Suppose that the random variable x, shown below, represents the number times . P(x) represents the probability of a randomly selected person having received that number of speeding tickets during that period. Use the probability distribution table shown below to answer the following questions. 4 e P(x) 0 0.4651 1 0.3895 2 0.0526 3 0.0373 4 0.0297 5 0.0258 6+ 0.0000 a) What is the probability that a randomly selected person has received five tickets in a three-year period? P(x = 5) = b) What is the probability that a randomly selected person has received three tickets in a three-year period? P(x = 3) = c) What is the probability that that a randomly selected person has received more than five tickets in a three- year period? P(x > 5) = d) What is the probability that that a randomly selected person has received one or less tickets in a three-year period? P(x < 1) =
Suppose that the random variable x, shown below, represents the number times . P(x) represents the probability of a randomly selected person having received that number of speeding tickets during that period. Use the probability distribution table shown below to answer the following questions. 4 e P(x) 0 0.4651 1 0.3895 2 0.0526 3 0.0373 4 0.0297 5 0.0258 6+ 0.0000 a) What is the probability that a randomly selected person has received five tickets in a three-year period? P(x = 5) = b) What is the probability that a randomly selected person has received three tickets in a three-year period? P(x = 3) = c) What is the probability that that a randomly selected person has received more than five tickets in a three- year period? P(x > 5) = d) What is the probability that that a randomly selected person has received one or less tickets in a three-year period? P(x < 1) =
College Algebra
7th Edition
ISBN:9781305115545
Author:James Stewart, Lothar Redlin, Saleem Watson
Publisher:James Stewart, Lothar Redlin, Saleem Watson
Chapter9: Counting And Probability
Section9.3: Binomial Probability
Problem 2E: If a binomial experiment has probability p success, then the probability of failure is...
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