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Nadusha1986 [10]
2 years ago
8

The length of a rectangle is represented by the function L(x) = 2x. The width of that same rectangle is represented by the funct

ion W(x) = 8x2 − 4x 1. Which of the following shows the area of the rectangle in terms of x? (L W)(x) = 8x2 − 2x 1 (L W)(x) = 8x2 − 6x 1 (L • W)(x) = 16x3 − 4x 1 (L • W)(x) = 16x3 − 8x2 2x.
Mathematics
1 answer:
Musya8 [376]2 years ago
3 0
L(x) is the width of 8x2- 4x which means the answer is A
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Answer:

a) Null hypothesis: \rho = 0

Alternative hypothesis: \rho \neq 0

b) The scatter plot is on the figure attached.

c) t=\frac{0.874}{\sqrt{1-(0.874)^2}} \sqrt{9-2}=4.758  

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Step-by-step explanation:

Previous concepts

Pearson correlation coefficient(r), "measures a linear dependence between two variables (x and y). Its a parametric correlation test because it depends to the distribution of the data. And other assumption is that the variables x and y needs to follow a normal distribution".

The t distribution (Student’s t-distribution) is a "probability distribution that is used to estimate population parameters when the sample size is small (n<30) or when the population variance is unknown".  

The shape of the t distribution is determined by its degrees of freedom and when the degrees of freedom increase the t distirbution becomes a normal distribution approximately.  

Solution to the problem

In order to calculate the correlation coefficient we can use this formula:  

r=\frac{n(\sum xy)-(\sum x)(\sum y)}{\sqrt{[n\sum x^2 -(\sum x)^2][n\sum y^2 -(\sum y)^2]}}  

Let X the Court Income and Y= Justice Salary, for this case we have that:

n=9, \sum X= 3986, \sumY=398. \sumXY=265160, \sum X^2 =4076636, \sumY^2 =22074

On this case we got that r =0.874

Part a

Null hypothesis: \rho = 0

Alternative hypothesis: \rho \neq 0

Part b

The scatter plot is on the figure attached.

Part c

In order to test a hypothesis related to the correlation coefficient we need to use the following statistic:

t=\frac{r}{\sqrt{1-r^2}} \sqrt{n-2}

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And the p value for this case since we have a bilateral test is given by:

p_v = P(t_{7} >4.758) =&#10;0.0010

Since the p value is lower than the significance level we have enough evidence to reject the null hypothesis at 5% of significance, and we can conclude that the correlation coefficient is significant.

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