An electronics manufacturing process has historically had a mean completion time of 70 minutes. It is claimed that, due to improvements in the process, the mean completion time, μ, is now less than 70 minutes. A random sample of 10 completion times using the new process is taken. The sample has a mean completion time of 69 minutes, with a standard deviation of 10 minutes. Assume that completion times using the new process are approximately normally distributed. At the 0.10 level of significance, can it be concluded that the population mean completion time using the new process is less than 70 minutes? Perform a one-tailed test. Then complete the parts below. Carry your intermediate computations to three or more decimal places. (If necessary, consult a list of formulas.) (a) State the null hypothesis Ho and the alternative hypothesis H₁. HO H₁0 (b) Determine the type of test statistic to use. (Choose one) ▼ (c) Find the value of the test statistic. (Round to three or more decimal places.) (d) Find the p-value. (Round to three or more decimal places.) (e) Can it be concluded that the mean completion time using the new process is less than 70 minutes? OYes O No H X 4 a ☐☐ S 6 C 0=0 OSO p □ロ 00 020 ロ<ロ

MATLAB: An Introduction with Applications
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**Transcription for Educational Purposes**

**Introduction**

An electronics manufacturing process has historically had a mean completion time of 70 minutes. It is claimed that, due to improvements in the process, the mean completion time, \( \mu \), is now less than 70 minutes. A random sample of 10 completion times using the new process is taken. The sample has a mean completion time of 69 minutes, with a standard deviation of 10 minutes.

Assume that completion times using the new process are approximately normally distributed. At the 0.10 level of significance, can it be concluded that the population mean completion time using the new process is less than 70 minutes?

Perform a one-tailed test. Then complete the parts below:

Carry your intermediate computations to three or more decimal places. (If necessary, consult a [list of formulas](#).)

**Tasks**

(a) **State the null hypothesis \( H_0 \) and the alternative hypothesis \( H_1 \).**

\( H_0 : \) [ ]
  
\( H_1 : \) [ ]

(b) **Determine the type of test statistic to use.**

[Choose one] ▼

(c) **Find the value of the test statistic. (Round to three or more decimal places.)**

[ ]

(d) **Find the p-value. (Round to three or more decimal places.)**

[ ]

(e) **Can it be concluded that the mean completion time using the new process is less than 70 minutes?**

○ Yes  ○ No

**Diagrams**

The image includes a diagram with symbols commonly used in statistical analysis:
- \( \mu, \bar{x}, s, n, \alpha, z, t \)

These symbols are options to choose from in the hypothesis testing and test statistic selection process described in this task.
Transcribed Image Text:**Transcription for Educational Purposes** **Introduction** An electronics manufacturing process has historically had a mean completion time of 70 minutes. It is claimed that, due to improvements in the process, the mean completion time, \( \mu \), is now less than 70 minutes. A random sample of 10 completion times using the new process is taken. The sample has a mean completion time of 69 minutes, with a standard deviation of 10 minutes. Assume that completion times using the new process are approximately normally distributed. At the 0.10 level of significance, can it be concluded that the population mean completion time using the new process is less than 70 minutes? Perform a one-tailed test. Then complete the parts below: Carry your intermediate computations to three or more decimal places. (If necessary, consult a [list of formulas](#).) **Tasks** (a) **State the null hypothesis \( H_0 \) and the alternative hypothesis \( H_1 \).** \( H_0 : \) [ ] \( H_1 : \) [ ] (b) **Determine the type of test statistic to use.** [Choose one] ▼ (c) **Find the value of the test statistic. (Round to three or more decimal places.)** [ ] (d) **Find the p-value. (Round to three or more decimal places.)** [ ] (e) **Can it be concluded that the mean completion time using the new process is less than 70 minutes?** ○ Yes ○ No **Diagrams** The image includes a diagram with symbols commonly used in statistical analysis: - \( \mu, \bar{x}, s, n, \alpha, z, t \) These symbols are options to choose from in the hypothesis testing and test statistic selection process described in this task.
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