The number of cars being repaired at a small repair shop has the following PMF: 1 for n = 0 8 1 for n = 1 8 PN (n) = for n = 2 for n = 3 otherwise Each car that is being repaired is a four-door car with probability and a two-door car with probability , independently from other cars and independently from the number of cars being repaired. Let X be the number of four-door cars and Y be the number of two-door cars currently being repaired. a. Find the marginal PMFS of X and Y. b. Find the joint PMF of X and Y. c. Are X and Y independent?

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The number of cars being repaired at a small repair shop has the following PMF:
1
for n = 0
1
for n = 1
8
PN (n)
for n = 2
for n = 3
otherwise
Each car that is being repaired is a four-door car with probability and a two-door car with probability , independently from other cars and
independently from the number of cars being repaired. Let X be the number of four-door cars and Y be the number of two-door cars currently
being repaired.
a. Find the marginal PMFS of X and Y.
b. Find the joint PMF of X and Y.
c. Are X and Y independent?
Transcribed Image Text:The number of cars being repaired at a small repair shop has the following PMF: 1 for n = 0 1 for n = 1 8 PN (n) for n = 2 for n = 3 otherwise Each car that is being repaired is a four-door car with probability and a two-door car with probability , independently from other cars and independently from the number of cars being repaired. Let X be the number of four-door cars and Y be the number of two-door cars currently being repaired. a. Find the marginal PMFS of X and Y. b. Find the joint PMF of X and Y. c. Are X and Y independent?
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