aimforthehead Posted August 28, 2011 Posted August 28, 2011 (edited) I have about 100 problems with a lot of factoring. (Difference of squares, sum of cubes, difference of cubes, etc.) But I need help on a few. First is x^3+3x^2+3x+1. What kind of problem is this...? I did some steps that I thought appropriate and ended up with... (3x+(x^2-x+1))+(x+1) If anyone can double check this that'd be great Edited August 28, 2011 by aimforthehead
Cap'n Refsmmat Posted August 28, 2011 Posted August 28, 2011 [math](3x+(x^2-x+1))+(x+1) = 3x + x^2 + 2[/math] So no, that's not the same as what you started with. If there's no multiplication, how can you get an x3? In this case you have the cube of a binomial. This site gives some helpful tips on factoring it: http://www.sosmath.com/algebra/factor/fac05/fac05.html
aimforthehead Posted August 28, 2011 Author Posted August 28, 2011 (edited) Hmm okay, I've done a few wrong then...Thanks. Also. 64(x-a)^3-x+a I know difference of cubes, but the x+a is not cubed, so I am lost... Edited August 28, 2011 by aimforthehead
Cap'n Refsmmat Posted August 28, 2011 Posted August 28, 2011 I don't think that one actually factors very well, the way you've written it. I mean, you could maybe do this: [math](x-a)(64(x-a)^2 - 1)[/math] but that doesn't really simplify it any.
DrRocket Posted August 28, 2011 Posted August 28, 2011 Hmm okay, I've done a few wrong then...Thanks. Also. 64(x-a)^3-x+a I know difference of cubes, but the x+a is not cubed, so I am lost... [math]x+a = \ (^3\sqrt {x+a})^3[/math]
aimforthehead Posted August 28, 2011 Author Posted August 28, 2011 (edited) Thanks for the time guys. I got... (4(x+a)- (^3sqrt {x+a}) (16(x+a)^2+4(x+a) (^3sqrt {x+a})+ (^3sqrt {x+a})^2) with a=4(x+a) and b= (^3sqrt {x+a}) Edited August 28, 2011 by aimforthehead
Recommended Posts
Create an account or sign in to comment
You need to be a member in order to leave a comment
Create an account
Sign up for a new account in our community. It's easy!
Register a new accountSign in
Already have an account? Sign in here.
Sign In Now