n2 - 100 = (n + 10)(n - 10)
The expression n2 - n - 56 factors to (n - 8)(n + 7).
n squared minus six.
n+n-n-n-n+n-n-n squared to the 934892547857284579275348975297384579th power times 567896578239657824623786587346378 minus 36757544.545278789789375894789572356757583775389=n solve for n! the answer is 42
n2 = 10n + 56 Subtract (10n + 56) from each side: n2 - 10n - 56 = 0 Now you have something on the left side that you can factor: (n - 14) (n + 4) = 0 n = +14 n = - 4
n2 - 100 = (n + 10)(n - 10)
Algebraically it is written as ' n^(2) - n'. This factors to ' n(n-1)'.
(n - 4)(n - 12)
n(2n - 1)(2n + 7)
7n(n−1)
It is 2n^3 + 7n^2 - 13n + 3
The expression n2 - n - 56 factors to (n - 8)(n + 7).
Obviously, both terms have the common factor "n". You get the other factor by dividing both terms by n. The result is "n + 2".
n squared minus six.
The GCF is 7mn.
It is: 2n^2 -5n -42 equals (2n+7)(n-6) when factored
n+n-n-n-n+n-n-n squared to the 934892547857284579275348975297384579th power times 567896578239657824623786587346378 minus 36757544.545278789789375894789572356757583775389=n solve for n! the answer is 42