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Rania saw a 210-foot whale with 7 72-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras make up, we need to first find the combined length of the remoras. Since there are 7 remoras, each measuring 72 inches, we multiply 7 by 72 to find the total length of the remoras: 7 * 72 = 504 inches Now, we need to convert the combined length of t...
To find the percentage of the whale's body length that the remoras occupy, we need to first find the combined length of the remoras. The remoras are 72 inches long, and the whale is 210 feet long. Since there are 12 inches in a foot, we can convert the whale's length to inches: 210 feet * 12 inches/foot = 2520 inche...
Olivia saw a 10-foot dolphin with 8 3-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the combined length of the remoras. The remoras are 3 inches long each, and there are 8 of them. So the combined length of the remoras is 8 * 3 = 24 inches. Since the dolphin is 10 feet (120 inches) long, we can find th...
To find the percentage of the dolphin's body length occupied by the remoras, first, we need to find the total length of the remoras. The length of the remoras is 8 inches. Since there are 12 inches in 1 foot, we convert the length of the remoras to feet: 8 inches / 12 = 2/3 foot. Now, we need to find the total bod...
Jamal saw a 380-foot whale with 8 57-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we need to know the total length of the whale and the length of the remoras. First, let's convert the length of the whale to inches. There are 12 inches in a foot, so: 380 feet * 12 inches/foot = 4,560 inches Now, let's find the combined lengt...
To find the percentage of the whale's body length taken up by the remoras, you need to find the combined length of the remoras and divide it by the whale's length, then multiply by 100. First, convert the remoras' length to feet: 57 inches = 57 / 12 = 4.75 feet The combined length of the remoras is 4.75 feet + 8 * 4....
Mia saw a 240-foot shark with 4 36-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
To find the percentage, we need to convert the length of the remoras to feet. There are 12 inches in 1 foot, so: 36 inches / 12 = 3 feet The combined length of the remoras is 4 * 3 = 12 feet The shark's body length is 240 feet. To find the percentage, divide the combined length of the remoras by the shark's body l...
To find the percentage of the shark's body length that the remoras occupy, we need to first find the total length of the remoras and then divide it by the length of the shark. First, let's convert the length of the remoras from inches to feet: 36 inches * 1 foot / 12 = 3 feet The combined length of the remoras is 3...
Haruka saw a 450-foot shark with 4 27-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
To find the percentage of the shark's body length that the remoras occupy, we need to know the shark's length and the length of the remoras. First, convert the remoras' length to feet: 27 inches is equal to 27 / 12 = 2.25 feet. Now, the combined length of the remoras is 4 * 2.25 = 9 feet. The percentage of the shar...
To find the percentage of the shark's body length that the remoras occupy, we need to first find the total length of the remoras and then divide it by the shark's body length, and finally convert the result to a percentage. The remoras are 27 inches long, which is 27 inches / 36 inches per foot = 0.75 feet. The shark'...
Gabrielle saw a 70-foot dolphin with 2 84-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the combined length of the remoras. The remoras are 84 inches long. Since there are 12 inches in a foot, the remoras are 84 / 12 = 7 feet long. The combined length of the remoras is 7 feet + 7 feet = 14 feet. The com...
To find the percentage of the dolphin's body length that the remoras occupy, first find the combined length of the remoras. 84 inches is 2 * 84 = 168 inches. Then divide that by the length of the dolphin, which is 70 feet or 210 inches. 168 / 210 is approximately 0.8. Now convert 0.8 to a percentage by multiplying by 1...
Mei saw a 90-foot dolphin with 3 36-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length occupied by the remoras, we need to first find the total length of the remoras, then divide by the length of the dolphin, and finally multiply by 100. The length of the dolphin is 90 feet. First, convert the length of the dolphin to inches: 90 feet * 12 inches/foot...
To find the percentage of the dolphin's body length that the remoras are, we need to calculate the total length of the remoras and then divide that by the dolphin's body length. First, let's convert the remoras' length from inches to feet: 36 inches = 36 / 12 = 3 feet Now, let's add the remoras' length to the dolphin...
Noah saw a 220-foot whale with 2 66-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we need to first find the total length of the remoras and then divide that by the whale's body length. First, we need to convert the remoras' length from inches to feet. There are 12 inches in a foot, so: 66 inches / 12 = 5.5 feet Now we add t...
To find the percentage of the whale's body length that the remoras are, we need to first convert the remoras' length to feet, since the whale's length is given in feet. One remora is 66 inches, so 2 remoras are 2 * 66 inches = 132 inches. Now, we need to convert the whale's length to inches: 220 feet * 12 inches/foo...
Emma saw a 360-foot dolphin with 6 72-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the combined length of the remoras. Since there are 6 remoras, each 72 inches long, we multiply 6 by 72 inches. 6 * 72 = 432 inches Now, we need to convert the combined length of the remoras from inches to feet. There...
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the combined length of the remoras. The length of the dolphin is 360 feet, and the length of each remora is 72 inches. To convert the length of the remoras to feet, we divide the length in inches by 12: 72 inches / 12 = ...
Bodhi saw a 400-foot shark with 3 64-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
To find the percentage of the shark's body length that the remoras occupy, we need to first find the combined length of the remoras. Since the remoras are 64 inches long, and there are 3 of them, the total length of the remoras is 3 * 64 = 192 inches. Now, we need to find the length of the shark's body. We know the ...
To find the percentage of the shark's body length that the remoras occupy, we need to first find the combined length of the remoras and then divide that by the shark's body length. The shark's body length is 400 feet. The remoras are 64 inches. First, we need to convert the remoras' length from inches to feet. The...
Umar saw a 480-foot dolphin with 6 96-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the total length of the remoras and the dolphin. The remoras are 96 inches long, and the dolphin is 480 feet long. First, let's convert the lengths to the same unit, feet. Since 1 foot = 12 inches, 480 feet = 480 * ...
To find the percentage of the dolphin's body length that the remoras occupy, we first need to find the total length of the remoras and the dolphin. The length of the dolphin is 480 feet, and the length of the remoras is 96 inches. We need to convert the length of the remoras to feet to match the length of the dolphin...
Faisal saw a 70-foot whale with 4 42-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we first need to find the combined length of the remoras. Since there are 4 remoras, each 42 inches long, the combined length of the remoras is 4 * 42 = 168 inches. There are 12 inches in a foot, so the combined length of the remoras in feet...
To find the percentage, we need to convert the remoras' length to the same units as the whale's length. We'll convert the remoras' length from inches to feet. 1 foot = 12 inches 4 remoras * 12 inches/foot = 48 inches The combined length of the remoras = 48 inches + 48 inches = 96 inches Now, we'll find the percentage...
Valentina saw a 90-foot whale with 2 54-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage, first, we need to convert the length of the remoras from inches to feet. There are 12 inches in a foot, so: 2 * 54 inches = 108 inches Now, we can find the combined length of the remoras in feet: 108 inches / 12 = 9 feet Now we can find the percentage of the whale's body length that the remor...
To find the percentage of the whale's body length occupied by the remoras, first, we need to convert the length of the remoras from inches to feet. Since 1 foot = 12 inches, 54 inches = 54 / 12 = 4.5 feet Now, we add the length of the remoras to get the total length of the remoras: 4.5 feet (remoras) + 90 feet (wha...
Yuki saw a 390-foot dolphin with 9 52-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the combined length of the remoras. Since the remoras are 52 inches long, and there are 9 of them, the total length of the remoras is 52 inches * 9 = 468 inches. Now, we need to convert the combined length of the remor...
