Current Attempt in Progress A consumer products company is formulating a new shampoo and is interested in foam height (in millimeters). Foam height is approximately normally distributed and has a standard deviation of 20 millimeters. The company wishes to test Ho: μ = 175 millimeters versus H₁ :μ> 175 millimeters, using the results of n samples. Find the boundary of the critical region if the type I error probability is a = 0.01 and n = 16. Round your intermediate values to two decimal places. Round your answer to one decimal places (e.g. 98.76). X> i eTextbook and Media Statistical Tables and Charts

MATLAB: An Introduction with Applications
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**Current Attempt in Progress**

A consumer products company is formulating a new shampoo and is interested in foam height (in millimeters). Foam height is approximately normally distributed and has a standard deviation of 20 millimeters. The company wishes to test \( H_0: \mu = 175 \) millimeters versus \( H_1: \mu > 175 \) millimeters, using the results of \( n \) samples. Find the boundary of the critical region if the type I error probability is \( \alpha = 0.01 \) and \( n = 16 \).

Round your intermediate values to two decimal places. Round your answer to one decimal place (e.g. 98.76).

\[ \bar{X} \geq \]

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Transcribed Image Text:**Current Attempt in Progress** A consumer products company is formulating a new shampoo and is interested in foam height (in millimeters). Foam height is approximately normally distributed and has a standard deviation of 20 millimeters. The company wishes to test \( H_0: \mu = 175 \) millimeters versus \( H_1: \mu > 175 \) millimeters, using the results of \( n \) samples. Find the boundary of the critical region if the type I error probability is \( \alpha = 0.01 \) and \( n = 16 \). Round your intermediate values to two decimal places. Round your answer to one decimal place (e.g. 98.76). \[ \bar{X} \geq \] **Statistical Tables and Charts** **eTextbook and Media** **Save for Later**
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