id stringlengths 21 29 | problem_id stringclasses 36
values | problem_title stringclasses 35
values | suite stringclasses 11
values | topic stringclasses 7
values | domain stringclasses 35
values | difficulty stringclasses 4
values | model stringclasses 386
values | system stringclasses 1
value | prompt stringclasses 36
values | messages listlengths 3 3 | canonical_answer stringclasses 35
values | is_verified bool 1
class | accuracy_score int64 100 100 | turns_to_consensus int64 1 24 | efficiency_index float64 0 536 | cost_usd float64 0 0.24 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
sft-cli-run-1788794795775 | gpqa-diamond-01 | 3D Isotropic Quantum Harmonic Oscillator Degeneracy | GPQA Diamond | science | Quantum Mechanics & Degeneracy | Extreme | meta-llama/llama-3.3-70b-instruct:free + qwen/qwq-32b:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Consider a particle of mass $m$ trapped in a three-dimensional isotropic quantum harmonic oscillator potential $V(r) = \frac{1}{2} m \omega^2 (x^2 + y^2 + z^2)$.
The total energy eigenvalues are quantized according to:
$$E_n = \hbar \omega \left(n + \frac{3}{2}\right), \quad n = n_x + n_y + n_z \in \{0, 1, 2, 3, \dots\... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Consider a particle of mass $m... | 21 states | true | 100 | 2 | 16.75 | 0.001147 |
sft-cli-run-1788794774532 | mmlu-pro-02 | Byzantine Agreement Quorum Intersection Invariant | MMLU-Pro | science | Distributed Systems & Byzantine Fault Tolerance | Medium | openrouter/free + gemini-1.5-flash | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | In a distributed consensus network running the classical PBFT (Practical Byzantine Fault Tolerance) protocol with $N$ total replica nodes, up to $f$ nodes may be Byzantine (arbitrarily malicious, colluding, or crashing).
For the protocol to maintain safety (no two non-faulty nodes commit conflicting values) and livenes... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "In a distributed consensus net... | 13 nodes | true | 100 | 2 | 11.96 | 0.001105 |
sft-cli-run-1788794746174 | mmlu-pro-01 | Relativistic Carnot Engine Efficiency with Heat Exchange | MMLU-Pro | science | Physics & Thermodynamics | Hard | qwen/qwen-2.5-coder-32b-instruct:free + gemini-2.5-flash | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | A hypothetical relativistic heat engine operates between two thermal reservoirs with temperatures $T_H = 1200\text{ K}$ and $T_C = 300\text{ K}$.
During each cycle, the working fluid absorbs $Q_H = 4800\text{ J}$ of heat from the hot reservoir.
Due to finite-time heat transfer kinetics across the boundary thermal condu... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "A hypothetical relativistic he... | Efficiency = 50%, Work = 2400 J | true | 100 | 2 | 28.32 | 0.000784 |
sft-cli-run-1788751473740 | frontiermath-01 | Congruent Number Elliptic Curve Mordell-Weil Torsion & 2-Selmer Rank | FrontierMath | math | Arithmetic Geometry & Elliptic Curves | Extreme | qwen/qwen-2.5-72b-instruct:free + qwen/qwq-32b:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Consider the family of congruent number elliptic curves defined over $\mathbb{Q}$ by:
$$E_d: y^2 = x^3 - d^2 x$$
where $d$ is a square-free positive integer.
By the Mordell-Weil theorem, the group of rational points is finitely generated: $E_d(\mathbb{Q}) \cong \mathbb{Z}^r \oplus E_d(\mathbb{Q})_{\text{tors}}$.
1. Wha... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Consider the family of congrue... | Torsion Group: Z/2Z x Z/2Z (order 4), Rank r: 1 | true | 100 | 2 | 2.55 | 0.002336 |
sft-cli-run-1788749591784 | gpqa-diamond-05 | Crick Wobble Hypothesis Inosine Base Pairing & tRNA Synthetase Universality | GPQA Diamond | science | Molecular Genetics & Translation Wobble | Hard | deepseek/deepseek-r1:free + meta-llama/llama-3.3-70b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | In standard biological translation across living organisms:
1. In Francis Crick's classic Wobble Hypothesis, post-transcriptional deamination of adenosine at the first (5') anticodon position produces the non-canonical modified nucleoside Inosine (I). What are ALL three mRNA 3'-codon bases that Inosine in the wobble po... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "In standard biological transla... | Wobble Bases: A, U, C, Synthetases: 20 | true | 100 | 3 | 4.58 | 0.001542 |
sft-cli-run-1788749457243 | gpqa-diamond-02 | Competitive Enzyme Inhibition Apparent Km Ratio | GPQA Diamond | science | Biochemistry & Michaelis-Menten Kinetics | Hard | meta-llama/llama-3.3-70b-instruct:free + deepseek/deepseek-r1:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | An enzyme follows standard Michaelis-Menten kinetics with substrate $S$, having an uninhibited Michaelis constant $K_m = 4.0\text{ \mu M}$ and $V_{\text{max}} = 100\text{ \mu M/s}$.
