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If possible, completely factor the expression. (If the polynomial is not factorable using integers, enter PRIME.)
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..i think you forgot to type the expressions..
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If possible, completely factor the expression. (If the polynomial is not factorable using integers, enter PRIME.) x^2-x-20
Top answer:
Look for numbers that will multiply to get -20 and add to get -1. (x-5)(x+4)
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If possible, completely factor the expression. (If the polynomial is not factorable using integers, enter PRIME.)
x^2+9 x+20
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(x+4) and (x+5)
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If possible, completely factor the expression. (If the polynomial is not factorable using integers, enter PRIME.)
x^2+9 x+20
Top answer:
imma teach you how i learn to factor tak the x^2 and multiply it with the 20 giving you 20x^2 now
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If possible, completely factor the expression. (If the polynomial is not factorable using integers, enter PRIME.)
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a simple one ... = (x-6)(x+1) check by expanding it
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If possible, completely factor the expression. (If the polynomial is not factorable using integers, enter PRIME.)
x^2+17 x+70
Top answer:
can you think of two numbers which when multiplied give you 70 and which add up to 17 ?
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If possible, completely factor the expression. (If the polynomial is not factorable using integers, enter PRIME.)
x^2 - 4x - 5 =
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(x-5)(x+1)
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if possibly completely factor the factor the expression(if the polynomial is not factorable using integers enter prime)
x^2+10x+1
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(x+8)(x+2)
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Factor completely the polynomial. Indicate any that are not factorable using integers.
x 2 – 4 x – 32. Answer (x + 4)(x + 8)
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If I were you, I would expand the possible answers and see what I would get. Clearly it can't be the
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Factor completely. If the given polynomial is not factorable, indicate so by writing prime.
4x^3+8xy^2
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2x(x^2 + 2y^2)
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Factor the expression. x2 + 6x + 48
a) (x + 1)(x + 48) b) (x + 6)^2 c) (x + 6)(x + 8) d) Prime Polynomial e) Not factorable i got
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(X+1)(x+48). X^2+47x+48
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a) Simplify the
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