To find the percentage of the dolphin's body length that the remoras represent, we need to calculate the total length of the remoras first. Since there are 2 remoras per 1 dolphin, we multiply the number of remoras by the length of each remora: 2 remoras * 52 inches/remora = 104 inches Now, we need to convert the tot...
Tara saw a 340-foot shark with 3 68-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
First, find the combined length of the remoras in inches: 68 inches/remora * 3 remoras = 204 inches. Then divide that number by 12 to convert it to feet: 204 inches / 12 inches/foot = 17 foot. Then divide the combined remora length in feet by the shark's length and multiply by 100% to express the answer as a percentage...
To find the percentage of the shark's body length that the remoras are, we first need to convert the length of the remoras to feet, since the shark's length is given in feet. 1 inch is equal to 0.083333 feet. So, the length of the remoras is 68 * 0.083333 = 5.6667 feet. The combined length of the remoras is 3 * 5....
Arash saw a 180-foot dolphin with 8 54-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to first calculate the total length of the remoras and then divide that by the length of the dolphin. First, we need to convert the length of the remoras from inches to feet. Since there are 12 inches in a foot, we can convert 54 inc...
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the combined length of the remoras. Since remoras are fish, we need to convert their length to the same units as the dolphin. 1 inch is approximately equal to 0.0254 meters. So, the length of the 8 remoras in inches ...
Keisha saw a 300-foot whale with 6 6-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we need to first find the total length of the remoras and then divide that by the whale's body length. The remoras are 6 inches long, and the whale is 300 feet long. Since 1 foot is equal to 12 inches, the whale's body length is 300 * 12 = 360...
To find the percentage of the whale's body length that the remoras occupied, first, we need to find the total length of the remoras. 6 remoras are 6 inches long. There are 12 inches in a foot, so 6 inches is 6 / 12 = 0.5 feet. The combined length of the 6 remoras is 0.5 + 0.5 = 1 foot. Now, to find the percentage, w...
Luis saw a 20-foot whale with 3 4-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we first need to calculate the total length of the remoras. Since the remoras are 4 inches long, and there are 3 of them, the total length of the remoras is 4 * 3 = 12 inches. Next, we need to convert the length of the whale to inches, since ...
To find the percentage of the whale's body length that the remoras occupy, we need to first find the total length of the remoras and then divide it by the whale's total body length. The remoras are 4 inches long, and there are 3 of them. To find the total length of the remoras, we multiply the number of remoras by the...
Leilani saw a 300-foot whale with 4 45-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we need to first calculate the combined length of the remoras and then divide that by the whale's body length. The length of one remora is 45 inches. Since there are 4 remoras, we add 4 times the length of one remora to find the combined length...
To find the percentage of the whale's body length that the remoras occupy, we need to first find the combined length of the remoras. Since the remoras are 45 inches long, we can convert this to feet by dividing by 12 (since there are 12 inches in a foot). 45 inches / 12 = 3.75 feet The combined length of the remoras ...
Diego saw a 400-foot shark with 3 80-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
To find the percentage of the shark's body length that the remoras occupy, first, calculate the total length of the remoras. Since there are 3 remoras, each 80 inches long, multiply the number of remoras by their length. 3 remoras * 80 inches/remora = 240 inches Now convert the remoras' length from inches to feet. Si...
To find the percentage of the shark's body length that the remoras occupy, we need to know the shark's body length. Since we don't know the shark's body length, we can't calculate the percentage directly. However, we can express the combined length of the remoras as 3 * 80 inches = 240 inches. To find the percentage,...
Qasim saw a 40-foot whale with 2 48-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we need to first convert the length of the remoras to feet, since the question is asking for a percentage of the whale's body length in feet. There are 12 inches in a foot, so: 48 inches is equal to 48/12 = 4 feet. The combined length of the ...
To find the percentage of the whale's body length that the remoras occupy, first, we need to convert the length of the remoras from inches to feet. There are 12 inches in a foot, so: 48 inches / 12 = 4 feet The combined length of the remoras is 4 feet. Now, we need to find the total body length of the whale. Since ...
Camila saw a 150-foot dolphin with 6 30-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the combined length of the remoras and then divide by the length of the dolphin. The length of the remoras is 6 * 30 inches = 180 inches. The length of the dolphin is 150 feet, which is 150 * 12 = 1800 inches. Now, we c...
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the combined length of the remoras and then divide that by the dolphin's total length. Remoras length: 6 * 30 inches = 180 inches Dolphin length: 150 feet = 150 * 12 = 1800 inches Combined length of remoras: 180 inches ...
Kimia saw a 100-foot dolphin with 3 8-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, first, we need to find the total length of the remoras. Since the remoras are attached to the dolphin and measure 8 inches, the total length of the remoras is 3 * 8 inches = 24 inches. Next, we need to find the length of the dolphin's body....
To find the percentage of the dolphin's body length that the remoras occupy, we need to multiply the length of the remoras by the length of the dolphin's body and then divide by the dolphin's total body length. The length of the remoras is 8 inches. Since 1 foot is equal to 12 inches, the length of the remoras in fe...
Hiroshi saw a 30-foot shark with 3 12-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
To find the percentage of the shark's body length that the remoras occupy, first, we need to find the combined length of the remoras. There are 3 remoras, each 12 inches long, so the combined length of the remoras is 3 * 12 = 36 inches. To convert inches to feet, we divide by 12: 36 inches / 12 = 3 feet. Now, we nee...
To find the percentage of the shark's body length that the remoras occupy, we need to find the total length of the remoras and divide it by the shark's length. First, let's convert the remoras' length from inches to feet, since the shark's length is in feet. There are 12 inches in a foot, so: 3 inches = 3 / 12 = 0.2...
Jamal saw a 100-foot dolphin with 8 30-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the total length of the remoras. Since the remoras are 30 inches long, we can multiply this by the number of remoras: 8 remoras * 30 inches/ remora = 240 inches. Now, we can find the percentage of the dolphin's body le...
To find the percentage of the dolphin's body length that the remoras occupy, we need to calculate the combined length of the remoras and then divide it by the dolphin's length. Remoras are small fish that attach to the dolphin's body. The length of each remora is 30 inches. First, convert the length of the remoras t...
Santiago saw a 30-foot shark with 9 20-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
To find the percentage of the shark's body length that the remoras occupy, we first need to find the combined length of the remoras and then divide that by the shark's body length. The combined length of the remoras is 9 * 20 inches = 180 inches. Since there are 12 inches in a foot, we can convert the combined length...
To find the percentage of the shark's body length that the remoras occupy, we need to first determine the total length of the remoras and then divide that by the shark's total body length. 1. Convert the remoras' length from inches to feet: 20 inches * (1 foot / 12 inches) = 1.67 feet 2. Add the remoras' length to th...
Liam saw a 440-foot whale with 8 66-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage, we need to know the length of the whale's body and the combined length of the remoras. First, let's convert the whale's length to inches: 440 feet * 12 inches/foot = 5280 inches Now we know the whale's length is 5280 inches. The combined length of the remoras is 8 * 66 inches = 528 inches ...
To find the percentage of the whale's body length that the remoras occupy, we need to calculate the combined length of the remoras and divide it by the whale's length. The whale's length is 440 feet. First, convert the remoras' length to feet: 8 remoras * 66 inches/foot = 528 feet Now, calculate the combined leng...
