F2 * Please use the accompanying Excel data set or accompanying Text file data set when completing the following exercise. An article in the Journal of Agricultural Science ["The Use of Residual Maximum Likelihood to Model Grain Quality Characteristics of Wheat with Variety, Climatic and Nitrogen Fertilizer Effects" (1997, Vol. 128, pp. 135-142)] investigated means of wheat grain crude protein content (CP) and Hagberg falling number (HFN) surveyed in the UK. The analysis used a variety of nitrogen fertilizer applications (kg N/ha), temperature (°C), and total monthly rainfall (mm). The data shown below describe temperatures for wheat grown at Harper Adams Agricultural College between 1982 and 1993. The temperatures measured in June were obtained as follows: 14.9 15.3 13.6 14.6 12.1 14.3 14.2 13.8 14.2 11.3 12.2 Assume that the population has a normal distribution and the standard deviation is known to be σ = 0.3. (a) Construct a 99% two-sided confidence interval on the mean temperature. Round to two decimal places (e.g. 98.76). i 13.677 Sus i 14.143 (b) Construct a 95% lower-confidence bound on the mean temperature. Round to two decimal places (e.g. 98.76). i 13.73 Σμ (c) Suppose that we wanted to be 95% confident that the error in estimating the mean temperature is less than 2 degrees Celsius. 80 goo F3 F4 F5 3 $ 54 4 MacBook Air F6 % 45 Λ 6 & 29 7 会 F7 * 8 ▷II 4 F8 F9 6 O A F10 F11
F2 * Please use the accompanying Excel data set or accompanying Text file data set when completing the following exercise. An article in the Journal of Agricultural Science ["The Use of Residual Maximum Likelihood to Model Grain Quality Characteristics of Wheat with Variety, Climatic and Nitrogen Fertilizer Effects" (1997, Vol. 128, pp. 135-142)] investigated means of wheat grain crude protein content (CP) and Hagberg falling number (HFN) surveyed in the UK. The analysis used a variety of nitrogen fertilizer applications (kg N/ha), temperature (°C), and total monthly rainfall (mm). The data shown below describe temperatures for wheat grown at Harper Adams Agricultural College between 1982 and 1993. The temperatures measured in June were obtained as follows: 14.9 15.3 13.6 14.6 12.1 14.3 14.2 13.8 14.2 11.3 12.2 Assume that the population has a normal distribution and the standard deviation is known to be σ = 0.3. (a) Construct a 99% two-sided confidence interval on the mean temperature. Round to two decimal places (e.g. 98.76). i 13.677 Sus i 14.143 (b) Construct a 95% lower-confidence bound on the mean temperature. Round to two decimal places (e.g. 98.76). i 13.73 Σμ (c) Suppose that we wanted to be 95% confident that the error in estimating the mean temperature is less than 2 degrees Celsius. 80 goo F3 F4 F5 3 $ 54 4 MacBook Air F6 % 45 Λ 6 & 29 7 会 F7 * 8 ▷II 4 F8 F9 6 O A F10 F11
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
Related questions
Question
![F2
*
Please use the accompanying Excel data set or accompanying Text file data set when completing the following exercise.
An article in the Journal of Agricultural Science ["The Use of Residual Maximum Likelihood to Model Grain Quality Characteristics of
Wheat with Variety, Climatic and Nitrogen Fertilizer Effects" (1997, Vol. 128, pp. 135-142)] investigated means of wheat grain crude
protein content (CP) and Hagberg falling number (HFN) surveyed in the UK. The analysis used a variety of nitrogen fertilizer
applications (kg N/ha), temperature (°C), and total monthly rainfall (mm). The data shown below describe temperatures for wheat
grown at Harper Adams Agricultural College between 1982 and 1993. The temperatures measured in June were obtained as follows:
14.9 15.3 13.6 14.6 12.1 14.3
14.2 13.8 14.2 11.3 12.2
Assume that the population has a normal distribution and the standard deviation is known to be σ = 0.3.
(a) Construct a 99% two-sided confidence interval on the mean temperature. Round to two decimal places (e.g. 98.76).
i
13.677
Sus i 14.143
(b) Construct a 95% lower-confidence bound on the mean temperature. Round to two decimal places (e.g. 98.76).
i
13.73
Σμ
(c) Suppose that we wanted to be 95% confident that the error in estimating the mean temperature is less than 2 degrees Celsius.
80
goo
F3
F4
F5
3
$
54
4
MacBook Air
F6
%
45
Λ
6
&
29
7
会
F7
* 8
▷II
4
F8
F9
6
O
A
F10
F11](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F18395f57-75e3-4bdb-980a-ed8850989594%2F5360fd42-87a4-49ef-9add-b0142a9ce009%2F57e59q_processed.jpeg&w=3840&q=75)
Transcribed Image Text:F2
*
Please use the accompanying Excel data set or accompanying Text file data set when completing the following exercise.
An article in the Journal of Agricultural Science ["The Use of Residual Maximum Likelihood to Model Grain Quality Characteristics of
Wheat with Variety, Climatic and Nitrogen Fertilizer Effects" (1997, Vol. 128, pp. 135-142)] investigated means of wheat grain crude
protein content (CP) and Hagberg falling number (HFN) surveyed in the UK. The analysis used a variety of nitrogen fertilizer
applications (kg N/ha), temperature (°C), and total monthly rainfall (mm). The data shown below describe temperatures for wheat
grown at Harper Adams Agricultural College between 1982 and 1993. The temperatures measured in June were obtained as follows:
14.9 15.3 13.6 14.6 12.1 14.3
14.2 13.8 14.2 11.3 12.2
Assume that the population has a normal distribution and the standard deviation is known to be σ = 0.3.
(a) Construct a 99% two-sided confidence interval on the mean temperature. Round to two decimal places (e.g. 98.76).
i
13.677
Sus i 14.143
(b) Construct a 95% lower-confidence bound on the mean temperature. Round to two decimal places (e.g. 98.76).
i
13.73
Σμ
(c) Suppose that we wanted to be 95% confident that the error in estimating the mean temperature is less than 2 degrees Celsius.
80
goo
F3
F4
F5
3
$
54
4
MacBook Air
F6
%
45
Λ
6
&
29
7
会
F7
* 8
▷II
4
F8
F9
6
O
A
F10
F11
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