "r" not in file.mode self.write = self.buffer.write if self.writable else None def read(self): while True: b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE)) if not b: break ptr = self.buffer.tell() self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr) self.newlines = 0 return self.buffer.read() def readline(self): while self.newlines == 0: b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE)) self.newlines = b.count(b"\n") + (not b) ptr = self.buffer.tell() self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr) self.newlines -= 1 return self.buffer.readline() def flush(self): if self.writable: os.write(self._fd, self.buffer.getvalue()) self.buffer.truncate(0), self.buffer.seek(0) class IOWrapper(IOBase): def __init__(self, file): self.buffer = FastIO(file) self.flush = self.buffer.flush self.writable = self.buffer.writable self.write = lambda s: self.buffer.write(s.encode("ascii")) self.read = lambda: self.buffer.read().decode("ascii") self.readline = lambda: self.buffer.readline().decode("ascii") sys.stdin, sys.stdout = IOWrapper(sys.stdin), IOWrapper(sys.stdout) input = lambda: sys.stdin.readline().rstrip("\r\n") ALPHA='abcdefghijklmnopqrstuvwxyz' M=10**9+7 EPS=1e-6 def value():return tuple(map(int,input().split())) def array():return [int(i) for i in input().split()] def Int():return int(input()) def Str():return input() def arrayS():return [i for i in input().split()] #-------------------------code---------------------------# # vsInput() def cost(x): temp=s[x:] ans=0 i=0 while(i<len(t) and t[i]!=temp[0]): i+=1 ans+=1 start=i while(i<len(t) and i-start<len(temp)): ans+=t[i]!=temp[i-start] i+=1 # print(ans) ans+=len(t)-i # print(temp,ans,i) return ans s=input() t=input() n=len(s) ans=inf for i in range(n): ans=min(ans,cost(i)) s=s[::-1] t=t[::-1] for i in range(n): ans=min(ans,cost(i)) print(ans) ``` No
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Evaluate the correctness of the submitted Python 3 solution to the coding contest problem. Provide a "Yes" or "No" response. Dr. Moriarty is about to send a message to Sherlock Holmes. He has a string s. String p is called a substring of string s if you can read it starting from some position in the string s. For example, string "aba" has six substrings: "a", "b", "a", "ab", "ba", "aba". Dr. Moriarty plans to take string s and cut out some substring from it, let's call it t. Then he needs to change the substring t zero or more times. As a result, he should obtain a fixed string u (which is the string that should be sent to Sherlock Holmes). One change is defined as making one of the following actions: * Insert one letter to any end of the string. * Delete one letter from any end of the string. * Change one letter into any other one. Moriarty is very smart and after he chooses some substring t, he always makes the minimal number of changes to obtain u. Help Moriarty choose the best substring t from all substrings of the string s. The substring t should minimize the number of changes Moriarty should make to obtain the string u from it. Input The first line contains a non-empty string s, consisting of lowercase Latin letters. The second line contains a non-empty string u, consisting of lowercase Latin letters. The lengths of both strings are in the range from 1 to 2000, inclusive. Output Print the only integer — the minimum number of changes that Dr. Moriarty has to make with the string that you choose. Examples Input aaaaa aaa Output 0 Input abcabc bcd Output 1 Input abcdef klmnopq Output 7 Note In the first sample Moriarty can take any substring of length 3, and it will be equal to the required message u, so Moriarty won't have to make any changes. In the second sample you should take a substring consisting of characters from second to fourth ("bca") or from fifth to sixth ("bc"). Then you will only have to make one change: to change or to add the last character. In the third sample the initial string s doesn't contain any character that the message should contain, so, whatever string you choose, you will have to make at least 7 changes to obtain the required message. Submitted Solution: ``` s= input() s1 = input() count =1 for i in range(len(s1)): if s1[:count] in s: count+=1 if count==1: for i in set(s1): if i in s: count+=1 print(len(s1)-count+1) ``` No
98,139
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