SOLUTION: 3x^2+5x-2

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Question 381215: 3x^2+5x-2
Answer by jim_thompson5910(35256) About Me  (Show Source):
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Looking at the expression 3x%5E2%2B5x-2, we can see that the first coefficient is 3, the second coefficient is 5, and the last term is -2.


Now multiply the first coefficient 3 by the last term -2 to get %283%29%28-2%29=-6.


Now the question is: what two whole numbers multiply to -6 (the previous product) and add to the second coefficient 5?


To find these two numbers, we need to list all of the factors of -6 (the previous product).


Factors of -6:
1,2,3,6
-1,-2,-3,-6


Note: list the negative of each factor. This will allow us to find all possible combinations.


These factors pair up and multiply to -6.
1*(-6) = -6
2*(-3) = -6
(-1)*(6) = -6
(-2)*(3) = -6

Now let's add up each pair of factors to see if one pair adds to the middle coefficient 5:


First NumberSecond NumberSum
1-61+(-6)=-5
2-32+(-3)=-1
-16-1+6=5
-23-2+3=1



From the table, we can see that the two numbers -1 and 6 add to 5 (the middle coefficient).


So the two numbers -1 and 6 both multiply to -6 and add to 5


Now replace the middle term 5x with -x%2B6x. Remember, -1 and 6 add to 5. So this shows us that -x%2B6x=5x.


3x%5E2%2Bhighlight%28-x%2B6x%29-2 Replace the second term 5x with -x%2B6x.


%283x%5E2-x%29%2B%286x-2%29 Group the terms into two pairs.


x%283x-1%29%2B%286x-2%29 Factor out the GCF x from the first group.


x%283x-1%29%2B2%283x-1%29 Factor out 2 from the second group. The goal of this step is to make the terms in the second parenthesis equal to the terms in the first parenthesis.


%28x%2B2%29%283x-1%29 Combine like terms. Or factor out the common term 3x-1


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Answer:


So 3x%5E2%2B5x-2 factors to %28x%2B2%29%283x-1%29.


In other words, 3x%5E2%2B5x-2=%28x%2B2%29%283x-1%29.


Note: you can check the answer by expanding %28x%2B2%29%283x-1%29 to get 3x%5E2%2B5x-2 or by graphing the original expression and the answer (the two graphs should be identical).


If you need more help, email me at jim_thompson5910@hotmail.com

Also, feel free to check out my tutoring website

Jim