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malfutka [58]
3 years ago
14

Use the key features of the polynomial f(x) = −4x4 + 4x3 + 9x2 − 12x + 10 to describe its end behavior.

Mathematics
2 answers:
Blizzard [7]3 years ago
7 0

Answer:

The left side continues down, and the right side continues down.

Step-by-step explanation:

The end behavior of the polynomial is ruled by the value of highest order coefficient and the order of the polynomial. An even order indicates the same behaviour on both sides and the sign of the highest order coefficient indicate if function goes up (positive) or down (negative).

In this case, left and right continues down.

pychu [463]3 years ago
3 0

Answer:

B.) The left side continues down, and the right side continues down.

Step-by-step explanation:

if you solve f(x) =-4x^4 + 4x^3 + 9x^2 -12x + 10 its f(0)=10 and you graph that and you get BThe left side continues down, and the right side continues down.

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First,

tan(<em>θ</em>) = sin(<em>θ</em>) / cos(<em>θ</em>)

and given that 90° < <em>θ </em>< 180°, meaning <em>θ</em> lies in the second quadrant, we know that cos(<em>θ</em>) < 0. (We also then know the sign of sin(<em>θ</em>), but that won't be important.)

Dividing each part of the inequality by 2 tells us that 45° < <em>θ</em>/2 < 90°, so the half-angle falls in the first quadrant, which means both cos(<em>θ</em>/2) > 0 and sin(<em>θ</em>/2) > 0.

Now recall the half-angle identities,

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sin²(<em>θ</em>/2) = (1 - cos(<em>θ</em>)) / 2

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Now, recall the Pythagorean identity:

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1 + tan²(<em>θ</em>) = 1/cos²(<em>θ</em>)

We know cos(<em>θ</em>) is negative, so solve for cos²(<em>θ</em>) and take the negative square root.

cos²(<em>θ</em>) = 1/(1 + tan²(<em>θ</em>))

cos(<em>θ</em>) = - 1/√[1 + tan²(<em>θ</em>)]

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sin(<em>θ</em>/2) = √[(1 - (- 5/13)) / 2] = 3/√(13)

tan(<em>θ</em>/2) = √[(1 - (- 5/13)) / (1 + (- 5/13))] = 3/2

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