(z,z+2) or (z+2,z)
GCF of 26 AND 34 26= 2*13 34=2*17 GCF =2 GCF of 26 AND 34 =4
The chromatic polynomial for the Petersen (not Peterson) graph ispi(z) = (z - 2)* (z - 1)*z*(z^7 - 12*z^6 + 67*z^5 - 230*z^4 + 529*z^3 - 814*z^2 + 775*z - 352).
12cd24c = 2*12cThe GCF of 12cd and 24c is 12c.
Since w = -2 and z = 4, the w can be replaced with -2 and the z replaced with 4:3wz = 3(-2)(4) = -24.
If ' z ' is greater than ' 1 ', then ' z ' is. If ' z ' is less than ' 1 ', then ' 1 ' is.
There isn't a GCF you can pull out of that equation. But, you can factor it. If that's + 12z2, it becomes (2z2 - 5)(z + 6)
The GCF of -6 and -2 is 2.
The terms can be factored to: 17xy = 17 * x * y 15x²z = 3 * 5 * x * x * z The only term that 17xy and 15x²z have in common is x. Therefore, x is the GCF of these terms.
The GCF of 4 and 6 is 2.
The GCF is 2.
The GCF is 2.
The GCF is 2.
The GCF is 2.
The GCF is 2.
The GCF is 2. It is: 2The GCF is 2.The GCF is 2.
The GCF is: 2