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bagirrra123 [75]
3 years ago
8

Given a polynomial and one of its factors, find the remaining factors of the polynomial.

Mathematics
2 answers:
posledela3 years ago
8 0

Answer:

  remaining factors: (x +1)(x² +2x +3)

Step-by-step explanation:

Synthetic division can be used to divide the given polynomial by the given factor. The result is ...

  x^3+3x^2+5x+3

We observe there are no changes in sign here, so the factor (x-1) represents the only positive real root. When we change the signs of the odd-degree terms, we now have 3 sign changes, indicating 3 or 1 negative real roots. We also observe that the sign-altered coefficients sum to zero, meaning that x=-1 is a real root of the polynomial.

At this point, we know a second factor is (x+1). Again using synthetic division, we find the remaining factor is a quadratic with no real roots:

  x^2 +2x +3

__

The remaining factors (after (x-1)) with real coefficients are ...

  (x +1)(x² +2x +3)

_____

The quadratic can be factored in the complex numbers as ...

  (x +1 -i√2)(x +1 +i√2)

_____

<em>Comment on sign changes</em>

The discussion of sign changes refers to Descartes' rule of signs. It says the number of positive real roots is equal to the number of changes of sign of the coefficients when the polynomial is written in standard form. That number may be reduced by multiples of 2 if some of the roots are complex.

Hence the 3 sign changes we observe in -x^3 +3x^2 -5x +3 means there are either 3 or 1 negative real roots. (If f(x) has negative real roots, f(-x) will have positive real roots.)

__

<em>Comment on the graph</em>

For higher-degree polynomials, I like to see what information a graphing calculator can provide about roots. Here, it tells us the real roots are -1 and +1 and the other two roots are complex. Factoring out the factors related to the real roots gives the quadratic (x+1)^2 +2 = x^2 +2x +3, as above. The vertex of the quadratic gives useful information about the complex roots.

natita [175]3 years ago
3 0

Answer:x=1

Step-by-step explanation:

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Read 2 more answers
Just number 9 would be fine please but also if you could number 10 would help​
topjm [15]

Answer:

9. a = -7

10. x = 1

General Formulas and Concepts:

<u>Pre-Algebra</u>

Order of Operations: BPEMDAS

  1. Brackets
  2. Parenthesis
  3. Exponents
  4. Multiplication
  5. Division
  6. Addition
  7. Subtraction
  • Left to Right

Equality Properties

Step-by-step explanation:

<u>Step 1: Define equation</u>

a + 6a - 14 = 3a + 6a

<u>Step 2: Solve for </u><em><u>a</u></em>

  1. Combine like terms:                    7a - 14 = 9a
  2. Subtract 7a on both sides:          -14 = 2a
  3. Divide 2 on both sides:               -7 = a
  4. Rewrite:                                         a = -7

<u>Step 3: Check</u>

<em>Plug in a into the original equation to verify it's a solution.</em>

  1. Substitute in <em>a</em>:                   -7 + 6(-7) - 14 = 3(-7) + 6(-7)
  2. Multiply:                              -7 - 42 - 14 = -21 - 42
  3. Subtract:                             -49 - 14 = -63
  4. Subtract:                             -63 = -63

Here we see that -63 is equal to -63.

∴ a = -7 is a solution of the equation.

<u>Step 4: Define equation</u>

-12 - 4x = 8x + 4(1 - 7x)

<u>Step 5: Solve for </u><em><u>x</u></em>

  1. Distribute 4:                              -12 - 4x = 8x + 4 - 28x
  2. Combine like terms:                 -12 - 4x = -20x + 4
  3. Add 20x on both sides:            -12 + 16x = 4
  4. Add 12 on both sides:               16x = 16
  5. Divide 16 on both sides:            x = 1

<u>Step 6: Check</u>

<em>Plug in x into the original equation to verify it's a solution.</em>

  1. Substitute in <em>x</em>:                    -12 - 4(1) = 8(1) + 4(1 - 7(1))
  2. Multiply:                               -12 - 4 = 8 + 4(1 - 7)
  3. Subtract:                              -16 = 8 + 4(-6)
  4. Multiply:                               -16 = 8 - 24
  5. Subtract:                              -16 = -16

Here we see that -16 does indeed equal -16.

∴ x = 1 is a solution of the equation.

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Find a polynomial f(x) of degree 4 that has the following zeros. 7, −3, 0, −2
HACTEHA [7]

Answer:

x^4 - 2x^3 - 29x^2 - 42x

Step-by-step explanation:

Equal all the zeros to x then move them over.

x=7,x=-3,x=0,x=-2

x-7,x+3,x+0,x+2

Then multiply each factor

(x-7)(x+3)(x)(x+2)

x^4 - 2x^3 - 29x^2 - 42x

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3 years ago
What do you mean by coefficient?<br>With example!​
zhannawk [14.2K]

Answer: A coefficient refers to a number or quantity placed with a variable

Step-by-step explanation: For example, in the expression 3x, 3 is the coefficient but in the expression x2 + 3, 1 is the coefficient of x2. In other words, a coefficient is a multiplicative factor in the terms of a polynomial, a series, or any expression.

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