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damaskus [11]
4 years ago
11

Find the value of g(25) for the function below. g(x)=24(x-39)

Mathematics
1 answer:
djverab [1.8K]4 years ago
5 0
G(x) = -336
That is the answer
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Need help <br> Correct answers only.
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The diameter of the circle is the same as the side length of the bounding square. The radius of the circle is 8 in, so the side length of the square is 16 in.

Then the area between the square and circle is obtained by subtracting the area of the circle from the area of the square:

A_{\rm circle}=\pi(8\,\mathrm{in})^2=64\pi\,\mathrm{in}^2

A_{\rm square}=(16\,\mathrm {in})^2=256\,\mathrm{in}^2

and the area you want is

256-64\pi\,\mathrm{in}^2\approx54.9\,\mathrm{in}^2

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The correct answer would be 62%
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Evaluate g(p)•h(p) by modeling or by using the distribution property
Nataly [62]

g(p) \cdot h(p) = p^{4}+2 p^{3}-8 p^{2}-2p+4

Solution:

Given data:

g(p)=(p-2) and h(p)=\left(p^{3}+4 p^{2}-2\right)

To find g(p) \cdot h(p):

g(p) \cdot h(p)= (p-2)\cdot \left(p^{3}+4 p^{2}-2\right)

Distributive property: a(b+c)=ab + ac

               = p\left(p^{3}+4 p^{2}-2\right) -2\left(p^{3}+4 p^{2}-2\right)

               = \left(p^{4}+4 p^{3}-2p\right) +\left(-2p^{3}-8 p^{2}+4\right)

               = p^{4}+4 p^{3}-2p-2p^{3}-8 p^{2}+4

Arrange and add/subtract same powers.

              = p^{4}+(4 p^{3}-2p^{3})-8 p^{2}-2p+4

               = p^{4}+2 p^{3}-8 p^{2}-2p+4

Hence g(p) \cdot h(p) = p^{4}+2 p^{3}-8 p^{2}-2p+4

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Which Heinz Ketchup offer is the better deal? (Assume the price stays proportional and the Ketchup is
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B because you get more for a cheaper price.
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