A program consists of two modules. The number of errors, X, in the first module and the number of errors, Y, in the second module have the joint distribution, p(0, 0) = p(0, 1) = p(1, 0) = 0.2, p(1, 1) = p(1, 2) = p(1, 3) = 0.1, p(0, 2) = p(0, 3) = 0.05. (a) Find the marginal distributions of X and Y (b) Find E[X] and E[Y] (c) Find Var(X) and Var(Y) (d) Find Cov(X, Y) (e) Find the correlation between X and Y.

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A program consists of two modules. The number of errors, X, in the first module and the
number of errors, Y, in the second module have the joint distribution, p(0, 0) = p(0, 1) =
p(1, 0) = 0.2, p(1, 1) = p(1, 2) = p(1, 3) = 0.1, p(0, 2) = p(0, 3) = 0.05.
(a) Find the marginal distributions of X and Y
(b) Find E[X] and E[Y]
(c) Find Var(X) and Var(Y)
(d) Find Cov(X, Y)
(e) Find the correlation between X and Y.
Transcribed Image Text:A program consists of two modules. The number of errors, X, in the first module and the number of errors, Y, in the second module have the joint distribution, p(0, 0) = p(0, 1) = p(1, 0) = 0.2, p(1, 1) = p(1, 2) = p(1, 3) = 0.1, p(0, 2) = p(0, 3) = 0.05. (a) Find the marginal distributions of X and Y (b) Find E[X] and E[Y] (c) Find Var(X) and Var(Y) (d) Find Cov(X, Y) (e) Find the correlation between X and Y.
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