May I just ask for clarification, should it be x<=3; since beta = 5 is the mean time of failure and what the question is asking is the probability that at least 2 still functions after 8 yrs?. Thank you

A First Course in Probability (10th Edition)
10th Edition
ISBN:9780134753119
Author:Sheldon Ross
Publisher:Sheldon Ross
Chapter1: Combinatorial Analysis
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Problem 1.1P: a. How many different 7-place license plates are possible if the first 2 places are for letters and...
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May I just ask for clarification, should it be x<=3; since beta = 5 is the mean time of failure and what the question is asking is the probability that at least 2 still functions after 8 yrs?. Thank you

8. Suppose that a system contains a certain type of component whose time, in years, to
failure is given by T. The random variable T is modeled nicely by the exponential
distribution with mean time to failure B = 5. If 5 of these components are installed in
different systems, what is the probability that at least 2 are still functioning at the end of
8 years?
%3D
GIVEN:
let x= Cm paents funcioning after Qyrs
P [xzz) -
| -
b[x; 5,0.2)
(2.0's!x]9 3
X-2
%3D
=D0.2
- 0.-7373
-
15
15
10:56-
-15:49
Transcribed Image Text:8. Suppose that a system contains a certain type of component whose time, in years, to failure is given by T. The random variable T is modeled nicely by the exponential distribution with mean time to failure B = 5. If 5 of these components are installed in different systems, what is the probability that at least 2 are still functioning at the end of 8 years? %3D GIVEN: let x= Cm paents funcioning after Qyrs P [xzz) - | - b[x; 5,0.2) (2.0's!x]9 3 X-2 %3D =D0.2 - 0.-7373 - 15 15 10:56- -15:49
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