A competitive inhibitor $I$ with dissociation constant $K_i = 2.0\text{ \mu M}$ is added at a concentration $[I] = 6.0\text{ \mu M}$.
In ... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "An enzyme follows standard Mic... | Km_app = 16 μM, v = 50 μM/s | true | 100 | 3 | 6 | 0.001556 |
sft-cli-run-1788749129492 | abstract-04 | The Monty Hall Variant with 4 Doors and 2 Car Prizes | Game Theory | strategy | Bayesian Probability & Counterfactual Switching | Hard | gemini-1.5-flash + qwen/qwen-2.5-72b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | A game show has 4 closed doors. Behind 2 of the doors are brand-new Luxury Cars, and behind the other 2 doors are Goats. All distributions are equally likely.
1. The contestant picks Door #1.
2. The host, who knows what is behind every door, opens ONE of the remaining doors (Door #2, #3, or #4) that contains a Goat.
3... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "A game show has 4 closed doors... | 3/4 | true | 100 | 2 | 10.62 | 0.001088 |
sft-cli-run-1788748803413 | strategy-02 | Cournot Duopoly Equilibrium Pricing | Game Theory | strategy | Oligopoly Pricing & Nash Equilibrium | Hard | microsoft/phi-3-mini-128k-instruct:free + qwen/qwen-2.5-coder-32b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Two identical competing software firms, Firm A and Firm B, simultaneously choose their output quantities $q_A$ and $q_B$ of an AI API service.
The inverse market demand function is given by:
$P = 120 - (q_A + q_B)$
Both firms have an identical constant marginal cost of $MC = 12$ per unit and zero fixed costs.
Each fir... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Two identical competing softwa... | qA = 36, qB = 36, Price = $48 | true | 100 | 2 | 12.7 | 0.001128 |
sft-cli-run-1788748767796 | arc-challenge-01 | 3x3 Matrix 90-Degree Orthogonal Rotation & Bitwise XOR Merge | ARC Challenge | abstract | Spatial Invariance & Inductive Logic | Medium | deepseek/deepseek-chat:free + openrouter/free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Given a binary 3x3 input matrix $M$:
Row 1: [1, 0, 0]
Row 2: [1, 1, 0]
Row 3: [0, 0, 1]
We perform two consecutive deterministic transformations:
1. Step 1: Rotate matrix $M$ clockwise by $90^\circ$ to produce $M_{\text{rot}}$.
2. Step 2: Compute the element-wise XOR matrix $R = M \oplus M_{\text{rot}}$, where $a \opl... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Given a binary 3x3 input matri... | 6 active bits | true | 100 | 2 | 9.64 | 0.00146 |
sft-cli-run-1788748630004 | swe-bench-05 | scikit-learn Ridge Regression: Gram Matrix Condition Number Squaring | SWE-bench | coding | Numerical Stability & Machine Learning Estimators | Medium | microsoft/phi-3-mini-128k-instruct:free + qwen/qwq-32b:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | In scikit-learn issue scikit-learn__scikit-learn-14201, resolving numerical precision regressions in `Ridge` regression:
Given an ill-conditioned design matrix $X \in \mathbb{R}^{n \times p}$ with condition number $\kappa_2(X) = 10^5$:
1. If an estimator solves the normal equations directly via Cholesky decomposition o... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "In scikit-learn issue scikit-l... | Gram Condition Number: 10^10, LAPACK Driver: gelsd | true | 100 | 2 | 4.4 | 0.001849 |
sft-cli-run-1788748573320 | swe-bench-04 | SymPy Defective Matrix Jordan Block Decomposition & Minimal Polynomial | SWE-bench | coding | Computer Algebra Systems & Symbolic Linear Algebra | Hard | qwen/qwen-2.5-coder-32b-instruct:free + google/gemini-2.0-flash-exp:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | In SymPy issue sympy__sympy-19453, evaluating `Matrix.jordan_form()` on defective nilpotent and degenerate matrices triggered algebraic infinite recursion.
