Q.3 (a). Define the importance and application of probability theory in computer science. (b). In drawing 3 CD's from a lot, defective and non defective CD's, let A, B, C and D mean at least one Defective CD, at least one non defective CD, 2 defective CD's and 2 non defective CD's, respectively. Are A and B mutually exclusive? Are C and D mutually exclusive? Comment on your results. c. A certain city has 3 fire engines; the probability that a fire engine is available when needed is 0.95. | į. make a sample space about the availability of fire engines and assign probabilities to each outcome. ii. Find the probability that at least one engine is available when needed.

A First Course in Probability (10th Edition)
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ISBN:9780134753119
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Chapter1: Combinatorial Analysis
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Q.3
(а).
Define the importance and application of probability theory in computer science.
(b).
In drawing 3 CD's from a lot, defective and non defective CD's, let A, B, C and D
mean at least one Defective CD, at least one non defective CD, 2 defective CD's and
2 non defective CD's, respectively. Are A and B mutually exclusive? Are C and D
mutually exclusive? Comment on your results.
A certain city has 3 fire engines; the probability that a fire engine is available when
с.
needed is 0.95.
į. make a sample space about the availability of fire engines and assign probabilities
to each outcome.
ii. Find the probability that at least one engine is available when needed.
Transcribed Image Text:Q.3 (а). Define the importance and application of probability theory in computer science. (b). In drawing 3 CD's from a lot, defective and non defective CD's, let A, B, C and D mean at least one Defective CD, at least one non defective CD, 2 defective CD's and 2 non defective CD's, respectively. Are A and B mutually exclusive? Are C and D mutually exclusive? Comment on your results. A certain city has 3 fire engines; the probability that a fire engine is available when с. needed is 0.95. į. make a sample space about the availability of fire engines and assign probabilities to each outcome. ii. Find the probability that at least one engine is available when needed.
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