6)- A manufacturing company has developed a fuel-efficient machine that combines pressure washing with steam cleaning. It is designed to deliver 7 gallons of cleaner per minute at 1,000 pounds per square inch for pressure washing. In fact, it delivers an amount at random anywhere between 6.5 and 7.5 gallons per minute. Assume that y, the amount of cleaner delivered, is a uniform random variable with probability density fM) = {% if 6.5 < y < 7.5 elsewhere 1. Find the mean and standard deviation of y. Graph f(y), showing the locations of the mean, 1 and 2 standard deviation intervals around the mean. 2. Find the probability that more than 7.2 gallons of cleaner are dispensed per minute.

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter10: Sequences, Series, And Probability
Section10.8: Probability
Problem 31E
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6) 1 and 2. Please solve them step by step. For part 1, please show the locations of the mean, standard deviations intervals. Thanks.
6)- A manufacturing company has developed a fuel-efficient machine that combines pressure washing with steam cleaning.
It is designed to deliver 7 gallons of cleaner per minute at 1,000 pounds per square inch for pressure washing. In fact, it
delivers an amount at random anywhere between 6.5 and 7.5 gallons per minute. Assume that y, the amount of cleaner
delivered, is a uniform random variable with probability density
fM) = {}
if 6.5 < y < 7.5
elsewhere
1. Find the mean and standard deviation of y. Graph f(y), showing the locations of the mean, 1 and 2 standard deviation
intervals around the mean.
2. Find the probability that more than 7.2 gallons of cleaner are dispensed per minute.
Transcribed Image Text:6)- A manufacturing company has developed a fuel-efficient machine that combines pressure washing with steam cleaning. It is designed to deliver 7 gallons of cleaner per minute at 1,000 pounds per square inch for pressure washing. In fact, it delivers an amount at random anywhere between 6.5 and 7.5 gallons per minute. Assume that y, the amount of cleaner delivered, is a uniform random variable with probability density fM) = {} if 6.5 < y < 7.5 elsewhere 1. Find the mean and standard deviation of y. Graph f(y), showing the locations of the mean, 1 and 2 standard deviation intervals around the mean. 2. Find the probability that more than 7.2 gallons of cleaner are dispensed per minute.
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