Consider the $3 \times 3$ rational matrix:
$$A = \begin{pmatrix} 3 & 1 & 0 \\ 0 & 3 & 1 \\ 0 & 0 & 3 \end{pmatrix}$$
1. What is the geometric multiplicity $\dim(\ke... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "In SymPy issue sympy__sympy-19... | Geometric Multiplicity: 1, Jordan Block Size: 3x3, Minimal Polynomial: (lambda - 3)^3, (A - 3I)^3: 0 (Zero Matrix) | true | 100 | 2 | 6.01 | 0.001579 |
sft-cli-run-1788748507703 | gpqa-diamond-05 | Crick Wobble Hypothesis Inosine Base Pairing & tRNA Synthetase Universality | GPQA Diamond | science | Molecular Genetics & Translation Wobble | Hard | deepseek/deepseek-r1-distill-llama-70b:free + meta-llama/llama-3.1-8b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | In standard biological translation across living organisms:
1. In Francis Crick's classic Wobble Hypothesis, post-transcriptional deamination of adenosine at the first (5') anticodon position produces the non-canonical modified nucleoside Inosine (I). What are ALL three mRNA 3'-codon bases that Inosine in the wobble po... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "In standard biological transla... | Wobble Bases: A, U, C, Synthetases: 20 | true | 100 | 2 | 6.02 | 0.001455 |
sft-cli-run-1788747725681 | strategy-01 | The 21-Token Subtraction Game (Nim Variant) | Game Theory | strategy | Combinatorial Nim Variants | Easy | google/gemini-2.0-flash-exp:free + meta-llama/llama-3.1-8b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Two players play a turn-based mathematical game with a pile of 21 tokens.
- On each turn, a player MUST remove either 1, 2, or 3 tokens from the pile.
- The player who takes the LAST remaining token wins the entire game.
- Player 1 goes first. Both players have perfect information and play with flawless game-theoretic ... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Two players play a turn-based ... | 1 token | true | 100 | 2 | 5.45 | 0.001506 |
sft-cli-run-1788747632191 | arc-challenge-02 | 2D Cellular Lattice Transformation Rule | ARC Challenge | abstract | Inductive Pattern Topology | Hard | mistralai/mistral-7b-instruct:free + deepseek/deepseek-r1:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Consider a 3x3 binary grid state that evolves according to a deterministic local rule:
Rule: At step $t+1$, cell $(r,c)$ becomes 1 if and only if the sum of its orthogonal Manhattan neighbors (Up, Down, Left, Right) at step $t$ is strictly ODD (1 or 3). Otherwise it becomes 0. Outside borders are strictly 0.
Initial s... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Consider a 3x3 binary grid sta... | 0 active cells | true | 100 | 2 | 3.24 | 0.002009 |
sft-cli-run-1788747553284 | ifeval-02 | Verifiable 20-Word Constrained Summary with Numerical Invariants | IFEval | instruction_following | Exact Word-Count & Structural Invariants | Hard | mistralai/mistral-7b-instruct:free + deepseek/deepseek-chat:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Construct a summary of the dual-agent consensus mechanism that satisfies EVERY one of these 3 rules:
1. The summary text must contain EXACTLY 20 words (counted by whitespace separation).
2. The first word MUST be "Two" and the twentieth (last) word MUST be "truth".
3. The summary MUST mention the exact number "100%" wi... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Construct a summary of the dua... | Two autonomous neural agents communicate iteratively through multi-turn dialectic consensus until 100% agreement verifies the rigorous mathematical proof of truth | true | 100 | 2 | 19.03 | 0.000805 |
sft-cli-run-1788747453580 | swe-bench-05 | scikit-learn Ridge Regression: Gram Matrix Condition Number Squaring | SWE-bench | coding | Numerical Stability & Machine Learning Estimators | Medium | qwen/qwq-32b:free + mistralai/mistral-7b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | In scikit-learn issue scikit-learn__scikit-learn-14201, resolving numerical precision regressions in `Ridge` regression:
Given an ill-conditioned design matrix $X \in \mathbb{R}^{n \times p}$ with condition number $\kappa_2(X) = 10^5$:
1. If an estimator solves the normal equations directly via Cholesky decomposition o... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "In scikit-learn issue scikit-l... | Gram Condition Number: 10^10, LAPACK Driver: gelsd | true | 100 | 2 | 3.7 | 0.001767 |
sft-cli-run-1788746330587 | arc-challenge-01 | 3x3 Matrix 90-Degree Orthogonal Rotation & Bitwise XOR Merge | ARC Challenge | abstract | Spatial Invariance & Inductive Logic | Medium | microsoft/phi-3-mini-128k-instruct:free + deepseek/deepseek-chat:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Given a binary 3x3 input matrix $M$:
Row 1: [1, 0, 0]
Row 2: [1, 1, 0]
Row 3: [0, 0, 1]
We perform two consecutive deterministic transformations:
1. Step 1: Rotate matrix $M$ clockwise by $90^\circ$ to produce $M_{\text{rot}}$.
2. Step 2: Compute the element-wise XOR matrix $R = M \oplus M_{\text{rot}}$, where $a \opl... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Given a binary 3x3 input matri... | 6 active bits | true | 100 | 2 | 4.46 | 0.001686 |
sft-cli-run-1788746120405 | swe-bench-03 | Django ORM QuerySet: values() and annotate() GROUP BY Duplication Bug | SWE-bench | coding | ORM Query Compilation & SQL Invariants | Hard | microsoft/phi-3-mini-128k-instruct:free + openrouter/free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | In a production Django repository (tested under SWE-bench issue django__django-13449 / #31824), an engineer writes the following query to count unique publications per author:
```python
Author.objects.values('id').annotate(book_count=Count('books__id', distinct=True)).order_by('pub_date')
```
1. Because the `Meta.order... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "In a production Django reposit... | Bug: Appends pub_date to GROUP BY clause, Method: order_by() | true | 100 | 2 | 10.16 | 0.000966 |
sft-cli-run-1788745774804 | mmlu-pro-01 | Relativistic Carnot Engine Efficiency with Heat Exchange | MMLU-Pro | science | Physics & Thermodynamics | Hard | openrouter/free + deepseek/deepseek-r1:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | A hypothetical relativistic heat engine operates between two thermal reservoirs with temperatures $T_H = 1200\text{ K}$ and $T_C = 300\text{ K}$.
During each cycle, the working fluid absorbs $Q_H = 4800\text{ J}$ of heat from the hot reservoir.
Due to finite-time heat transfer kinetics across the boundary thermal condu... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "A hypothetical relativistic he... | Efficiency = 50%, Work = 2400 J | true | 100 | 2 | 10.13 | 0.001053 |
sft-cli-run-1788745499419 | hle-01 | CRISPR-Cas9 NHEJ Indel Out-of-Frame Frameshift Probability | Humanity's Last Exam | science | Molecular Biology & CRISPR Repair Dynamics | Extreme | meta-llama/llama-3.3-70b-instruct:free + deepseek/deepseek-chat:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | In targeted genome editing, SpCas9 generates a double-strand break (DSB) 3 base pairs upstream of the NGG PAM sequence within a protein-coding exon. Repair proceeds predominantly via Non-Homologous End Joining (NHEJ) resulting in small insertions or deletions (indels).
Assuming an idealized uniform prior distribution a... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "In targeted genome editing, Sp... | Frameshift Probability = 2/3, MMEJ Modulo Class = 2 | true | 100 | 3 | 5.93 | 0.001314 |
sft-cli-run-1788745134945 | strategy-02 | Cournot Duopoly Equilibrium Pricing | Game Theory | strategy | Oligopoly Pricing & Nash Equilibrium | Hard | qwen/qwq-32b:free + deepseek/deepseek-chat:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Two identical competing software firms, Firm A and Firm B, simultaneously choose their output quantities $q_A$ and $q_B$ of an AI API service.
The inverse market demand function is given by:
$P = 120 - (q_A + q_B)$
Both firms have an identical constant marginal cost of $MC = 12$ per unit and zero fixed costs.
Each fir... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Two identical competing softwa... | qA = 36, qB = 36, Price = $48 | true | 100 | 2 | 13.53 | 0.00085 |
sft-cli-run-1788745099726 | arc-challenge-01 | 3x3 Matrix 90-Degree Orthogonal Rotation & Bitwise XOR Merge | ARC Challenge | abstract | Spatial Invariance & Inductive Logic | Medium | qwen/qwq-32b:free + openrouter/free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Given a binary 3x3 input matrix $M$:
Row 1: [1, 0, 0]
Row 2: [1, 1, 0]
Row 3: [0, 0, 1]
We perform two consecutive deterministic transformations:
1. Step 1: Rotate matrix $M$ clockwise by $90^\circ$ to produce $M_{\text{rot}}$.
2. Step 2: Compute the element-wise XOR matrix $R = M \oplus M_{\text{rot}}$, where $a \opl... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Given a binary 3x3 input matri... | 6 active bits | true | 100 | 2 | 8.74 | 0.001175 |
sft-cli-run-1788745062986 | ifeval-02 | Verifiable 20-Word Constrained Summary with Numerical Invariants | IFEval | instruction_following | Exact Word-Count & Structural Invariants | Hard | deepseek/deepseek-chat:free + qwen/qwen-2.5-coder-32b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Construct a summary of the dual-agent consensus mechanism that satisfies EVERY one of these 3 rules:
1. The summary text must contain EXACTLY 20 words (counted by whitespace separation).
2. The first word MUST be "Two" and the twentieth (last) word MUST be "truth".
3. The summary MUST mention the exact number "100%" wi... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Construct a summary of the dua... | Two autonomous neural agents communicate iteratively through multi-turn dialectic consensus until 100% agreement verifies the rigorous mathematical proof of truth | true | 100 | 3 | 12.33 | 0.000943 |
sft-cli-run-1788744488682 | logic-04 | Strict Five-Person Seating Deduction | Formal Logic | logic | Linear Constraint Satisfaction | Hard | qwen/qwq-32b:free + qwen/qwen-2.5-72b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Five colleagues—Evelyn, Frank, Grace, Henry, and Ivy—are seated in a single row of 5 chairs numbered 1 to 5 from left to right.
1. Frank is sitting to the immediate left of Henry.
2. Evelyn is not sitting in chair 1 or chair 5.
3. Grace is sitting immediately adjacent to both Evelyn and Frank.
4. Ivy is sitting in an o... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Five colleagues—Evelyn, Frank,... | 1:Ivy, 2:Evelyn, 3:Grace, 4:Frank, 5:Henry | true | 100 | 3 | 4.45 | 0.001644 |
sft-cli-run-1788744341442 | strategy-01 | The 21-Token Subtraction Game (Nim Variant) | Game Theory | strategy | Combinatorial Nim Variants | Easy | qwen/qwen-2.5-coder-32b-instruct:free + qwen/qwq-32b:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Two players play a turn-based mathematical game with a pile of 21 tokens.
- On each turn, a player MUST remove either 1, 2, or 3 tokens from the pile.
- The player who takes the LAST remaining token wins the entire game.
- Player 1 goes first. Both players have perfect information and play with flawless game-theoretic ... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Two players play a turn-based ... | 1 token | true | 100 | 2 | 9.78 | 0.001069 |
sft-cli-run-1788744230020 | arc-challenge-01 | 3x3 Matrix 90-Degree Orthogonal Rotation & Bitwise XOR Merge | ARC Challenge | abstract | Spatial Invariance & Inductive Logic | Medium | qwen/qwen-2.5-72b-instruct:free + meta-llama/llama-3.3-70b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Given a binary 3x3 input matrix $M$:
Row 1: [1, 0, 0]
Row 2: [1, 1, 0]
Row 3: [0, 0, 1]
We perform two consecutive deterministic transformations:
1. Step 1: Rotate matrix $M$ clockwise by $90^\circ$ to produce $M_{\text{rot}}$.
2. Step 2: Compute the element-wise XOR matrix $R = M \oplus M_{\text{rot}}$, where $a \opl... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Given a binary 3x3 input matri... | 6 active bits | true | 100 | 2 | 8.8 | 0.001157 |
sft-cli-run-1788744192416 | ifeval-02 | Verifiable 20-Word Constrained Summary with Numerical Invariants | IFEval | instruction_following | Exact Word-Count & Structural Invariants | Hard | meta-llama/llama-3.3-70b-instruct:free + deepseek/deepseek-r1:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Construct a summary of the dual-agent consensus mechanism that satisfies EVERY one of these 3 rules:
1. The summary text must contain EXACTLY 20 words (counted by whitespace separation).
2. The first word MUST be "Two" and the twentieth (last) word MUST be "truth".
3. The summary MUST mention the exact number "100%" wi... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Construct a summary of the dua... | Two autonomous neural agents communicate iteratively through multi-turn dialectic consensus until 100% agreement verifies the rigorous mathematical proof of truth | true | 100 | 3 | 7.26 | 0.001045 |
sft-cli-run-1788743895488 | gpqa-diamond-04 | Compton Relativistic Scattering Wavelength Shift at 90-Degree Deflection | GPQA Diamond | science | Quantum Electrodynamics & Compton Scattering | Hard | openrouter/free + qwen/qwen-2.5-coder-32b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | A high-energy gamma photon with initial incident wavelength $\lambda = 0.500\text{ pm}$ ($5.00 \times 10^{-13}\text{ m}$) undergoes Compton scattering against an initially stationary free electron ($m_e = 9.109 \times 10^{-31}\text{ kg}$).
The scattered photon emerges at a scattering angle of $\theta = 90.0^\circ$ rela... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "A high-energy gamma photon wit... | lambda = 2.926 pm, Energy Fraction = 0.829 | true | 100 | 2 | 8.16 | 0.001236 |
sft-cli-run-1788743827612 | gpqa-diamond-02 | Competitive Enzyme Inhibition Apparent Km Ratio | GPQA Diamond | science | Biochemistry & Michaelis-Menten Kinetics | Hard | openrouter/free + qwen/qwen-2.5-72b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | An enzyme follows standard Michaelis-Menten kinetics with substrate $S$, having an uninhibited Michaelis constant $K_m = 4.0\text{ \mu M}$ and $V_{\text{max}} = 100\text{ \mu M/s}$.