Jasmine saw a 300-foot dolphin with 4 18-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to know the length of the dolphin and then calculate the combined length of the remoras. The remoras are 18 inches long, and the dolphin is 300 feet long. First, convert the dolphin's length to inches to make the units consistent: ...
To find the percentage of the dolphin's body length that the remoras occupy, we need to know the length of the dolphin's body and the length of the remoras. Let's assume the dolphin is 300 feet long. First, we need to convert the length of the remoras to feet, since the dolphin's length is given in feet. There are 12 ...
Olga saw a 100-foot whale with 5 48-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we need to first find the total length of the remoras and the whale, and then divide the length of the remoras by the whale's length. First, we need to convert the length of the remoras from inches to feet: 48 inches / 12 = 4 feet The combined...
To find the percentage of the whale's body length that is the combined length of the remoras, we need to find the total length of the remoras and divide it by the whale's body length. First, convert the remoras' length from inches to feet: 48 inches / 12 = 4 feet Now, add the remoras' length to find the total lengt...
Ravi saw a 450-foot dolphin with 6 90-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length occupied by the remoras, we need to first calculate the total length of the remoras. Since each remora is 90 inches, and there are 6 of them, we can calculate their combined length as: 6 remoras * 90 inches/remora = 540 inches Now, we need to convert the combined ...
To find the percentage of the dolphin's body length that the remoras occupy, we need to calculate the combined length of the remoras and then divide that by the dolphin's body length, and finally convert the result to a percentage. First, let's convert the remoras' length from inches to feet: 6 remoras * 12 inches/foo...
Santiago saw a 200-foot dolphin with 4 60-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length occupied by the remoras, we need to first find the total length of the remoras and then divide it by the dolphin's length. The length of the remoras is given as 4 units, and the length of the dolphin is given as 200 feet. First, we need to convert the length of the...
To find the percentage of the dolphin's body length that the remoras occupy, first, we need to find the combined length of the remoras. The remoras are 60 inches long. Since there are 12 inches in a foot, we convert 60 inches to feet: 60 inches / 12 inches/foot = 5 feet Now, add the remoras' length to the dolphin's...
Deshawn saw a 150-foot whale with 9 4-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we need to first find the total length of the remoras and then divide it by the whale's total length. The remoras are 4 inches long, and the whale is 150 feet long. 1 foot = 12 inches, so 150 feet = 150 * 12 = 1800 inches. The combined leng...
To find the percentage of the whale's body length that the remoras are, first find the total length of the remoras. 9 remoras * 4 inches/whale = 36 inches Now divide the total length of the remoras by the whale's length to find the percentage. 36 inches / 150 feet = 0.24 Multiply the result by 100 to convert inche...
Uma saw a 480-foot dolphin with 4 72-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, first, we need to find the combined length of the remoras. Since the remoras are 72 inches in length, and there are 4 of them, we multiply 72 by 4. 72 * 4 = 288 inches Now, we need to convert the combined length of the remoras from inches ...
To find the percentage of the dolphin's body length that the remoras occupy, we first need to find the combined length of the remoras. First, convert the length of the dolphin to inches: 480 feet * 12 inches/foot = 5760 inches. Then, add the length of the remoras: 5760 inches + (4 * 72 inches) = 5760 + 288 = 6058 i...
Esteban saw a 250-foot shark with 2 30-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
To find the percentage of the shark's body length that the remoras occupy, we need to first find the combined length of the remoras and then divide by the shark's body length, and finally convert the fraction to a percentage. The length of the remoras is 30 inches. The combined length of the remoras is 30 + 30 = 60 ...
To find the percentage of the shark's body length that the remoras occupy, we need to add the lengths of the two remoras and divide by the shark's body length. First, convert the remoras' lengths to feet since the shark's length is given in feet. 1 inch is approximately equal to 0.0833 feet. So, 2 remoras are equal...
Pavel saw a 50-foot whale with 4 6-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we need to know the whale's body length and the combined length of the remoras. First, let's convert the whale's length from feet to inches. We know that 1 foot is equal to 12 inches, so: 50 feet = 50 * 12 inches = 600 inches Now, let's add t...
First, we need to convert the length of the remoras from inches to feet. There are 12 inches in 1 foot, so 6 inches is 6 / 12 = 0.5 feet. The combined length of the remoras is 4 * 0.5 = 2 feet. The whale is 50 feet long, so the combined length of the remoras is 2 + 50 = 52 feet. To find the percentage, divide the co...
Ibrahim saw a 350-foot dolphin with 7 60-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length occupied by the remoras, we need to calculate the total length of the remoras and divide it by the total length of the dolphin. First, convert the length of the remoras to feet: 60 inches = 60 / 12 = 5 feet The combined length of the remoras is 7 * 5 = 35 feet. Now...
To find the percentage of the dolphin's body length occupied by the remoras, we need to first find the total length of the remoras. Since the remoras are 60 inches long, and there are 7 of them, we can find the total length by multiplying the number of remoras by their length: 7 remoras * 60 inches/remora = 420 inch...
Daphne saw a 90-foot shark with 4 54-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
To find the percentage of the shark's body length that the remoras occupy, we need to first find the combined length of the remoras. The length of the remoras is 4 times the length of Daphne's hand, which is 54 inches. So the combined length of the remoras is 4 * 54 inches = 216 inches. Now, we need to convert the c...
To find the percentage of the shark's body length that the remoras occupy, we need to divide the combined length of the remoras by the shark's length and then multiply by 100. First, let's find the combined length of the remoras: 54 inches + 54 inches = 108 inches Now, let's convert the combined length of the remoras...
Beatriz saw a 240-foot dolphin with 9 32-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, first calculate the combined length of the remoras. 9 remoras * 32 inches = 288 inches Then convert the combined length from inches to feet. There are 12 inches in a foot, so: 288 inches / 12 inches per foot = 24 feet Now, divide the combi...
To find the percentage of the dolphin's body length that the remoras occupy, we need to calculate the combined length of the remoras and divide it by the dolphin's length. First, convert the length of the remoras to feet: 32 inches * 2.54 cm/inch = 81.92 inches. The combined length of the remoras is 9 * 81.92 inche...
Leon saw a 180-foot dolphin with 9 48-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to first calculate the total length of the remoras and then divide that by the dolphin's length. The length of the remoras is 9 * 48 inches = 432 inches. The dolphin's length is 180 feet, which is 180 * 12 = 2160 inches. Now, we div...
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the combined length of the remoras and then divide by the dolphin's body length. The length of each remora is 48 inches. There are 9 remoras, so the combined length of the remoras is 9 * 48 = 432 inches. The dolphin's b...
Theo saw a 80-foot shark with 8 30-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
To find the percentage of the shark's body length occupied by the remoras, we need to first find the total length of the remoras and then divide it by the shark's body length. The remoras are 30 inches long each, so the total length of the remoras is: 8 remoras * 30 inches/remora = 240 inches The shark is 80 feet lon...
To find the percentage of the shark's body length that the remoras occupy, we need to first convert the remoras' length from inches to feet. Since 1 foot = 12 inches, we can convert the remoras' length as follows: 8 remoras * 12 inches/foot = 96 inches The combined length of the remoras = 96 inches Now, we can calcu...
Wei saw a 200-foot whale with 2 12-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we need to first find the total length of the remoras and then divide it by the whale's length. The remoras are 12 inches long. To convert this to feet, we divide by 12 (since there are 12 inches in a foot): 12 inches / 12 = 1 foot The combin...
