The time t (in years) until failure of a printer is exponentially distributed with a mean of 4 years. (a) Find the probability density function for the random variable t.   (b) Find the probability that the printer will fail in more than 1 year but less than 3 years. (Round your answer to four decimal places.)

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Chapter1: Combinatorial Analysis
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The time t (in years) until failure of a printer is exponentially distributed with a mean of 4 years.

(a) Find the probability density function for the random variable t.
 
(b) Find the probability that the printer will fail in more than 1 year but less than 3 years. (Round your answer to four decimal places.)
The time t (in years) until failure of a printer is exponentially distributed with a mean of 4 years.
(a) Find the probability density function for the random variable t.
F{t)=
Ost<o
(b) Find the probability that the printer will fail in more than 1 year but less than 3 years. (Round your answer to four decimal places.)
Transcribed Image Text:The time t (in years) until failure of a printer is exponentially distributed with a mean of 4 years. (a) Find the probability density function for the random variable t. F{t)= Ost<o (b) Find the probability that the printer will fail in more than 1 year but less than 3 years. (Round your answer to four decimal places.)
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