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MrRissso [65]
3 years ago
14

PLEASE HELP ME!!

Mathematics
1 answer:
Marat540 [252]3 years ago
4 0

Answer:

 Slope = -3.000/2.000 = -1.500

 x-intercept = 62/3 = 20.66667

 y-intercept = 62/2 = 31

Step-by-step explanation:

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The table below shows the ticket rates for whale watching trips offered by Ocean Tours. AgeTicket Price. Under three yearsfree.
Kisachek [45]
If there are 40 children aged twelve and under and x of them are under three years old, 40 - x aged three twelve years old. From the 92 people that where taken by the company on whale watching trips, 52 are over twelve years old. The equation that best show the total cost, C is
                                (40 - x)(36) + (52)(48) = C
Rearranging the equation gives,
                                       x = 40 - ((C - 2496)/ 36)
8 0
3 years ago
A survey sampled men and women workers and asked if they expected to get a raise or promotion this year. Suppose the survey samp
Oksanka [162]

Answer:

a)

The null hypothesis is: H_0: p_M - p_W = 0

The alternative hypothesis is: H_1: p_M - p_W > 0

b) For men is of 0.49 and for women is of 0.36.

c) The p-value of the test is 0.0039 < 0.01, which means that the results are statistically significant so that you can conclude a greater proportion of men expect to get a raise or a promotion this year.

Step-by-step explanation:

Before solving this question, we need to understand the central limit theorem and subtraction of normal variables.

Central Limit Theorem

The Central Limit Theorem establishes that, for a normally distributed random variable X, with mean \mu and standard deviation \sigma, the sampling distribution of the sample means with size n can be approximated to a normal distribution with mean \mu and standard deviation s = \frac{\sigma}{\sqrt{n}}.

For a skewed variable, the Central Limit Theorem can also be applied, as long as n is at least 30.

For a proportion p in a sample of size n, the sampling distribution of the sample proportion will be approximately normal with mean \mu = p and standard deviation s = \sqrt{\frac{p(1-p)}{n}}

Subtraction between normal variables:

When two normal variables are subtracted, the mean is the difference of the means, while the standard deviation is the square root of the sum of the variances.

Men:

98 out of 200, so:

p_M = \frac{98}{200} = 0.49

s_M = \sqrt{\frac{0.49*0.51}{200}} = 0.0353

Women:

72 out of 200, so:

p_W = \frac{72}{200} = 0.36

s_W = \sqrt{\frac{0.36*0.64}{200}} = 0.0339

a. State the hypothesis test in terms of the population proportion of men and the population proportion of women.

At the null hypothesis, we test if the proportion are similar, that is, if the subtraction of the proportions is 0, so:

H_0: p_M - p_W = 0

At the alternative hypothesis, we test if the proportion of men is greater, that is, the subtraction is greater than 0, so:

H_1: p_M - p_W > 0

b. What is the sample proportion for men? For women?

For men is of 0.49 and for women is of 0.36.

c. Use α= 0.01 level of significance. What is the p-value and what is your conclusion?

From the sample, we have that:

X = p_M - p_W = 0.49 - 0.36 = 0.13

s = \sqrt{s_M^2+s_W^2} = \sqrt{0.0353^2 + 0.0339^2} = 0.0489

The test statistic is:

z = \frac{X - \mu}{s}

In which X is the sample mean, \mu is the value tested at the null hypothesis, and s is the standard error, so:

z = \frac{0.13 - 0}{0.0489}

z = 2.66

P-value of the test and decision:

The p-value of the test is the probability of finding a difference above 0.13, which is the p-value of z = 2.66.

Looking at the z-table, z = 2.66 has a p-value of 0.9961.

1 - 0.9961 = 0.0039.

The p-value of the test is 0.0039 < 0.01, which means that the results are statistically significant so that you can conclude a greater proportion of men expect to get a raise or a promotion this year.

4 0
3 years ago
A restaurant was hiring for 6 positions, each with a different hourly wage. These wages were all between 15$ and 20$ per hour, v
Vikki [24]

Answer: its C

Step-by-step explanation:

8 0
2 years ago
the height of the smaller box is 80% of the height of the larger box, while the other two dimensions are the same for both boxes
Bogdan [553]
Let
z-----------> t<span>he height of the larger box
x-----------> the length side of the box (smaller and larger box)
y-----------> t</span>he width side of the box (smaller and larger box)<span>

volume larger box=x*y*z
</span>volume smaller box=x*y*(0.80z)----> 0.80[x*y*z]

the difference in the volume of these two boxes=[x*y*z]*(1-0.80)
the difference in the volume of these two boxes=0.20*[x*y*z]

<span>The height of the smaller box is 12 in
</span>so 
z*0.8=12--------> z=12/0.8---------> z=15 in
x=7 3/4 in--------> (7*4+3)/4---------> 31/4 in
y= 2 in

the difference in the volume of these two boxes=0.20*[(31/4)*2*15]
the difference in the volume of these two boxes=46.5 in³

the answer is
46.5 in³
7 0
4 years ago
Read 2 more answers
1 and 3/10 * 18 <br><br><br>How would you do this???
jekas [21]

Answer:

23 2/5

Step-by-step explanation:

convert mixed numbers to improper fractions:  1 3/10=13/10

13/10*18

convert element to fraction: 18=18/1

=18/1*13/10

cross cancel common factor:2

=13/5*9/1

multiply fractions

=13*9/5*1

=117/5

convert improper fraction to mixed numbers

23 2/5

7 0
3 years ago
Read 2 more answers
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