To find the percentage, we need to add the lengths of the remoras and divide by the whale's length. First, convert the length of the remoras to feet: 12 inches * 12 = 144 inches. 200 feet + 144 inches = 200 + 144 = 344 feet Now, divide the combined length of the remoras by the whale's length: 344 feet / 200 feet =...
Valeria saw a 250-foot dolphin with 3 20-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to know the length of the dolphin and the length of the remoras. First, let's convert the length of the remoras to feet: 3 remoras * 20 inches/foot = 60 inches There are 12 inches in a foot, so 60 inches / 12 = 5 feet Now we have the...
To find the percentage of the dolphin's body length that the remoras occupy, we need to know the length of the dolphin and the length of the remoras. The remoras are 20 inches long, and the dolphin is 250 feet long. First, let's convert the dolphin's length to inches: 1 foot = 12 inches 250 feet = 250 * 12 = 3000 in...
Kayla saw a 140-foot whale with 5 84-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we need to first find the combined length of the remoras and then divide that by the whale's body length, and finally multiply by 100. The combined length of the remoras is 5 * 84 inches = 420 inches. To convert inches to feet, divide by 12: 4...
To find the percentage of the whale's body length that the remoras occupy, we need to first convert the length of the whale and the remoras from inches to feet, as the problem states the whale's length in feet. First, let's convert the whale's length to feet: 140 feet / 12 inches / 12 inches per foot = 11.67 feet N...
Arjun saw a 70-foot shark with 2 42-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
To find the combined length of the remoras, you multiply the length of one remora by 2. First, convert the length of the remora from inches to feet: 42 inches / 12 = 3.5 feet. Then multiply 3.5 feet by 2: 3.5 * 2 = 7 feet. Now, divide the combined length of the remoras by the length of the shark: 7 feet / 70 feet ...
To find the percentage of the shark's body length that the remoras occupy, we need to know the shark's total body length and the combined length of the remoras. The shark is 70 feet long. To convert this to inches, we multiply by 12 since there are 12 inches in a foot: 70 feet * 12 inches/foot = 840 inches The remor...
Andre saw a 300-foot whale with 6 30-inch remoras attached to it. What percentage of the whale's body length is the combined length of the remoras?
To find the percentage of the whale's body length that the remoras occupy, we need to first convert the length of the remoras to a similar unit. Since there are 12 inches in a foot, the length of the remoras in inches is 30 inches * 6 = 180 inches. The combined length of the remoras is 180 inches. The whale is 300...
To find the percentage of the whale's body length that the remoras make up, first, we need to convert the remoras' length from inches to feet (since the whale's length is in feet). 6 remoras * 12 inches/foot = 72 inches Then, we add this length to the whale's length to get the combined length of the remoras: 300 fee...
Benjamin saw a 80-foot shark with 3 16-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
To find the percentage of the shark's body length that the remoras cover, we need to first find the combined length of the remoras. Since a remora is a type of siphonophore that attaches to sharks like the one you described, it's likely referring to one of these siphonophores. However, in this case, we'll assume it's...
To find the percentage of the shark's body length that the remoras are, we need to divide the combined length of the remoras by the shark's total length and multiply by 100. First, let's convert the length of the remoras from inches to feet: 3 remoras * 12 inches/foot = 36 inches 36 inches / 12 inches/foot = 3 feet N...
Arjun saw a 60-foot dolphin with 6 6-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to know the length of the dolphin's body and the total length of the remoras. First, let's assume the length of the dolphin is 60 feet. Now, let's calculate the total length of the remoras: The dolphins have 6 remoras, each 6 inches...
To find the percentage of the dolphin's body length that the remoras occupy, first, we need to calculate the combined length of the remoras. The length of the dolphin is 60 feet. Since there are 12 inches in a foot, the length of the dolphin in inches is 60 * 12 = 720 inches. The length of the remoras is 6 * 6 = 36 ...
Fatima saw a 70-foot dolphin with 4 21-inch remoras attached to it. What percentage of the dolphin's body length is the combined length of the remoras?
To find the percentage of the dolphin's body length that the remoras occupy, we need to know the total length of the dolphin and the length of the remoras. First, let's convert the length of the remoras to feet. Since there are 12 inches in a foot, 21 inches is equal to 1.75 feet. Now we can calculate the combined l...
To find the percentage of the dolphin's body length that the remoras occupy, we need to first find the total length of the remoras. Since the remoras are attached to the dolphin, we need to add their length to the dolphin's length. The dolphin is 70 feet long. The remoras are 21 inches long. First, we need to co...
Sanjay saw a 490-foot shark with 7 84-inch remoras attached to it. What percentage of the shark's body length is the combined length of the remoras?
First, find the combined length of the remoras in inches: 84 inches/remora * 7 remoras = 588 inches. Then divide that number by 12 to convert it to feet: 588 inches / 12 inches/foot = 49 foot. Then divide the combined remora length in feet by the shark's length and multiply by 100% to express the answer as a percentage...
To find the percentage of the shark's body length that the remoras occupy, we need to first find the combined length of the remoras. Since the remoras are 84 inches and there are 12 inches in a foot, the combined length of the remoras is 84 * 12 = 1008 inches. Now, we need to find the combined length of the shark's ...
A fog bank rolls in from the ocean to cover a city. It takes 50 minutes to cover every 77 miles of the city. If the city is 77 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it will take for the fog bank to cover the whole city, we need to divide the distance of the city by the rate of the fog bank. Distance of the city = 77 miles Rate of the fog bank = 50 minutes per 77 miles First, find the number of 77 miles in 50 minutes: 77 miles / 50 minutes = 1.54 Now, divide ...
To find the time it will take for the fog bank to cover the whole city, we need to find the total distance of the city and divide it by the rate at which the fog bank moves. The city is 77 miles across from the oceanfront to the opposite inland edge. The fog bank moves at a rate of 77 miles per 50 minutes. First, le...
A fog bank rolls in from the ocean to cover a city. It takes 176 minutes to cover every 35 miles of the city. If the city is 70 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find out how long it will take for the fog bank to cover the whole city, we need to calculate the distance the fog bank will cover and divide it by the rate at which it covers 35 miles. The city is 70 miles across, and it takes 176 minutes to cover 35 miles. We can set up a proportion to solve this problem: 70 mi...
To find the time, we need to divide the total distance of the city by the rate at which the fog covers it. The city is 70 miles across. The fog covers it in 176 minutes. Time = Distance / Rate Time = 70 miles / 176 minutes/mile To find the time in minutes, we need to divide 70 by 176. Time = 70 / 176 = 0.395 min...
A fog bank rolls in from the ocean to cover a city. It takes 63 minutes to cover every 13 miles of the city. If the city is 39 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the total time it takes for the fog bank to cover the city, we need to calculate the distance it covers in 63 minutes. Since it takes 63 minutes to cover every 13 miles, we can divide the distance by the rate of coverage to find the number of 63-minute segments: 39 miles / 13 miles per 63 minutes = 3 segments...
To find the time it takes for the fog bank to cover the whole city, we need to know the distance of the city. Given that the city is 39 miles across from the oceanfront to the opposite inland edge, we can calculate the time it takes for the fog bank to cover the whole city by dividing the distance by the distance cove...
