Consider a paint-drying situation in which drying time for a test specimen is normally distributed with o = 6. The hypotheses Ho: u = 73 and H: H < 73 are to be tested using a random sample of n = 25 observations. (a) How many standard deviations (of X) below the null value is x = 72.3? (Round your answer to two decimal places.) standard deviations (b) If x = 72.3, what is the conclusion using a = 0.005? Calculate the test statistic and determine the P-value. (Round your test statistic to two decimal places and your P-value to four decimal places.) z = P-value = State the conclusion in the problem context. O Reject the null hypothesis. There is not sufficient evidence to conclude that the mean drying time is less than 73. O Reject the null hypothesis. There is sufficient evidence to conclude that the mean drying time is less than 73. O Do not reject the null hypothesis. There is not sufficient evidence to conclude that the mean drying time is less than 73. O Do not reject the null hypothesis. There is sufficient evidence to conclude that the mean drying time is less than 73. (c) For the test procedure with a = 0.005, what is B(70)? (Round your answer to four decimal places.) B(70) =

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Consider a paint-drying situation in which drying time for a test specimen is normally distributed with o = 6. The hypotheses Ho: µ = 73 and H: µ < 73 are to be tested using a random sample of n = 25 observations.
(a) How many standard deviations (of X) below the null value is x = 72.3? (Round your answer to two decimal places.)
standard deviations
(b) If x = 72.3, what is the conclusion using a = 0.005?
Calculate the test statistic and determine the P-value. (Round your test statistic to two decimal places and your P-value to four decimal places.)
P-value =
State the conclusion in the problem context.
O Reject the null hypothesis. There is not sufficient evidence to conclude that the mean drying time is less than 73.
O Reject the null hypothesis. There is sufficient evidence to conclude that the mean drying time is less than 73.
O Do not reject the null hypothesis. There is not sufficient evidence to conclude that the mean drying time is less than 73.
O Do not reject the null hypothesis. There is sufficient evidence to conclude that the mean drying time is less than 73.
(c) For the test procedure with a = 0.005, what is B(70)? (Round your answer to four decimal places.)
B(70) = |
(d) If the test procedure with a = 0.005 is used, what n is necessary to ensure that B(70) = 0.01? (Round your answer up to the next whole number.)
n =
specimens
(e) If a level 0.01 test is used with n = 100, what is the probability of a type I error when µ = 76? (Round your answer to four decimal places.)
Transcribed Image Text:Consider a paint-drying situation in which drying time for a test specimen is normally distributed with o = 6. The hypotheses Ho: µ = 73 and H: µ < 73 are to be tested using a random sample of n = 25 observations. (a) How many standard deviations (of X) below the null value is x = 72.3? (Round your answer to two decimal places.) standard deviations (b) If x = 72.3, what is the conclusion using a = 0.005? Calculate the test statistic and determine the P-value. (Round your test statistic to two decimal places and your P-value to four decimal places.) P-value = State the conclusion in the problem context. O Reject the null hypothesis. There is not sufficient evidence to conclude that the mean drying time is less than 73. O Reject the null hypothesis. There is sufficient evidence to conclude that the mean drying time is less than 73. O Do not reject the null hypothesis. There is not sufficient evidence to conclude that the mean drying time is less than 73. O Do not reject the null hypothesis. There is sufficient evidence to conclude that the mean drying time is less than 73. (c) For the test procedure with a = 0.005, what is B(70)? (Round your answer to four decimal places.) B(70) = | (d) If the test procedure with a = 0.005 is used, what n is necessary to ensure that B(70) = 0.01? (Round your answer up to the next whole number.) n = specimens (e) If a level 0.01 test is used with n = 100, what is the probability of a type I error when µ = 76? (Round your answer to four decimal places.)
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