McGraw Hill Integrated II, 2012
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McGraw Hill Integrated II, 2012 View details
5. Radical Equations
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Exercise 54 Page 263

To factor the given quadratic trinomial of the form ag^2+bg+c, rewrite the middle term, bg, as two terms. The coefficients of these two terms will be factors of ac whose sum must be b.

(3g-2)(3g-2)

Practice makes perfect
We want to completely factor the given expression. Here we have a quadratic trinomial of the form ag^2+bg+c, where |a| ≠ 1 and there are no common factors. To factor this expression, we will rewrite the middle term, bg, as two terms. The coefficients of these two terms will be factors of ac whose sum must be b. 9g^2-12g+4 ⇕ 9g^2+( -12)g+ 4 We know that a= 9, b= -12, and c= 4. There are now three steps we need to follow in order to rewrite the above expression.
  1. Find a c. Since we have that a= 9 and c= 4, the value of a c is 9* 4=36.
  2. Find factors of a c. Since a c=36, which is positive, we need factors of a c to have the same sign — both positive or both negative — in order for the product to be positive. Since b= -12, which is negative, those factors will need to be negative so that their sum is negative.

c|c|c|c 1^(st)Factor &2^(nd)Factor &Sum &Result -1 &-36 &-1 + (-36) &-37 -2 &-18 &-2 + (-18) &-20 -3 &-12 &-3 + (-12) &-15 -4 &-9 &-4 + (-9) &-13 -6 & -6 & -6 + ( -6) & -12

  1. Rewrite bg as two terms. Now that we know which factors are the ones to be used, we can rewrite bg as two terms. 9g^2 - 12g+4 ⇕ 9g^2 - 6g - 6g+4
Finally, we will factor the last expression obtained.
9g^2-6g-6g+4
3g(3g-2)-6g+4
3g(3g-2)-2(3g-2)
(3g-2)(3g-2)

Checking Our Answer

Check your answer âś“
We can expand our answer and compare it with the given expression.
(3g-2)(3g-2)
3 g (3g - 2) - 2 (3g - 2)
9 g^2 - 6 g - 2 (3g - 2)
9 g^2 - 6 g - 6 g + 4
9 g^2 - 12 g + 4
We can see above that after expanding and simplifying, the result is the same as the given expression. Therefore, we can be sure our solution is correct!