A fog bank rolls in from the ocean to cover a city. It takes 270 minutes to cover every 22 miles of the city. If the city is 66 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the total time it takes to cover the city, we need to first find the total distance the fog bank needs to cover, which is 66 miles (from the oceanfront to the inland edge). Since it takes 270 minutes to cover every 22 miles, we'll divide the total distance by 22 to find the number of 22-mile segments. 66 / ...
To find the time it takes for the fog bank to cover the whole city, we need to calculate the distance covered and the rate of coverage. Distance covered = 66 miles Time taken = 270 minutes First, we need to convert the distance to miles per minute: 66 miles / 270 minutes = 0.244 miles per minute Now, we can calcula...
A fog bank rolls in from the ocean to cover a city. It takes 12 minutes to cover every 4 miles of the city. If the city is 76 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the city, we need to divide the total distance by the coverage rate. Distance = 76 miles Coverage rate = 12 minutes per 4 miles First, we need to find the total number of 4-mile segments that make up the 76-mile city: 76 miles / 4 miles = 19 segments Now, we multip...
To find the time it takes for the fog bank to cover the whole city, we need to divide the total distance of the city by the rate at which the fog bank covers the distance. Distance = 76 miles Rate = 12 minutes / 4 miles Time = Distance / Rate Time = 76 miles / (12 minutes / 4 miles) Time = 76 miles * 4 minutes / 12 m...
A fog bank rolls in from the ocean to cover a city. It takes 312 minutes to cover every 3 miles of the city. If the city is 36 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 36/ 3 = 12 intervals of 312 minutes. Thus, it will take 12 * 312 = 3744 minutes for the fog to cover the whole city. #### 3744
To determine the time it takes for the fog bank to cover the city, we first need to find the total distance the fog bank will travel. The distance from the oceanfront to the inland edge is 36 miles. Since the fog bank will cover every 3 miles of the city, we need to multiply the distance by the coverage rate to find o...
A fog bank rolls in from the ocean to cover a city. It takes 68 minutes to cover every 4 miles of the city. If the city is 32 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the city, we need to divide the total distance by the rate at which the fog bank covers the distance in one minute. First, let's find the number of minutes it takes to cover 4 miles: 68 minutes / 4 miles = 17 minutes per mile. Now, let's multiply the number of minu...
To find out how many minutes it will take for the fog bank to cover the whole city, we need to calculate the distance the fog bank needs to cover and then divide it by the rate. The city is 32 miles across from the oceanfront to the opposite inland edge. Since the fog bank covers every 4 miles, we can divide the total...
A fog bank rolls in from the ocean to cover a city. It takes 323 minutes to cover every 25 miles of the city. If the city is 25 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it will take for the fog bank to cover the whole city, we need to find out how much distance the fog bank will cover in 323 minutes. Since the city is 25 miles across, we can divide the total distance by the rate of coverage to find the time it will take for the fog bank to cover the city. Time = D...
To find the time it takes for the fog bank to cover the whole city, we need to divide the total distance of the city by the distance covered per 25 miles. Distance of the city / Distance covered per 25 miles = 25 miles / 25 miles = 1 Since it takes 323 minutes to cover every 25 miles, and 1 mile is equal to 25/323 of...
A fog bank rolls in from the ocean to cover a city. It takes 92 minutes to cover every 9 miles of the city. If the city is 45 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find out how many minutes it will take for the fog bank to cover the whole city, we need to divide the total distance of the city by the rate at which it is covered. The city is 45 miles across, and the fog bank covers 9 miles every 92 minutes. First, let's find out how many times 9 miles fits into 45 miles: 45 m...
To find the time it takes for the fog bank to cover the whole city, we need to divide the total distance of the city by the rate at which the fog bank covers the distance. First, let's find the rate at which the fog bank covers 1 mile: The fog bank covers 9 miles in 92 minutes, so its rate is 9 miles / 92 minutes = 0....
A fog bank rolls in from the ocean to cover a city. It takes 375 minutes to cover every 15 miles of the city. If the city is 15 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find out how many minutes it will take for the fog bank to cover the whole city, we need to find out how many 15-mile segments of the city it will cover. The city is 15 miles across, so we divide 15 miles by 15 miles per segment to find out how many segments it will take to cover the city: 15 miles / 15 miles per ...
To find the total time it will take for the fog bank to cover the city, we need to find the distance the fog bank covers in relation to the city. The city is 15 miles across from the oceanfront to the opposite inland edge. Since the fog bank covers 15 miles of the city in 375 minutes, to find the total distance the ...
A fog bank rolls in from the ocean to cover a city. It takes 354 minutes to cover every 3 miles of the city. If the city is 81 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 81/ 3 = 27 intervals of 354 minutes. Thus, it will take 27 * 354 = 9558 minutes for the fog to cover the whole city. #### 9558
To find the time it takes for the fog bank to cover the whole city, we need to divide the total distance of the city by the rate at which the fog bank covers the distance. First, we need to convert the time it takes to cover 3 miles to minutes. Since the fog bank covers 3 miles in 354 minutes, we can calculate the tim...
A fog bank rolls in from the ocean to cover a city. It takes 324 minutes to cover every 3 miles of the city. If the city is 63 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 63/ 3 = 21 intervals of 324 minutes. Thus, it will take 21 * 324 = 6804 minutes for the fog to cover the whole city. #### 6804
To find the time it takes for the fog bank to cover the city, we need to divide the distance of the city by the rate at which the fog bank covers it. First, we need to convert the time it takes to cover 3 miles from the oceanfront to the inland edge from minutes to hours: 324 minutes / 60 minutes/hour = 5.4 hours. No...
A fog bank rolls in from the ocean to cover a city. It takes 29 minutes to cover every 2 miles of the city. If the city is 36 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To determine how long it will take for the fog bank to cover the whole city, we need to calculate the total distance that the fog bank needs to cover. Since the city is 36 miles across from the oceanfront to the opposite inland edge, and the fog bank covers every 2 miles, we need to divide the total distance by the r...
To find the time it will take for the fog bank to cover the whole city, we need to divide the total distance of the city by the rate at which the fog bank covers it. First, let's find the rate at which the fog bank covers the city. The fog bank covers 2 miles every 29 minutes. We can set up a proportion to find the r...
A fog bank rolls in from the ocean to cover a city. It takes 474 minutes to cover every 91 miles of the city. If the city is 91 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time to cover the whole city, we need to divide the total distance by the rate of coverage per mile. Time = Distance / Rate Time = 474 minutes / 91 miles To divide, we can divide the minutes by the miles, or multiply the minutes by 1 mile. Time = 474 minutes / 91 miles Time = 5.18 minutes per mile S...
To find the time it will take for the fog bank to cover the whole city, we need to divide the total distance of the city by the rate at which the fog covers it. First, we need to determine the rate at which the fog covers the city. We can do this by dividing the number of miles the fog covers in a given time by the nu...
A fog bank rolls in from the ocean to cover a city. It takes 234 minutes to cover every 14 miles of the city. If the city is 56 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the whole city, we need to find how many times the city is divided by 14 miles. First, find how many times 14 miles are in 56 miles. 56 miles / 14 miles per pass = 4 Now, we multiply the number of times by the time it takes to cover one pass. 4 passes * 234 minut...
To find out how long it will take for the fog bank to cover the whole city, we need to know the city's total length and the rate at which the fog bank covers the city. Given that it takes 234 minutes to cover 14 miles of the city, we can find the rate of coverage as follows: Rate = Distance covered / Time taken Rate ...