A competitive inhibitor $I$ with dissociation constant $K_i = 2.0\text{ \mu M}$ is added at a concentration $[I] = 6.0\text{ \mu M}$.
In ... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "An enzyme follows standard Mic... | Km_app = 16 μM, v = 50 μM/s | true | 100 | 3 | 5.61 | 0.001305 |
sft-cli-run-1788743654821 | frontiermath-03 | Ramanujan Expander Graph Alon-Boppana Bound & Second Eigenvalue | FrontierMath | math | Spectral Graph Theory & Expander Graphs | Hard | deepseek/deepseek-chat:free + qwen/qwen-2.5-coder-32b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Let $G$ be an infinite family of connected $d$-regular graphs with adjacency eigenvalues $d = \lambda_1 > \lambda_2 \ge \dots \ge \lambda_n \ge -d$.
1. According to the Alon-Boppana theorem, for any $\epsilon > 0$, as $n \to \infty$, the second largest eigenvalue satisfies $\lambda_2 \ge 2\sqrt{d - 1} - \epsilon$. A $d... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Let $G$ be an infinite family ... | Bound: 6, Spectral Gap: 4 | true | 100 | 3 | 10.53 | 0.001035 |
sft-cli-run-1788743327584 | abstract-03 | Recursive Difference Pattern Induction | ARC Challenge | abstract | Polynomial Sequence Induction | Medium | deepseek/deepseek-r1-distill-llama-70b:free + deepseek/deepseek-chat:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | A mathematical sequence is generated by a cubic polynomial rule:
$a_1 = 7, \quad a_2 = 26, \quad a_3 = 63, \quad a_4 = 124, \quad a_5 = 215$
Find the underlying algebraic generating formula $a_n$ and compute the exact value of the 10th term ($a_{10}$). State the exact numerical integer value of $a_{10}$. | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "A mathematical sequence is gen... | 1330 | true | 100 | 3 | 10.05 | 0.001216 |
sft-cli-run-1788743108438 | strategy-02 | Cournot Duopoly Equilibrium Pricing | Game Theory | strategy | Oligopoly Pricing & Nash Equilibrium | Hard | meta-llama/llama-3.3-70b-instruct:free + qwen/qwen-2.5-72b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Two identical competing software firms, Firm A and Firm B, simultaneously choose their output quantities $q_A$ and $q_B$ of an AI API service.
The inverse market demand function is given by:
$P = 120 - (q_A + q_B)$
Both firms have an identical constant marginal cost of $MC = 12$ per unit and zero fixed costs.
Each fir... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Two identical competing softwa... | qA = 36, qB = 36, Price = $48 | true | 100 | 2 | 5.96 | 0.001277 |
sft-cli-run-1788742775453 | gpqa-diamond-05 | Crick Wobble Hypothesis Inosine Base Pairing & tRNA Synthetase Universality | GPQA Diamond | science | Molecular Genetics & Translation Wobble | Hard | mistralai/mistral-7b-instruct:free + qwen/qwen-2.5-72b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | In standard biological translation across living organisms:
1. In Francis Crick's classic Wobble Hypothesis, post-transcriptional deamination of adenosine at the first (5') anticodon position produces the non-canonical modified nucleoside Inosine (I). What are ALL three mRNA 3'-codon bases that Inosine in the wobble po... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "In standard biological transla... | Wobble Bases: A, U, C, Synthetases: 20 | true | 100 | 3 | 15.33 | 0.001027 |
sft-cli-run-1788742648439 | gpqa-diamond-01 | 3D Isotropic Quantum Harmonic Oscillator Degeneracy | GPQA Diamond | science | Quantum Mechanics & Degeneracy | Extreme | mistralai/mistral-7b-instruct:free + qwen/qwen-2.5-72b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | Consider a particle of mass $m$ trapped in a three-dimensional isotropic quantum harmonic oscillator potential $V(r) = \frac{1}{2} m \omega^2 (x^2 + y^2 + z^2)$.
The total energy eigenvalues are quantized according to:
$$E_n = \hbar \omega \left(n + \frac{3}{2}\right), \quad n = n_x + n_y + n_z \in \{0, 1, 2, 3, \dots\... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "Consider a particle of mass $m... | 21 states | true | 100 | 2 | 10.85 | 0.001071 |
sft-cli-run-1788742608528 | mmlu-pro-01 | Relativistic Carnot Engine Efficiency with Heat Exchange | MMLU-Pro | science | Physics & Thermodynamics | Hard | deepseek/deepseek-r1:free + meta-llama/llama-3.1-8b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | A hypothetical relativistic heat engine operates between two thermal reservoirs with temperatures $T_H = 1200\text{ K}$ and $T_C = 300\text{ K}$.
