Moths per night The Top Ten Species Moths per hour (abundance) After you read 6.3 Sampling Distribution and Estimators and 6.4 The Central Limit Theorem (found in Math 140 under Week 10 Module) and watched the provided video. You must compose an initial reply post; to do so, you need to click the "reply" button below. In your initial post, you need to do the following. Please use the Insert Math Equation and label your answers & questions. 1. CRITICAL THINKING State the conversion formula (Section 6.2) from a nonstandard to a standard normal distribution and describe when we apply the conversion formula. 2. APPLYING CONVERSION FORMULA (Use Table A-2 or StatCrunch) (i) Assume that females have pulse rates that are normally distributed with a mean of 74.0 beats per minute and a standard deviation of 12.5 beats per minute. If an adult female is randomly selected, find the probability that her pulse rate is greater than 75 beats per minute. (ii) Assume that military aircraft use ejection seats designed for men weighing between 141.8 lb and 204 lb. If women's weights are normally distributed with a mean of 164.3lb and a standard deviation of 48.6 lb, what percentage of women have weights that are within those limits?

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Moths per night
The Top Ten
Species
Moths per hour (abundance)
After you read 6.3 Sampling Distribution and Estimators and 6.4 The Central Limit Theorem (found in Math 140 under Week 10 Module) and watched the provided video. You must compose an initial reply post; to do so, you need to click the
"reply" button below. In your initial post, you need to do the following. Please use the Insert Math Equation and label your answers & questions.
1. CRITICAL THINKING State the conversion formula (Section 6.2) from a nonstandard to a standard normal distribution and describe when we apply the conversion formula.
2. APPLYING CONVERSION FORMULA (Use Table A-2 or StatCrunch)
(i) Assume that females have pulse rates that are normally distributed with a mean of 74.0 beats per minute and a standard deviation of 12.5 beats per minute. If an adult female is randomly selected, find the probability that her pulse rate
is greater than 75 beats per minute.
(ii) Assume that military aircraft use ejection seats designed for men weighing between 141.8 lb and 204 lb. If women's weights are normally distributed with a mean of 164.3lb and a standard deviation of 48.6 lb, what percentage of
women have weights that are within those limits?
Transcribed Image Text:Moths per night The Top Ten Species Moths per hour (abundance) After you read 6.3 Sampling Distribution and Estimators and 6.4 The Central Limit Theorem (found in Math 140 under Week 10 Module) and watched the provided video. You must compose an initial reply post; to do so, you need to click the "reply" button below. In your initial post, you need to do the following. Please use the Insert Math Equation and label your answers & questions. 1. CRITICAL THINKING State the conversion formula (Section 6.2) from a nonstandard to a standard normal distribution and describe when we apply the conversion formula. 2. APPLYING CONVERSION FORMULA (Use Table A-2 or StatCrunch) (i) Assume that females have pulse rates that are normally distributed with a mean of 74.0 beats per minute and a standard deviation of 12.5 beats per minute. If an adult female is randomly selected, find the probability that her pulse rate is greater than 75 beats per minute. (ii) Assume that military aircraft use ejection seats designed for men weighing between 141.8 lb and 204 lb. If women's weights are normally distributed with a mean of 164.3lb and a standard deviation of 48.6 lb, what percentage of women have weights that are within those limits?
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