Find the required probabilities using the exponential density function f€) =글e-th, [0, o). The time t (in years) until failure of a component in a machine is exponentially distributed with A = 4.5. Find the probabilities that the lifetime of a given component will be less than 1 year, more than 4 years but less than 7 years, and at least 8 years. (Round your answers to three decimal places.) (a) less than 1 year (b) more than 4 years but less than 7 years (c) at least 8 years

Calculus: Early Transcendentals
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Chapter1: Functions And Models
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Find the required probabilities using the exponential density function.

The time t (in years) until failure of a component in a machine is exponentially distributed with λ = 4.5. Find the probabilities that the lifetime of a given component will be less than 1 year, more than 4 years but less than 7 years, and at least 8 years. (Round your answers to three decimal places.)

Find the required probabilities using the exponential density function
f(t) = 글e-tin, [o, 6).
The time t (in years) until failure of a component in a machine is exponentially distributed with A = 4.5. Find the
probabilities that the lifetime of a given component will be less than 1 year, more than 4 years but less than 7 years, and at
least 8 years. (Round your answers to three decimal places.)
(a) less than 1 year
(b) more than 4 years but less than 7 years
(c) at least 8 years
Transcribed Image Text:Find the required probabilities using the exponential density function f(t) = 글e-tin, [o, 6). The time t (in years) until failure of a component in a machine is exponentially distributed with A = 4.5. Find the probabilities that the lifetime of a given component will be less than 1 year, more than 4 years but less than 7 years, and at least 8 years. (Round your answers to three decimal places.) (a) less than 1 year (b) more than 4 years but less than 7 years (c) at least 8 years
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