The GCF of 3y and 272 is 1.
The GCF is 1.
If ' y ' is greater than ' 1 ', then [ 3y to the second power ] is. If ' y ' is less than ' 1 ', then 3 is.
x = 3y x - 3y = 3y - 3y x - 3y = 3y - 3y x - 3y = 0
3y +3y = 6y
The equation for 3y + 3y = -1 is 3y + 3y = -1.
The GCF is 3y^2.
The GCF is 3.
The GCF is 1.
The GCF is 1.
The GCF is 3.
If ' y ' is greater than ' 1 ', then [ 3y to the second power ] is. If ' y ' is less than ' 1 ', then 3 is.
The GCF is 16.
9(x - 3y)
25
The GCF is 3.
To express (15y + 40) in factored form, first, identify the greatest common factor (GCF) of the terms, which is 5. Factoring out the GCF, we get (5(3y + 8)). Thus, the factored form of (15y + 40) is (5(3y + 8)).
To factor the expression (4x + 6y), you first identify the greatest common factor (GCF) of the coefficients 4 and 6, which is 2. Then, you can factor out the GCF from the expression: [4x + 6y = 2(2x + 3y).] Thus, the factored form is (2(2x + 3y)).