The greatest common factor of 56 and 105 is 7.
The greatest common factor (GCF) of 54 and 105 is 3. To find the GCF, you need to determine the prime factors of each number. The prime factorization of 54 is 2 * 3^3, and the prime factorization of 105 is 3 * 5 * 7. The GCF is the product of the common prime factors raised to the lowest power, which in this case is 3.
The Greatest Common Factor (GCF) of 56 and 91 is 7.
To find the greatest common factor (GCF) of 58 and 100, you need to determine the largest number that evenly divides both numbers. The prime factorization of 58 is 2 x 29, and the prime factorization of 100 is 2^2 x 5^2. To find the GCF, you identify the common prime factors between the two numbers, which in this case is 2. Therefore, the GCF of 58 and 100 is 2.
Whatever you use, you need at least two numbers to find a GCF.
The GCF is 7.
The GCF is 7.
The greatest common factor of 56 and 105 is 7.
The GCF is 1.The prime factors of 56 are 2,2,2 and 7The prime factors of 81 are 3,3,3 and 3The GCF is 1.
56 and 105
The greatest common factor (GCF) of 54 and 105 is 3. To find the GCF, you need to determine the prime factors of each number. The prime factorization of 54 is 2 * 3^3, and the prime factorization of 105 is 3 * 5 * 7. The GCF is the product of the common prime factors raised to the lowest power, which in this case is 3.
The GCF is 7.
Suppose x and y are any two co-prime integers. Then 105*x and 105*y will have a GCF of 105.
To get the gcf of 56 and 48, you have to split the numbers into their prime factors: 56 = 2x2x2x7 48 = 2x2x2x2x3 Next you have to spot any common prime factors. In this case both numbers have three 2s as prime factors. Multiply these together and you get: 2x2x2 = 8 And so the GCF of 56 and 48 is 8.
The second one.
GCF of a composite number and a prime number is always 1. Here, 5 is a prime number therefore, gcf is 1.
Since the GCF of 45 and 56 is 1, they are relatively prime.