A fog bank rolls in from the ocean to cover a city. It takes 400 minutes to cover every 13 miles of the city. If the city is 39 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it will take for the fog bank to cover the whole city, we need to divide the distance of the city by the rate at which it covers the distance. The city is 39 miles across from the oceanfront to the opposite inland edge, and it takes 400 minutes to cover 13 miles. First, we need to find out how many...
To find the time it takes for the fog bank to cover the whole city, we need to first find the distance of the city that the fog bank will cover. Since the city is 39 miles across from the oceanfront to the opposite inland edge, and the fog bank covers every 13 miles, the city will be covered by the fog bank in the fol...
A fog bank rolls in from the ocean to cover a city. It takes 50 minutes to cover every 5 miles of the city. If the city is 45 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 45/ 5 = 9 intervals of 50 minutes. Thus, it will take 9 * 50 = 450 minutes for the fog to cover the whole city. #### 450
To find the time it takes for the fog bank to cover the whole city, we need to find the total distance of the city and divide it by the rate at which the fog bank covers the distance. First, let's find the distance of the city. Since the city is 45 miles across from the oceanfront to the opposite inland edge, we can m...
A fog bank rolls in from the ocean to cover a city. It takes 398 minutes to cover every 3 miles of the city. If the city is 42 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 42/ 3 = 14 intervals of 398 minutes. Thus, it will take 14 * 398 = 5572 minutes for the fog to cover the whole city. #### 5572
To find the time it will take for the fog bank to cover the whole city, we need to find the total distance the fog bank covers in relation to the city's width. The city is 42 miles across from the oceanfront to the opposite inland edge, so the city's width is 42 miles. The fog bank covers 3 miles every minute. To fin...
A fog bank rolls in from the ocean to cover a city. It takes 280 minutes to cover every 3 miles of the city. If the city is 93 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 93/ 3 = 31 intervals of 280 minutes. Thus, it will take 31 * 280 = 8680 minutes for the fog to cover the whole city. #### 8680
To find the time it takes for the fog bank to cover the whole city, we need to first find the total distance that the fog bank covers in 280 minutes. Since the city is 93 miles across from the oceanfront to the opposite inland edge, we can multiply the distance by the rate at which the fog bank covers the distance in...
A fog bank rolls in from the ocean to cover a city. It takes 160 minutes to cover every 9 miles of the city. If the city is 9 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 9/ 9 = 1 intervals of 160 minutes. Thus, it will take 1 * 160 = 160 minutes for the fog to cover the whole city. #### 160
To find the time it takes for the fog bank to cover the whole city, we need to first find the distance of the city and then divide it by the rate at which the fog bank covers the city in one minute. The city is 9 miles across, and it takes 160 minutes to cover 9 miles. To find the rate at which the fog bank covers t...
A fog bank rolls in from the ocean to cover a city. It takes 182 minutes to cover every 8 miles of the city. If the city is 88 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the total time it takes for the fog bank to cover the whole city, we need to find the total distance to be covered. The city is 88 miles across from the oceanfront to the opposite inland edge, so the total distance is 88 miles. Since it takes 182 minutes to cover every 8 miles, we can divide the total distan...
To find the time it takes for the fog bank to cover the city, we first need to find the total distance the fog bank covers in 1 minute. The city is 88 miles across from the oceanfront to the opposite inland edge. Since the fog covers 8 miles in 1 minute, we can divide 88 by 8 to find the distance covered in 1 minute: ...
A fog bank rolls in from the ocean to cover a city. It takes 175 minutes to cover every 2 miles of the city. If the city is 96 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 96/ 2 = 48 intervals of 175 minutes. Thus, it will take 48 * 175 = 8400 minutes for the fog to cover the whole city. #### 8400
To find the time it takes for the fog bank to cover the city, we need to divide the distance of the city by the rate at which it covers the city per minute. Distance = 96 miles Rate = 175 minutes / 2 miles = 87.5 minutes per mile Now, divide the distance of the city by the rate: Time = Distance / Rate = 96 miles / 87...
A fog bank rolls in from the ocean to cover a city. It takes 337 minutes to cover every 2 miles of the city. If the city is 76 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 76/ 2 = 38 intervals of 337 minutes. Thus, it will take 38 * 337 = 12806 minutes for the fog to cover the whole city. #### 12806
To find the time it takes for the fog to cover the city, we first need to find out how many miles the fog can cover in a minute. Since it takes 337 minutes to cover 2 miles, we can find the rate at which the fog covers the city by dividing the distance by the time: 2 miles / 337 minutes = approximately 0.0059 miles ...
A fog bank rolls in from the ocean to cover a city. It takes 138 minutes to cover every 48 miles of the city. If the city is 96 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the whole city, we need to calculate the distance the fog bank travels in relation to the city's perimeter. The city's perimeter is 96 miles. The fog bank covers 48 miles every 138 minutes. First, let's find the ratio of the city's perimeter to the distance covered...
To find the time it takes for the fog bank to cover the entire city, you need to first find the distance the fog bank travels in one hour, and then multiply that by the number of hours in an hour. The city is 96 miles across from the oceanfront to the opposite inland edge, so the distance traveled by the fog bank in o...
A fog bank rolls in from the ocean to cover a city. It takes 65 minutes to cover every 2 miles of the city. If the city is 80 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it will take for the fog bank to cover the whole city, we need to first find out how many times the city can be divided by 2 miles, which will be the number of times the fog bank covers the city. The city is 80 miles across from the oceanfront to the opposite inland edge. Divide the city's length by...
To find out how long it will take for the fog bank to cover the entire city, we need to divide the total distance of the city by the rate at which the fog bank moves. The city is 80 miles across from the oceanfront to the opposite inland edge. Since the fog bank moves 2 miles per minute, we can divide 80 miles by 2 m...
A fog bank rolls in from the ocean to cover a city. It takes 475 minutes to cover every 4 miles of the city. If the city is 28 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 28/ 4 = 7 intervals of 475 minutes. Thus, it will take 7 * 475 = 3325 minutes for the fog to cover the whole city. #### 3325
To find the time it takes for the fog bank to cover the whole city, we need to divide the total distance by the rate at which the fog bank covers the distance. Distance = 28 miles Rate = 475 minutes / 4 miles = 117.75 minutes per mile Now, multiply the rate by the total distance to find the time: Time = Distance * Ra...
A fog bank rolls in from the ocean to cover a city. It takes 59 minutes to cover every 20 miles of the city. If the city is 20 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the city, we need to know the speed of the fog bank. The fog bank covers 20 miles in 59 minutes. Speed of the fog bank = Distance / Time Speed of the fog bank = 20 miles / 59 minutes Speed of the fog bank = 0.339 miles per minute The city is 20 miles across from ...
To find the time it takes to cover the city, we need to divide the total distance of the city by the rate of coverage. Distance = 20 miles Rate of coverage = 59 minutes per 20 miles First, let's find out how many 20-mile segments of the city are there. Since the city is 20 miles across from the oceanfront to the oppo...
A fog bank rolls in from the ocean to cover a city. It takes 93 minutes to cover every 2 miles of the city. If the city is 24 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the whole city, we need to divide the distance of the city by the rate at which it is covered. Distance = 24 miles Rate = 93 minutes per 2 miles First, let's find out how many 2-mile sections there are in 24 miles. There are 12 sections of 2 miles in 24 miles. Numb...
