*****The mean LDL for normal individuals is 34 ± 4.5 mg/dl and for diabetic individuals is 45 ± 4.5 mg/dl. If samples consisting of 20 normal individuals and 25 diabetic individuals were drawn from the populations. Answer questions (10-11) 10. What is the probability that the mean of the diabetic sample is at least 12 units larger than the mean of the normal sample? 0.2296 0.3017 0.3254 Bas 0.3331 0.2715 11. Based on sample mean of diabetic subject minus that of normal, 97.5% of all possible differences are larger than 13.7 12.9 9.6 8.3 15.5 on the distributi

A First Course in Probability (10th Edition)
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ISBN:9780134753119
Author:Sheldon Ross
Publisher:Sheldon Ross
Chapter1: Combinatorial Analysis
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*****The mean LDL for normal individuals is 34 ± 4.5 mg/dl and for diabetic individuals is
45 ± 4.5 mg/dl. If samples consisting of 20 normal individuals and 25 diabetic individuals
were drawn from the populations. Answer questions (10-11)
10. What is the probability that the mean of the diabetic sample is at least 12 units
larger than the mean of the normal sample?
0.2296
0.3017
0.3254
0.3331
0.2715
11. Based on sample mean of diabetic subject minus that of normal, 97.5% of all
possible differences are larger than
Bas
13.7
12.9
9.6
8.3
15.5
on the distributi
Transcribed Image Text:*****The mean LDL for normal individuals is 34 ± 4.5 mg/dl and for diabetic individuals is 45 ± 4.5 mg/dl. If samples consisting of 20 normal individuals and 25 diabetic individuals were drawn from the populations. Answer questions (10-11) 10. What is the probability that the mean of the diabetic sample is at least 12 units larger than the mean of the normal sample? 0.2296 0.3017 0.3254 0.3331 0.2715 11. Based on sample mean of diabetic subject minus that of normal, 97.5% of all possible differences are larger than Bas 13.7 12.9 9.6 8.3 15.5 on the distributi
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