During each cycle, the working fluid absorbs $Q_H = 4800\text{ J}$ of heat from the hot reservoir.
Due to finite-time heat transfer kinetics across the boundary thermal condu... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "A hypothetical relativistic he... | Efficiency = 50%, Work = 2400 J | true | 100 | 2 | 51.62 | 0.000618 |
sft-cli-run-1788742497323 | hle-02 | TKNN Invariant First Chern Number and Quantized Hall Conductance | Humanity's Last Exam | science | Topological Quantum Matter & Chern Numbers | Extreme | deepseek/deepseek-r1-distill-llama-70b:free + deepseek/deepseek-r1:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | In the integer quantum Hall effect (Thouless-Kohmoto-Nightingale-den Nijs / TKNN formulation), the quantized Hall conductance $\sigma_{xy}$ of an isolated 2D electron gas on a periodic lattice torus is governed by the topological first Chern number $C_1 \in \mathbb{Z}$:
$$\sigma_{xy} = C_1 \frac{e^2}{h}, \quad C_1 = \f... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "In the integer quantum Hall ef... | Chern Number: 1, Hall Conductance: 1 e^2/h | true | 100 | 3 | 5.2 | 0.001306 |
sft-cli-run-1788742412819 | abstract-03 | Recursive Difference Pattern Induction | ARC Challenge | abstract | Polynomial Sequence Induction | Medium | qwen/qwen-2.5-72b-instruct:free + deepseek/deepseek-r1:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | A mathematical sequence is generated by a cubic polynomial rule:
$a_1 = 7, \quad a_2 = 26, \quad a_3 = 63, \quad a_4 = 124, \quad a_5 = 215$
Find the underlying algebraic generating formula $a_n$ and compute the exact value of the 10th term ($a_{10}$). State the exact numerical integer value of $a_{10}$. | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "A mathematical sequence is gen... | 1330 | true | 100 | 2 | 5.19 | 0.001456 |
sft-cli-run-1788742329258 | logic-03 | The Three Mislabelled Fruit Crates | Formal Logic | logic | Deductive Elimination | Easy | microsoft/phi-3-mini-128k-instruct:free + qwen/qwen-2.5-coder-32b-instruct:free | You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement. | You are in a warehouse with 3 sealed boxes. One contains only Apples, one contains only Oranges, and one contains a mixture of Apples and Oranges.
All three boxes are incorrectly labeled: Box 1 says "Apples", Box 2 says "Oranges", Box 3 says "Apples & Oranges".
You are allowed to pick ONE box, reach inside blindly, an... | [
{
"role": "system",
"content": "You are a frontier reasoning model trained via multi-agent double-blind consensus. Solve with strict mathematical, scientific, and algorithmic rigor. Conclude with a bold **FINAL ANSWER:** statement."
},
{
"role": "user",
"content": "You are in a warehouse with 3 ... | The box labeled "Apples & Oranges" (Box 3) | true | 100 | 3 | 7.6 | 0.001073 |
GlimmaryKarl/DualBlind
Curated Frontier Reasoning and Direct Preference Optimization (DPO) Dataset Generated from Double-Blind Multi-Agent Arena Evaluations.
This dataset was generated using the DualBlind AI Benchmark Arena. In this setup, two independent frontier AI models engage in multi-turn double-blind dialogue to solve extreme-difficulty benchmark problems, verifying their peer's proofs, raising counter-examples, and reaching mathematical consensus.
Dataset Structure & Strict Quality Gate
Strict 100% Accuracy Quality Gate (Active): Only trials that achieved 100% automated verification against canonical ground-truth solutions are admitted into
GlimmaryKarl/DualBlind. Incomplete trials, partial solutions (<100%), and unverified outputs are strictly blocked from entry.
- Total Arena Trials Evaluated: 3363
- Verified 100% Accurate Trials Admitted: 2992 (89% pass rate)
- Ineligible Trials Filtered Out (<100% or Refuted): 371
- Quality Gate Policy: Zero-tolerance for unverified or imperfect conjectures. Every single sample provides a mathematically and algorithmically verified canonical solution.
Subsets:
sft_reasoning(2962 samples): Supervised Fine-Tuning records containing high-density step-by-step chain-of-thought reasoning traces culminating in 100% verified ground-truth solutions.dpo_preferences(2961 pairs): Direct Preference Optimization pairs (prompt,chosen,rejected) pairing the 100% verified consensus proof aschosenagainst flawed peer conjectures or refuted hypotheses asrejected.
