1.) Divide by demonstrating the process of long division: Then answer the questions below: State the quotient: 6x³ + x² + 3x + 7 3x - 4 _2x^2+3x+5, Is 3.x - 4 a factor of 6x³ + x² + 3x + 7? 2x^2+3x+5+27/3x-4 2x^2+3x+5 6x^3+x^2+3x+7 3x-4 6x^3-8x^2 No, 3x-4 is not a factor. Explain how you determined whether or not it is a factor. 9x^2+3x+7 9x^2-12x 15x+7 15x-20 27

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
Section: Chapter Questions
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Explain how you determined whether or whether not 3x-4 is a factor. Use the info about factors below to answer the question.

1.)
Divide by demonstrating the process of long division:
Then answer the questions below:
State the quotient:
6x³ + x² + 3x + 7
3x - 4
_2x^2+3x+5,
Is 3.x - 4 a factor of 6x³ + x² + 3x + 7?
2x^2+3x+5+27/3x-4
2x^2+3x+5
6x^3+x^2+3x+7
3x-4 6x^3-8x^2
No, 3x-4 is not a factor.
Explain how you determined whether or not it is a factor.
9x^2+3x+7
9x^2-12x
15x+7
15x-20
27
Transcribed Image Text:1.) Divide by demonstrating the process of long division: Then answer the questions below: State the quotient: 6x³ + x² + 3x + 7 3x - 4 _2x^2+3x+5, Is 3.x - 4 a factor of 6x³ + x² + 3x + 7? 2x^2+3x+5+27/3x-4 2x^2+3x+5 6x^3+x^2+3x+7 3x-4 6x^3-8x^2 No, 3x-4 is not a factor. Explain how you determined whether or not it is a factor. 9x^2+3x+7 9x^2-12x 15x+7 15x-20 27
A factor is a number that divides evenly into another number. If long division results in a
remainder of O, then the division must have come out evenly and both the quotient and
the divisor must be factors of the dividend.
Transcribed Image Text:A factor is a number that divides evenly into another number. If long division results in a remainder of O, then the division must have come out evenly and both the quotient and the divisor must be factors of the dividend.
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