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joja [24]
3 years ago
4

Considered the situation of case study on problem (2) with a larger sample of metal pieces. The diameters are as follows: 1.01,

0.97, 1.03, 1.04, 0.99, 0.98, 1.01, 1.03, 0.99, 1.00, 1.00, 0.99, 0.98, 1.01, 1.02, 0.99 centimeters. Once again the normality assumption may be made. Do the following and compare your results to those of the case study. Discuss how they are different and why.
a. Compute a 99% CI on the mean diameter
b. Compute a 99% PI on the next diameter to be measured.
c. Compute a 99% tolerance interval for coverage of the central 95% of the distribution of diameters.
Mathematics
1 answer:
coldgirl [10]3 years ago
6 0

Answer:

a

0.9876 <  \mu < 1.0174

b

0.941 <  x_o <  1.064

c

0.933 , 1.072

Step-by-step explanation:

From the question we are told that

  The data is  

1.01, 0.97, 1.03, 1.04, 0.99, 0.98, 1.01, 1.03, 0.99, 1.00, 1.00, 0.99, 0.98, 1.01, 1.02, 0.99

   Generally sample mean is mathematically represented as  

    \= x = \frac{\sum x_i}{n}

=>  \= x = \frac{1.01 +  0.97 +  1.03 \cdots +1.02 +  0.99}{16}

=> \= x =1.0025

Generally the standard deviation is mathematically represented as

       \sigma =  \sqrt{\frac{\sum (x - \= x) ^2}{n} }

=>    \sigma =  \sqrt{\frac{ (1.01 - 1.0025 ) ^2 + (0.97 - 1.0025 ) ^2+ \cdots  + (0.99 - 1.0025 ) ^2 }{16} }

=>   \sigma =  0.0202

Given that the confidence level is 99% then the level of significance is  

     \alpha  =  (100 - 99 ) \%

=>   \alpha  = 0.01

From the t distribution table the critical value for \frac{\alpha }{2}  = \frac{0.05}{2}  =  0.005 is  t_{\frac{\alpha }{2} } =  2.947

Generally the margin of error is mathematically represented as

       E =  t_{\frac{\alpha }{2} } *  \frac{\sigma }{\sqrt{n} }

=>    E = 2.947 *  \frac{0.0202 }{\sqrt{16} }

=>    E = 0.01488

Generally the 99% confidence interval is  

    \= x  - E <  \mu < \= x  + E

=>   1.0025  - 0.01488<  \mu < 1.0025  + 0.01488

=>   0.9876 <  \mu < 1.0174

Generally the 99% Prediction interval is mathematically represented as

    \= x  -[t_{\frac{\alpha }{2} } *  \sigma  *  \sqrt{1 + \frac{1}{n} } ] <  x_o

So

=>  1.0025  -[2.947 *  0.0202  *  \sqrt{1 + \frac{1}{16} } ] <  x_o   [tex]0.941 <  x_o <  1.064

Generally the two sided limit tolerance factor at sample size of  n =  16 ,  Prediction level of 99% and  confidence level of 95 is  r =  3.421 , this value is obtained from the statistical table

Generally the 99% tolerance interval for coverage of the central 95% of the distribution of diameters is mathematically represented as

      \= x - (r * \sigma ) , \= x + (r * \sigma )

=>    1.0025 - ( 3.421 * 0.0202) , 1.0025 + ( 3.421 * 0.0202)

=>    0.933 , 1.072

 

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sineoko [7]

Answer:

z=\frac{1.02-1}{\frac{0.04}{\sqrt{40}}}=3.162    

p_v =2*P(z>3.162)=0.0016    

If we compare the p value and the significance level given \alpha=0.05 we see that p_v so we can conclude that we have enough evidence to to reject the null hypothesis, so we can conclude that the true mean is different from 1 pound at 5% of signficance.

Step-by-step explanation:

Data given and notation    

\bar X=1.02 represent the sample mean

\sigma=0.04 represent the population standard deviation    

n=40 sample size    

\mu_o =1 represent the value that we want to test  

\alpha=0.05 represent the significance level for the hypothesis test.    

z would represent the statistic (variable of interest)    

p_v represent the p value for the test (variable of interest)    

State the null and alternative hypotheses.    

We need to conduct a hypothesis in order to check if the true mean is equal to 1 pound or no :    

Null hypothesis:\mu =1    

Alternative hypothesis:\mu \neq 1    

Since we know the population deviation, is better apply a z test to compare the actual mean to the reference value, and the statistic is given by:    

z=\frac{\bar X-\mu_o}{\frac{\sigma}{\sqrt{n}}} (1)    

z-test: "Is used to compare group means. Is one of the most common tests and is used to determine if the mean is (higher, less or not equal) to an specified value".    

Calculate the statistic    

We can replace in formula (1) the info given like this:    

z=\frac{1.02-1}{\frac{0.04}{\sqrt{40}}}=3.162    

P-value    

Since is a two-sided test the p value would be:    

p_v =2*P(z>3.162)=0.0016    

Conclusion    

If we compare the p value and the significance level given \alpha=0.05 we see that p_v so we can conclude that we have enough evidence to to reject the null hypothesis, so we can conclude that the true mean is different from 1 pound at 5% of signficance.    

5 0
4 years ago
What is this simplified?
miv72 [106K]

Answer: -8 square root of 3 (choice a)

Step-by-step explanation:

You have to find 2 numbers that multiply to 48 and in the same time, 1 of these numbers is a perfect square. In this case, the numbers are 16 and 3. So -2√16*3

Then since 16 is. A perfect square, and the square root is 4, you take out the 4 and multiply it by -2 so that is -8 and now you are left with -8√3. Hopefully that helped.

7 0
3 years ago
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Step-by-step explanation:

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rectangles perimeter is  20

square  5 X 4 = 20

sqaures perimeter is 20

4 0
3 years ago
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posledela

Answer:

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garri49 [273]
It is not because 30×10^4 is 300,000.
The answer would then be...
30×10^5
Hope this helps!
7 0
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