To find the time it takes for the fog bank to cover the whole city, we need to divide the distance of the city by the rate at which the fog bank covers it. Distance = 24 miles Rate = 93 minutes per 2 miles First, we need to find out how many 2-mile sections of the city the fog bank covers. We can do this by dividing ...
A fog bank rolls in from the ocean to cover a city. It takes 99 minutes to cover every 17 miles of the city. If the city is 68 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the whole city, we need to divide the total distance of the city by the distance it covers in 99 minutes. First, we need to determine how many "units of 17 miles" there are in 68 miles. We can do this by dividing 68 by 17, which equals 4. Then, we can multiply 4 by ...
To find out how many minutes it will take to cover the whole city, we need to know the speed of the fog bank. The speed of the fog bank is given as 17 miles per 99 minutes. We need to convert the speed to miles per minute. 17 miles / 99 minutes = 0.17 miles per minute. Now, we can find the time it takes to cover...
A fog bank rolls in from the ocean to cover a city. It takes 300 minutes to cover every 5 miles of the city. If the city is 30 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the whole city, we need to calculate the distance and then multiply it by the time it takes to cover that distance. The city is 30 miles across from the oceanfront to the opposite inland edge. So, the distance is 30 miles. Since it takes 300 minutes to cover every 5...
To find out how many minutes it will take for the fog bank to cover the whole city, we need to find the total distance the fog bank needs to cover and the speed of the fog bank. The city is 30 miles across from the oceanfront to the opposite inland edge, which means the fog bank needs to cover this distance. Since ...
A fog bank rolls in from the ocean to cover a city. It takes 458 minutes to cover every 48 miles of the city. If the city is 48 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes to cover the whole city, we need to divide the total distance of the city by the distance covered in a single pass. Total distance of the city = 48 miles Distance covered in a single pass = 48 miles / 458 minutes To find the number of passes needed to cover the city, we can divide the total...
To find the time it will take for the fog bank to cover the whole city, we need to divide the distance of the city by the rate at which the fog bank covers the city. Distance = 48 miles Rate = 458 minutes / 48 miles Time = Distance / Rate Time = 48 / 458 Time = 1/9.56 minutes To convert this to hours, we can divide ...
A fog bank rolls in from the ocean to cover a city. It takes 152 minutes to cover every 19 miles of the city. If the city is 57 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it will take for the fog bank to cover the city, we need to divide the distance of the city by the rate at which the fog covers it. Distance = 57 miles Rate = 19 miles / 152 minutes To find the rate in miles per minute, we divide by 60 to convert the minutes to hours: Rate = 19 miles / 152 minutes ...
To find the time it will take for the fog bank to cover the whole city, we need to calculate the distance the fog bank travels per mile, then multiply that by the number of miles of the city it needs to cover, and finally multiply by the total minutes in the given time frame. Distance per mile = 19 miles / 152 minutes...
A fog bank rolls in from the ocean to cover a city. It takes 30 minutes to cover every 21 miles of the city. If the city is 63 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the city, we first need to find out how far the fog bank travels. The city is 63 miles across, and the fog bank covers 21 miles every 30 minutes. To find how many 30-minute periods fit into 63 miles, we divide 63 by 21. 63 / 21 = 3 Since there are 3 30-minute pe...
To find the time it will take for the fog bank to cover the whole city, you need to divide the total distance of the city by the rate at which the fog bank covers the city. First, convert the rate from miles per hour to miles per minute: 1 mile / 0.5 hours = 2 miles per minute. Now, divide the distance of the city by...
A fog bank rolls in from the ocean to cover a city. It takes 204 minutes to cover every 2 miles of the city. If the city is 58 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog to cover the city, we need to divide the distance of the city by the rate of coverage per 2 miles. First, let's calculate the number of 2-mile segments that cover the city. 58 miles / 2 miles per 2 miles = 29 segments. Now, we can multiply the number of segments by the time it ...
To find the time it takes for the fog bank to cover the whole city, we first need to find out how many miles the fog bank covers in one minute. The city is 58 miles across, and it takes 204 minutes to cover every 2 miles. To find the miles covered per minute, we need to divide the miles by the minutes it takes to cove...
A fog bank rolls in from the ocean to cover a city. It takes 438 minutes to cover every 3 miles of the city. If the city is 60 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 60/ 3 = 20 intervals of 438 minutes. Thus, it will take 20 * 438 = 8760 minutes for the fog to cover the whole city. #### 8760
To find the time it takes for the fog bank to cover the entire city, we need to calculate the distance the fog bank travels and then divide it by the rate at which it covers the distance. The city is 60 miles across, so the distance is 60 miles. The fog bank covers 3 miles per minute. Time = Distance / Rate Time = 60...
A fog bank rolls in from the ocean to cover a city. It takes 349 minutes to cover every 13 miles of the city. If the city is 91 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 91/ 13 = 7 intervals of 349 minutes. Thus, it will take 7 * 349 = 2443 minutes for the fog to cover the whole city. #### 2443
To find the time it takes for the fog bank to cover the whole city, we need to first find out how many miles the fog bank covers in one minute. The city is 91 miles across from the oceanfront to the opposite inland edge. Since the fog bank covers 13 miles in 349 minutes, we can set up a proportion to find out how man...
A fog bank rolls in from the ocean to cover a city. It takes 336 minutes to cover every 12 miles of the city. If the city is 60 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it will take for the fog bank to cover the city, we need to convert the distance from miles to minutes. Since it takes 336 minutes to cover 12 miles, we can find the rate at which the fog bank is moving by dividing 336 minutes by 12 miles. 336 minutes / 12 miles = 28 minutes per mile Now that we k...
To find out how many minutes it will take for the fog bank to cover the whole city, we need to first find out how many miles the fog bank will cover each minute. Since it takes 336 minutes to cover 12 miles, we can find out how many miles the fog bank covers per minute by dividing 336 by 12. 336 minutes / 12 miles =...
A fog bank rolls in from the ocean to cover a city. It takes 22 minutes to cover every 4 miles of the city. If the city is 84 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find out how long it will take for the fog bank to cover the whole city, we need to divide the total distance of the city by the rate at which the fog bank covers it. The total distance is 84 miles. The fog bank covers 4 miles every 22 minutes. First, we need to find out how many 4-mile sections of the city are th...
To find the time it takes for the fog to cover the city, we need to divide the total distance of the city by the rate at which the fog covers the city. The city is 84 miles across from the oceanfront to the opposite inland edge. This means it takes 22 minutes to cover 4 miles of the city. To find the time for the who...
A fog bank rolls in from the ocean to cover a city. It takes 323 minutes to cover every 10 miles of the city. If the city is 70 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
Since the city is 70 miles across, and it takes 323 minutes to cover every 10 miles, we can divide 70 by 10 to find out the number of 10-mile sections the fog bank will cover in the city. 70 / 10 = 7 Since there are 7 sections of 10 miles in the city, we multiply 7 sections * 323 minutes per section to get the total...
To find the time it will take for the fog bank to cover the whole city, we need to divide the length of the city by the rate at which it is covered. The city is 70 miles across and it covers 10 miles in 323 minutes. First, find how many 10-mile blocks of the city are in the 70 miles: 70 miles / 10 miles = 7 Now, mu...
A fog bank rolls in from the ocean to cover a city. It takes 407 minutes to cover every 28 miles of the city. If the city is 56 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it will take for the fog bank to cover the whole city, we need to first find out how many 28-mile segments of the city it can cover. City length = 56 miles Number of segments = 56 / 28 = 2 Since there are 2 segments, it will take 2 * 407 minutes to cover the entire city. Time = 2 * 407 = 814 minutes...
