The mean maximum aerobic power (VO2MAX) score for men ages 20 to 29 is 42 ml/min/kg with a standard deviation of 6 ml/min/kg. VO2MAX is normally distributed. a. Find the probability of a man ages 20 to 29 having a VO2MAX score of greater than 50 ml/min/kg. b. Find the probability of a man ages 20 to 29 having a VO2MAX score of between 39 ml/min/kg and 48 ml/min/kg. c. Determine the minimum VO2MAX score for elite men ages 20 to 29 scoring in the top 5%. d. Determine the maximum VO2MAX score for men needing aerobic power intervention ages 20 to 29 scoring in the bottom 10%.

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The mean maximum aerobic power (VO2MAX) score for men ages 20 to 29 is 42 ml/min/kg with a
standard deviation of 6 ml/min/kg. VO2MAX is normally distributed.
a. Find the probability of a man ages 20 to 29 having a VO2MAX score of greater than 50 ml/min/kg.
b. Find the probability of a man ages 20 to 29 having a VO2MAX score of between 39 ml/min/kg and 48 ml/min/kg.
c. Determine the minimum VO2MAX score for elite men ages 20 to 29 scoring in the top 5%.
d. Determine the maximum VO2MAX score for men needing aerobic power intervention ages 20 to 29 scoring in the
bottom 10%.
Transcribed Image Text:The mean maximum aerobic power (VO2MAX) score for men ages 20 to 29 is 42 ml/min/kg with a standard deviation of 6 ml/min/kg. VO2MAX is normally distributed. a. Find the probability of a man ages 20 to 29 having a VO2MAX score of greater than 50 ml/min/kg. b. Find the probability of a man ages 20 to 29 having a VO2MAX score of between 39 ml/min/kg and 48 ml/min/kg. c. Determine the minimum VO2MAX score for elite men ages 20 to 29 scoring in the top 5%. d. Determine the maximum VO2MAX score for men needing aerobic power intervention ages 20 to 29 scoring in the bottom 10%.
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