Answer the question. If a procedure meets all the conditions of a binomial distribution except that the number of trials is not fixed, then the geometric distribution can be used. The probability of getting the first success on the xth trial is given by P(x) = p[1 - p)x-1, where p is the probability of success on any one trial. Assume that the probability of choosing a yellow piece of candy in a bag of hard candy is 0.210. Find the probability that the first yellow candy is found in the fifth inspected. 0.082 0.39 0.051 0.065
Answer the question. If a procedure meets all the conditions of a binomial distribution except that the number of trials is not fixed, then the geometric distribution can be used. The probability of getting the first success on the xth trial is given by P(x) = p[1 - p)x-1, where p is the probability of success on any one trial. Assume that the probability of choosing a yellow piece of candy in a bag of hard candy is 0.210. Find the probability that the first yellow candy is found in the fifth inspected. 0.082 0.39 0.051 0.065
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:Question 1
Answer the question.
If a procedure meets all the conditions of a binomial distribution except that the number
of trials is not fixed, then the geometric distribution can be used. The probability of
getting the first success on the xth trial is given by
P(x) = p(1 - p)x -1, where p is the probability of success on any one trial. Assume
that the probability of choosing a yellow piece of candy in a bag of hard candy is 0.210.
Find the probability that the first yellow candy is found in the fifth inspected.
0.082
0.39
0.051
0.065
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