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Contact [7]
2 years ago
8

The function y = -0.03(x - 14)^2 + 6 models the mump of a red kangaroo where x is the horizontal distance in meters and y is the

vertical distance in meters for the height of the jump. What is the kangaroo's maximum height? How long is the kangaroo's jump?
Mathematics
2 answers:
Mice21 [21]2 years ago
7 0

Answer:

Kangaroo's maximum height is 6 m and the kangaroo's jump is 28 m long

Step-by-step explanation:

Given :y = -0.03(x - 14)^2 + 6

To Find : What is the kangaroo's maximum height? How long is the kangaroo's jump?

Solution:

y = -0.03(x - 14)^2 + 6

x is the horizontal distance in meters

y is the vertical distance in meters for the height of the jump.

Substitute y = 0

0 = -0.03(x - 14)^2 + 6

0.03(x - 14)^2 = 6

(x - 14)^2 = \frac{6}{0.03}

(x - 14)^2 =200

(x - 14) =\sqrt{200}

(x - 14) =14.142

x =14.142+14

x =28.142

x≈ 28 m

Now the maximum height will be attained at mid point i.e. \frac{28}{2} =14

Now substitute x= 14

y = -0.03(14 - 14)^2 + 6

y = 6

So, kangaroo's maximum height is 6 m and the kangaroo's jump is 28 m long

Galina-37 [17]2 years ago
3 0
The trick here is to find the vertex for its highest point and find the root that is of the greatest value for the final distance.

The nice thing about this function is that it has been written in what we call vertex form. This means that the maximum (or minimum if the parabola opens upwards) is given to us at the end of the function. In this case it is 6. We know that the graph starts at (0,0) (because the cangaroo jumps starting at no height with no distance so far) and so if the x-value given for the vertex is 14, we know that if we double that value, it will give us the second root. The total distance jumped is 28m.

Highest point: 6m
Total distance: 28m
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Which expression has the same GCF as 15x2 - 21x?
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Answer:

15x^2 +21 x

Step-by-step explanation:

We have the following expression:

15x^2 -21 x

We can find the GCF with the following steps.

1. Find the GCF for the numerical part 15 and -21

The factors for 15 are : 1,3,5,15

The factors for -21 are -21,-7,-3,-1,1,3,7,21

And the common factors are 1,3

The GCF for the numerical part is 3*1 = 3

2. Find the GCF for the variable

The factors of x^2 are : x*x

The factors of x are: x

The common factors are x for this case, so then the GCF for the variable part is x

3. Multiply the two results from steps 1 and 2

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If we consider the new expression:

15x^2 +21x

We can find the GCF with the following steps.

1. Find the GCF for the numerical part 15 and -21

The factors for 15 are : 1,3,5,15

The factors for -21 are 1,3,7,21

And the common factors are 1,3

The GCF for the numerical part is 3*1 = 3

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The factors of x^2 are : x*x

The factors of x are: x

The common factors are x for this case, so then the GCF for the variable part is x

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The <em>z</em>-score for the group "25 to 34" is 0.37 and the <em>z</em>-score for the group "45 to 54" is 0.25.

Step-by-step explanation:

The data provided is as follows:

25 to 34              45 to 54

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Compute the mean and standard deviation for the group "25 to 34" as follows:

\bar x=\frac{1}{n}\sum x=\frac{1}{8}\times [1329+1906+...+1454]=\frac{13631}{8}=1703.875\\\\s=\sqrt{\frac{1}{n-1}\sum (x-\bar x)^{2}}=\sqrt{\frac{1}{8-1}\times 1086710.875}=394.01

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Compute the mean and standard deviation for the group "45 to 54" as follows:

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Compute the <em>z</em>-score for the group "45 to 54" as follows:

z=\frac{x-\bar x}{s}=\frac{1851-1753.875}{383.39}=0.25333\approx 0.25

Thus, the <em>z</em>-score for the group "25 to 34" is 0.37 and the <em>z</em>-score for the group "45 to 54" is 0.25.

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