The GCF is 16.
The LCM is: 960 The GCF is: 8
LCM of 10 32 64 80 is 320.
16
The general idea in solving such equations it so get rid of everything, except the variable, on the left side. In this case, you have to add 16 to both sides. p - 16 = 64 p - 16 + 16 = 64 + 16 p + 0 = 80 p = 80 You can omit some of the steps when solving, I just included them for clarity: p - 16 = 64 p = 64 + 16 p = 80The general idea in solving such equations it so get rid of everything, except the variable, on the left side. In this case, you have to add 16 to both sides. p - 16 = 64 p - 16 + 16 = 64 + 16 p + 0 = 80 p = 80 You can omit some of the steps when solving, I just included them for clarity: p - 16 = 64 p = 64 + 16 p = 80The general idea in solving such equations it so get rid of everything, except the variable, on the left side. In this case, you have to add 16 to both sides. p - 16 = 64 p - 16 + 16 = 64 + 16 p + 0 = 80 p = 80 You can omit some of the steps when solving, I just included them for clarity: p - 16 = 64 p = 64 + 16 p = 80The general idea in solving such equations it so get rid of everything, except the variable, on the left side. In this case, you have to add 16 to both sides. p - 16 = 64 p - 16 + 16 = 64 + 16 p + 0 = 80 p = 80 You can omit some of the steps when solving, I just included them for clarity: p - 16 = 64 p = 64 + 16 p = 80
The GCF is 16.
The GCF of 64, 80, and 96 is 16.
16
It is 16
The GCF is 4.
The GCF is 1.
The GCF is 8.
The GCF of 64, 80 and 128 is 16.
The GCF is 16.
To find the greatest common factor (GCF) of 64, 80, and 96, we must first find the prime factorization of each number. 64 = 2^6, 80 = 2^4 * 5, and 96 = 2^5 * 3. The GCF is the product of the common prime factors raised to the lowest power they appear in any of the numbers, which in this case is 2^4 = 16. Therefore, the GCF of 64, 80, and 96 is 16.
GCF(64, 80, 48, 16) = 960.
The greatest common factor (GCF) of 64, 80, and 120 is: 8