Suppose that in a hydrogen atom, its electron can be found within 1.058⋅10-10m of its nucleus 75% of the time. You have a special instrument that returns a positive result when an electron is within 1.058⋅10-10m of the nucleus and a negative result otherwise. This instrument returns a positive result if the electron is within 1.058⋅10-10m of its nucleus 95.3% of the time. When the electron is farther than 1.058⋅10-10⁢m from its nucleus, the instrument returns a negative result 97% of the time. 1. What is the probability that at a random time the hydrogen atom’s electron is within 1.058⋅10-10⁢m of its nucleus if the instrument returns a positive result? 2. What is the probability that at a random time the hydrogen atom’s electron is not within 1.058⋅10-10⁢m of its nucleus if the instrument returns a negative result?

Functions and Change: A Modeling Approach to College Algebra (MindTap Course List)
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Author:Bruce Crauder, Benny Evans, Alan Noell
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Chapter5: A Survey Of Other Common Functions
Section5.4: Combining And Decomposing Functions
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Problem ( Bayes’ Theorem)

Suppose that in a hydrogen atom, its electron can be found within 1.058⋅10-10m of its nucleus 75% of the time. You have a special instrument that returns a positive result when an electron is within 1.058⋅10-10m of the nucleus and a negative result otherwise. This instrument returns a positive result if the electron is within 1.058⋅10-10m of its nucleus 95.3% of the time. When the electron is farther than 1.058⋅10-10⁢m from its nucleus, the instrument returns a negative result 97% of the time.

1. What is the probability that at a random time the hydrogen atom’s electron is within 1.058⋅10-10⁢m of its nucleus if the instrument returns a positive result?

2. What is the probability that at a random time the hydrogen atom’s electron is not within 1.058⋅10-10⁢m of its nucleus if the instrument returns a negative result?

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