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Assume that a Student alarm clock has a 15.7% daily failure rate. COMPLETE PARTS A to D a. What is the probability that the student's

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Assume that a Student alarm clock has a 15.7% daily failure rate. COMPLETE PARTS A to D

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a. What is the probability that the student's alarm clock will not work on the morning of an important final exam? (Round to three decimal places as needed.) b. If the student has two such alarm clocks, what is the probability that they both fail on the morning of an important final exam? (Round to five decimal places as needed.) c. What is the probability of not being awakened if the student uses three independent alarm clocks? (Round to five decimal places as needed.) d. Do the second and third alarm clocks result in greatly improved reliability? O A. Yes, because total malfunction would not be impossible, but it would be unlikely. O B. No, because the malfunction of both is equally or more likely than the malfunction of one. Time Remaining: 02:10:25 Next U OT 2 est (b. 1-b.b, /.1-7.3) 18UmIn

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