The GCF is m.
1, 3, 5, 15, m, m
rm + 3rp = r*(m + 3p).However, this will not be the case in gcf if m and 3p have a factor in common. Whether or not that is the case depends on information which is not provided.
Since 14 is a factor of 210, it is automatically the GCF.
m2 + 8m - 65 = (m + 13) (m - 5)
12(m + 5)
The GCF is m.
The GCF is m.
To find the greatest common factor (GCF) of 14m^2 and 21m, we first need to factor each term. The factors of 14m^2 are 1, 2, 7, 14, m, and m. The factors of 21m are 1, 3, 7, 21, m, and 1. The common factors between the two terms are 1, 7, and m. Therefore, the greatest common factor of 14m^2 and 21m is 7m.
The GCF is m
The GCF (Greatest Common Factor) of m and n is the largest positive integer that divides both m and n without leaving a remainder.
The GCF is 7mn.
a is 3m b is 3n m and n are relatively prime - they do not have any common factors. a2 = 9m2 Since m had no factors in common with n, m2 also has no factors in common with n. We know that 3 is a common factor of a and b. The only new possible factor between a2 and b is the second 3 when a is squared. We do not know whether b had more than one factor of 3. So, the greatest common factor of a2 and b, when the greatest common factor of a and b is 3, is either 3 or 9.
First, take out the common factor, then use the formula for the difference of two squares.2m2 - 8= 2(m2 - 4)= 2(m+2)(m-2)
To factorize 30m^2n, you need to find the common factors of each term. From 30, you can take out a common factor of 2 and from m^2n you can take out a common factor of mn. Therefore, the factored form of 30m^2n is 2mn(15m).
To find the Greatest Common Factor (GCF) of 12m^2n^3 and 70m^3n, we need to factor both terms. The factors of 12m^2n^3 are 2, 2, 3, m, m, n, n, and n. The factors of 70m^3n are 2, 5, 7, m, m, m, and n. The GCF is the product of the common factors raised to the lowest power, which in this case is 2mn.
That factors to (m + n)(r + s) The GCF is 1.