n=25 Mean = 0.50 n = 50 Mean = 0.50 n = 100 Mean = 0.50 Standard deviation = 0.1 Standard deviation = 0.071 Standard deviation = 0.05 0.12 0.24 0.36 0.48 0.60 0.72 0.84 0.96 0.30 0.36 0.42 0.48 0.54 0.60 0.66 0.72 0.160.240.320.400.480.56 0.64 0.720.800.88 Proportion of orange Proportion of orange Proportion of orange 14. Without performing any calculations, what would be more likely to occur: Obtaining a sample proportion of 0.36 or smaller when randomly selecting a sample of size n= 25, or obtaining a Please sample proportion of 0.36 or smaller when randomly selecting a sample of size n= 100? 0009 000t 000z 6000 12000 18000 00081 000ZI 0009
n=25 Mean = 0.50 n = 50 Mean = 0.50 n = 100 Mean = 0.50 Standard deviation = 0.1 Standard deviation = 0.071 Standard deviation = 0.05 0.12 0.24 0.36 0.48 0.60 0.72 0.84 0.96 0.30 0.36 0.42 0.48 0.54 0.60 0.66 0.72 0.160.240.320.400.480.56 0.64 0.720.800.88 Proportion of orange Proportion of orange Proportion of orange 14. Without performing any calculations, what would be more likely to occur: Obtaining a sample proportion of 0.36 or smaller when randomly selecting a sample of size n= 25, or obtaining a Please sample proportion of 0.36 or smaller when randomly selecting a sample of size n= 100? 0009 000t 000z 6000 12000 18000 00081 000ZI 0009
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
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Topic Video
Question
![n = 25
Mean = 0.50
n= 50
Mean = 0.50
n = 100
Mean = 0.50
Standard deviation = 0.1
Standard deviation = 0.071
Standard deviation = 0.05
0.12 0.24 0.36 0.48 0.60 0.72 0.84 0.96
0.30 0.36 0.42 0.48 0.54 0.60 0.66 0.72
0.160.240.320.400.480.560.64 0.720.800.88
Proportion of orange
Proportion of orange
Proportion of orange
14. Without performing any calculations, what would be more likely to occur: Obtaining a sample
proportion of 0.36 or smaller when randomly selecting a sample of size n= 25, or obtaining a
sample proportion of 0.36 or smaller when randomly selecting a sample of size n = 100? Please
explain the reason for your answer.
6000 12000 18000
12000 18000
0009
1008 0009 000t 000z](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fabbe649f-9542-4750-a644-5a898c154717%2F279f29a5-0db7-4b76-a6f2-71c87878e38a%2Fzo4ar78_processed.jpeg&w=3840&q=75)
Transcribed Image Text:n = 25
Mean = 0.50
n= 50
Mean = 0.50
n = 100
Mean = 0.50
Standard deviation = 0.1
Standard deviation = 0.071
Standard deviation = 0.05
0.12 0.24 0.36 0.48 0.60 0.72 0.84 0.96
0.30 0.36 0.42 0.48 0.54 0.60 0.66 0.72
0.160.240.320.400.480.560.64 0.720.800.88
Proportion of orange
Proportion of orange
Proportion of orange
14. Without performing any calculations, what would be more likely to occur: Obtaining a sample
proportion of 0.36 or smaller when randomly selecting a sample of size n= 25, or obtaining a
sample proportion of 0.36 or smaller when randomly selecting a sample of size n = 100? Please
explain the reason for your answer.
6000 12000 18000
12000 18000
0009
1008 0009 000t 000z
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