8-41. + An article in Computers & Electrical Engineering ["Parallel Simulation of Cellular Neural Networks" (1996, Vol. 22, pp. 61–84)] considered the speedup of cellular neu- ral networks (CNN) for a parallel general-purpose computing architecture based on six transputers in different areas. The data follow: 3.775302 3.350679 4.217981 4.030324 4.639692 4.139665 4.395575 4.824257 4.268119 4.584193 4.930027 4.315973 4.600101 (a) Is there evidence to support the assumption that speedup of CNN is normally distributed? Include a graphical display in your answer. (b) Construct a 95% two-sided confidence interval on the mean speedup. (c) Construct a 95% lower confidence bound on the mean speedup.

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You can perform this exercise in Minitab? Only exercise a) (the graph)

But I just want to see how to do it in Minitab, please!

(there is an example of the type of graph it is, in the attached images)

8-41. + An article in Computers & Electrical Engineering
["Parallel Simulation of Cellular Neural Networks" (1996,
Vol. 22, pp. 61-84)] considered the speedup of cellular neu-
ral networks (CNN) for a parallel general-purpose computing
architecture based on six transputers in different areas. The
data follow:
3.775302 3.350679 4.217981 4.030324 4.639692
4.139665 4.395575 4.824257 4.268119 4.584193
4.930027 4.315973 4.600101
(a) Is there evidence to support the assumption that speedup of
CNN is normally distributed? Include a graphical display
in your answer.
(b) Construct a 95% two-sided confidence interval on the mean
speedup.
(c) Construct a 95% lower confidence bound on the mean
speedup.
Transcribed Image Text:8-41. + An article in Computers & Electrical Engineering ["Parallel Simulation of Cellular Neural Networks" (1996, Vol. 22, pp. 61-84)] considered the speedup of cellular neu- ral networks (CNN) for a parallel general-purpose computing architecture based on six transputers in different areas. The data follow: 3.775302 3.350679 4.217981 4.030324 4.639692 4.139665 4.395575 4.824257 4.268119 4.584193 4.930027 4.315973 4.600101 (a) Is there evidence to support the assumption that speedup of CNN is normally distributed? Include a graphical display in your answer. (b) Construct a 95% two-sided confidence interval on the mean speedup. (c) Construct a 95% lower confidence bound on the mean speedup.
Probability Plot of Percent Fat
Normal - 95% CI
Mean 16.46
StDev 2.258
N
20
AD
0.339
70
P-Value 0.463
40
20
10
10
12
14
16
18
20
22
24
Percent Fat
Percent
Transcribed Image Text:Probability Plot of Percent Fat Normal - 95% CI Mean 16.46 StDev 2.258 N 20 AD 0.339 70 P-Value 0.463 40 20 10 10 12 14 16 18 20 22 24 Percent Fat Percent
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