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andre [41]
3 years ago
15

A statistics teacher wants to see if there is any difference in the abilities of students enrolled in statistics today and those

enrolled five years ago. A sample of final examination scores from students enrolled today and from students enrolled five years ago was taken. You are given the following information.
Today Five years ago
xÌ 82 89
Ï 161 181.5
n 46 33

The point estimate for the difference between the means is -7 and the standard error is 3. Find the 98% confidence interval for the difference between the two population means.

a. -13.98 to -0.02
b. -12.88 to -1.12
c. 9.33 to -4.67
d. 0.67 to 5.33
Mathematics
1 answer:
andrey2020 [161]3 years ago
5 0

Answer:

(-13.98 ; - 0.022)

Step-by-step explanation:

Given :

____Today __ Five years ago

xÌ ___ 82 _____ 89

s ___ 161 _____181.5

n ___ 46 _____ 33

Sunce the sample. Size are large ; n > 30 ;

(x1 - x2) ± Zcritical * standard error

Zcritical at 98% confidence interval = 2.326

(x1 - x2) = 82 - 89 = - 7

Standard Error = 3

Hence ; we use the Z distribution

-7 ± 2.326 * 3

-7 ± 6.978

Lower boundary = (-7 - 6.978) = - 13.978

Upper boundary = (-7 + 6.978 = - 0.022

(-13.98 ; - 0.022)

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Answer:

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Step-by-step explanation:

The chord- chord angle x is half the sum of the measures of the arcs intercepted by the angle and its vertical angle.

x = \frac{1}{2} ( AB + CD ) = \frac{1}{2} (45 + 23)° = 0.5 × 68° = 34°

8 0
3 years ago
Assume that the population proportion is 0.56. Compute the standard error of the proportion, σp, for sample sizes of 100, 200, 5
Aliun [14]

Answer:

Standard errors are 0.049, 0.035, 0.022, and 0.016.

Step-by-step explanation:

The given value of population proportion (P) = 0.56

Given sample sizes (n ) 100, 200, 500, and 1000.

Now standard error is required to calculate.

Use the below formula to find standard error.

When sample size is n = 100

\sqrt{\frac{P(1-P)}{n}} = \sqrt{\frac{0.56(1-0.56)}{100}} =0.049

When sample size is n = 200

\sqrt{\frac{P(1-P)}{n}} = \sqrt{\frac{0.56(1-0.56)}{200}} = 0.035

When sample size is n = 500

\sqrt{\frac{P(1-P)}{n}} = \sqrt{\frac{0.56(1-0.56)}{500}} =0.022

When sample size is n = 1000

\sqrt{\frac{P(1-P)}{n}} = \sqrt{\frac{0.56(1-0.56)}{1000}} = 0.016

4 0
4 years ago
If f(x) varies directly with x, and f(x) = 12 when x = 8, write the direct linear variation equation.
Feliz [49]
<span>f(x) varies directly with x.
f(x) = kx (k is the constant of proportionality)
if x = 8,
12 = 8 k
k = 12/8
k = 3/2
So the equation would be: 
f(x) = (3/2)x
</span><span>
</span>
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3 years ago
Can someone please explain how to me how to do this
Sergeu [11.5K]
(10x) + (5y) = maximum number of points possible for test
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3 years ago
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Leno4ka [110]
A) 62.5%

5 divided by 8 is 0.625, then multiply by 100 to get 62.5 :)
5 0
3 years ago
Read 2 more answers
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