To find the time it takes for the fog bank to cover the whole city, we need to divide the city's length by the rate at which the fog covers 28 miles. First, find the total distance that the fog bank covers in the city: 56 miles (city length) * 28 miles (fog rate) = 1564 miles Now, divide the total distance by the r...
A fog bank rolls in from the ocean to cover a city. It takes 68 minutes to cover every 30 miles of the city. If the city is 60 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find out how long it will take for the fog bank to cover the whole city, we need to divide the distance of the city by the rate at which the fog bank covers 30 miles. The city is 60 miles across from the oceanfront to the opposite inland edge. Since the fog bank covers 30 miles in 68 minutes, we can set up the equa...
To find the time it will take for the fog bank to cover the whole city, we need to calculate the distance the fog bank covers in relation to the city's width. The city is 60 miles across from the oceanfront to the opposite inland edge, so it's half the width of the city. Since the fog bank covers 30 miles every 68 m...
A fog bank rolls in from the ocean to cover a city. It takes 495 minutes to cover every 95 miles of the city. If the city is 95 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the city, we need to find the distance the fog bank travels per minute. Distance = 95 miles Time = 495 minutes First, we need to find the rate at which the fog bank travels. To do this, we can divide the distance by the time: Rate = Distance / Time = 95 miles / 495...
To find the time it takes for the fog bank to cover the city, we need to divide the total distance by the rate at which the fog bank covers the city. Distance = 95 miles Rate = 495 minutes / 95 miles = 5 minutes per mile Time = Distance / Rate = 95 miles / 5 minutes/mile = 19 hours There are 60 minutes in an hour, s...
A fog bank rolls in from the ocean to cover a city. It takes 330 minutes to cover every 40 miles of the city. If the city is 40 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it will take for the fog bank to cover the city, we need to divide the total distance of the city by the rate at which the fog bank covers it. The city is 40 miles across from the oceanfront to the opposite inland edge. Since the fog bank covers 40 miles in 330 minutes, we can find the rate of coverag...
To find the time it takes for the fog bank to cover the city, we need to find out how many 40-mile sections the city is divided into. The city is 40 miles across from the oceanfront to the opposite inland edge. Since it covers every 40 miles, it will take 40 / 40 = 1 section of the city to pass through the fog bank. ...
A fog bank rolls in from the ocean to cover a city. It takes 296 minutes to cover every 51 miles of the city. If the city is 51 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the whole city, we need to divide the total distance of the city by the rate at which the fog bank covers it per unit of distance. First, we need to find the rate at which the fog bank covers the city. Since it covers 51 miles in 296 minutes, we can find the rate as:...
To find the time it takes for the fog bank to cover the whole city, we need to first find out how many times the fog bank covers the city's perimeter. The city is 51 miles across from one edge to the opposite edge. To find the perimeter, we multiply the number of miles by 2 (since the fog bank covers the city on both ...
A fog bank rolls in from the ocean to cover a city. It takes 103 minutes to cover every 2 miles of the city. If the city is 44 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the time it takes for the fog bank to cover the whole city, we need to find the distance of the city first. The city is 44 miles across from the oceanfront to the opposite inland edge. Since the fog bank covers 2 miles every 103 minutes, we need to calculate how many times 2 miles fit into 44 miles. 44 miles ...
To find the time it takes for the fog bank to cover the whole city, we need to first calculate the distance covered each day by the fog bank. The city is 44 miles across from the oceanfront to the opposite inland edge. Since the fog bank moves at a constant speed, we can calculate the distance it covers in one day by ...
A fog bank rolls in from the ocean to cover a city. It takes 9 minutes to cover every 3 miles of the city. If the city is 18 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
To find the total time it takes for the fog bank to cover the city, we need to calculate the total distance the fog needs to travel. The city is 18 miles across from the oceanfront to the opposite inland edge, so the total distance is 18 miles. Since the fog covers 3 miles every 9 minutes, we can calculate the rate a...
To find the time it takes for the fog bank to cover the whole city, we need to divide the total distance of the city by the distance covered in the given time. Distance covered in the given time = 18 miles Time taken = 9 minutes First, convert the time to hours: 9 minutes / 60 = 0.15 hours Now, divide the distance ...
A fog bank rolls in from the ocean to cover a city. It takes 332 minutes to cover every 10 miles of the city. If the city is 10 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
First, let's calculate how many 10-mile sections the fog bank covers. Since it covers 10 miles in 332 minutes, we can calculate the number of sections as follows: Number of sections = Total miles / Distance per section = 10 miles / 10 miles per section = 1 Since the city is 10 miles across from the oceanfront to the ...
To find out how long it will take for the fog bank to cover the whole city, we need to divide the total distance of the city by the rate at which the fog bank covers it. The city is 10 miles across, and the fog bank covers 10 miles in 332 minutes. To find out how many miles the fog bank covers per minute, we can div...
A fog bank rolls in from the ocean to cover a city. It takes 377 minutes to cover every 15 miles of the city. If the city is 60 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 60/ 15 = 4 intervals of 377 minutes. Thus, it will take 4 * 377 = 1508 minutes for the fog to cover the whole city. #### 1508
To find the time it will take for the fog bank to cover the city, we need to divide the total distance of the city by the speed of the fog bank. The city is 60 miles across from the oceanfront to the opposite inland edge. Since the fog bank is covering every 15 miles, we can divide 60 by 15 to find the number of 15-mi...
A fog bank rolls in from the ocean to cover a city. It takes 114 minutes to cover every 3 miles of the city. If the city is 99 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 99/ 3 = 33 intervals of 114 minutes. Thus, it will take 33 * 114 = 3762 minutes for the fog to cover the whole city. #### 3762
To find out how long it will take the fog bank to cover the city, we need to divide the distance of the city by the rate at which it is being covered. The city is 99 miles across from oceanfront to inland edge, and the fog bank covers 3 miles per minute. Total distance to cover = 99 miles Rate of fog bank covering =...
A fog bank rolls in from the ocean to cover a city. It takes 241 minutes to cover every 5 miles of the city. If the city is 85 miles across from the oceanfront to the opposite inland edge, how many minutes will it take for the fog bank to cover the whole city?
The city will be covered in 85/ 5 = 17 intervals of 241 minutes. Thus, it will take 17 * 241 = 4097 minutes for the fog to cover the whole city. #### 4097
To find out how long it will take for the fog bank to cover the whole city, we need to find out how many 5-mile segments are in the city. Divide the total distance of the city by the distance of each segment: 85 miles / 5 miles = 17 Now multiply the number of segments by the time it takes to cover each segment: 17 s...
Luis is rolling a 4-sided die. How much more likely is it (expressed as a percentage) that he rolls a number greater than 2 than that he rolls two odd numbers in a row?
There are 2 numbers greater than 2 on the dice, so the chances of rolling one of them are 2 / 4 = 50%. The chance of rolling one odd number is 50%, so the chance of rolling two in a row is 50% * 50% = 25%. The difference between these two probabilities is 50% - 25% = 25%. #### 25
## Step 1: Calculate the probability of rolling a number greater than 2 on a 4-sided die The total number of possible outcomes when rolling a 4-sided die is 4. The numbers greater than 2 are 3 and 4. Therefore, the probability of rolling a number greater than 2 is 2/4 = 1/2. ## Step 2: Calculate the probability of rol...
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