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Aleks04 [339]
3 years ago
9

Consider the parabola given by the equation: f ( x ) = − 2 x 2 − 14 x − 1 Find the following for this parabola: A) The vertex: (

-3.5,23.5) Correct B) The vertical intercept is the point (0,-1) Correct C) Find the coordinates of the two x intercepts of the parabola and write them as a list, separated by commas: (1/2,0),(-7,0) Incorrect It is OK to round your value(s) to to two decimal places.
Mathematics
1 answer:
LiRa [457]3 years ago
7 0

Answer:

a) (-3.5;23.5)

b) (0,-1)

c) (-0.07;0) and (-6.93;0)

Step-by-step explanation:

f(x) = − 2x² − 14 x − 1

a) vertex

b) vertical intercept

c) 2 x intercept (round to two decimal places)

a) Vertex (-b/2a; -Δ/4a)

a = -2 |  b = -14 | c = -1

xv = -(-14)/2.(-2) = 14/-4 = -3.5

Δ = b² - 4ac = (-14)² - 4.(-2).(-1) = 196 - 8 = 188

yv = -188/4.(-2) = -188/-8 = 23.5

Vertex(-3.5;23.5)

b) vertical intercept ⇒ x = 0

f(0) = -2.0² - 14.0 - 1 = -1

vertical intercept: (0,-1)

c) x intercept ⇒ roots

Δ = b² - 4ac = (-14)² - 4.(-2).(-1) = 196 - 8 = 188

√Δ = √188 = 13.71

x = -(-14) ± 13.71/2.(-2) = 14 ±13.71/-4

x' = 14 -13.71/-4 = -0.07

x" = 14 + 13.71/-4 = -6.93

So, the x intercept points are (-0.07;0) and (-6.93;0)

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Answer:

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Therefore the number in green box should be 7.

Step-by-step explanation:

Given:

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Solution:

In Right Angle Triangle ABD Sine identity we have

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Substituting the values we get

\sin 45 = \dfrac{AD}{AB}= \dfrac{a}{7\sqrt{2}}

\dfrac{1}{\sqrt{2}}= \dfrac{a}{7\sqrt{2}}\\\\\therefore a=7

Now in Triangle ADC Tangent identity we have

\tan C = \dfrac{\textrm{side opposite to angle C}}{\textrm{side adjacent to angle C}}

Substituting the values we get

\tan 30 = \dfrac{AD}{DC}= \dfrac{a}{c}\\\\\dfrac{1}{\sqrt{3}}=\dfrac{7}{c}\\\\\therefore c=7\sqrt{3}

The required answer is c=7\sqrt{3}

8 0
3 years ago
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