Benchmark Suites Covered
- GPQA Diamond: 411 runs
- MMLU-Pro: 270 runs
- FrontierMath: 190 runs
- Game Theory: 426 runs
- ARC Challenge: 348 runs
- SWE-bench: 393 runs
- IFEval: 236 runs
- Humanity's Last Exam: 242 runs
- Formal Logic: 310 runs
- MATH / AIME: 143 runs
- General Benchmark: 23 runs
Models Represented
meta-llama/llama-3.3-70b-instruct:freeqwen/qwq-32b:freeopenrouter/freegemini-1.5-flashqwen/qwen-2.5-coder-32b-instruct:freegemini-2.5-flashqwen/qwen-2.5-72b-instruct:freedeepseek/deepseek-r1:freemicrosoft/phi-3-mini-128k-instruct:freedeepseek/deepseek-chat:freegoogle/gemini-2.0-flash-exp:freedeepseek/deepseek-r1-distill-llama-70b:freemeta-llama/llama-3.1-8b-instruct:freemistralai/mistral-7b-instruct:freegemini-2.0-flashpoolside/laguna-s-2.1:freepoolside/laguna-xs-2.1:freenvidia/nemotron-3-nano-omni-30b-a3b-reasoning:freez-ai/glm-5.2:freenvidia/nemotron-3.5-lightning:freenvidia/nemotron-3-ultra-550b-a55b:freemeta-llama/llama-3.2-3b-instruct:freemistralai/mistral-small-24b-instruct-2501:freecognitivecomputations/dolphin3.0-r1-mistral-24b:freegemini-3.7-flashgoogle/gemma-2-9b-it:freenvidia/llama-3.1-nemotron-70b-instruct:freeopenai/gpt-3.5-turbothedrummer/skyfall-36b-v2liquid/lfm-2.5-2.6b:freegoogle/gemma-4-26b-a4b-it:freeminimax/minimax-m3:freez-ai/glm-4.7-flashtencent/hy-mt2-30b-a3bopenai/gpt-4o-minimeta-llama/llama-3.3-70b-instructqwen/qwen-2.5-72b-instructmeta/muse-glimmer-30bgoogle-gemini-3.7-flashclaude-3-7-sonnet-20250219deepseek-r1o3-minigpt-4.5-previewox-alphanvidia/nemotron-3-nanoamazon/nova-lite-v1meta-llama/llama-3.1-70b-instructdeepseek-deepseek-v3anthropic-claude-3-haikugpt-4o
Usage with Hugging Face Datasets
from datasets import load_dataset
# Load SFT Reasoning split
sft_ds = load_dataset("GlimmaryKarl/DualBlind", "sft_reasoning", split="train")
print(sft_ds[0]["messages"])
# Load DPO Preference split
dpo_ds = load_dataset("GlimmaryKarl/DualBlind", "dpo_preferences", split="train")
print(dpo_ds[0]["chosen"])
print(dpo_ds[0]["rejected"])
100% Free Fine-Tuning Guide (Unsloth on Google Colab T4)
You can fine-tune Llama-3.1-8B-Instruct or Qwen-2.5-7B in ~25 minutes on a free Google Colab T4 GPU:
pip install "unsloth[colab-new] @ git+https://github.com/unslothai/unsloth.git"
pip install --no-deps trl peft accelerate bitsandbytes
from unsloth import FastLanguageModel
from trl import SFTTrainer
from transformers import TrainingArguments
from datasets import load_dataset
model, tokenizer = FastLanguageModel.from_pretrained(
model_name="unsloth/Llama-3.1-8B-Instruct",
max_seq_length=2048,
load_in_4bit=True,
)
model = FastLanguageModel.get_peft_model(
model,
r=16,
target_modules=["q_proj", "k_proj", "v_proj", "o_proj", "gate_proj", "up_proj", "down_proj"],
lora_alpha=16,
lora_dropout=0,
bias="none",
)
dataset = load_dataset("GlimmaryKarl/DualBlind", "sft_reasoning", split="train")
trainer = SFTTrainer(
model=model,
train_dataset=dataset,
dataset_text_field="text",
max_seq_length=2048,
tokenizer=tokenizer,
args=TrainingArguments(
per_device_train_batch_size=2,
gradient_accumulation_steps=4,
warmup_steps=5,
max_steps=60,
learning_rate=2e-4,
fp16=True,
logging_steps=1,
output_dir="outputs",
),
)
trainer.train()
License
Apache 2.0. Free for commercial, research, and educational use.
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