Problem #1) Random variables X and Y are jointly lognormal with means μx deviations σx = 40 and σy = = 100 and μy = 200, standard 60, and correlation coefficient Pxy = 0.5. 1) Write an expression for the joint PDF fxx(x, y) and plot its contours. = 100, 200 and 2) Write an expression for the conditional PDF fx|x(x\y) and plot it for y 300. On the same graph, plot the marginal PDF fx (x). Observe the change in the condi- tional PDF of X depending on the given value of Y.
Problem #1) Random variables X and Y are jointly lognormal with means μx deviations σx = 40 and σy = = 100 and μy = 200, standard 60, and correlation coefficient Pxy = 0.5. 1) Write an expression for the joint PDF fxx(x, y) and plot its contours. = 100, 200 and 2) Write an expression for the conditional PDF fx|x(x\y) and plot it for y 300. On the same graph, plot the marginal PDF fx (x). Observe the change in the condi- tional PDF of X depending on the given value of Y.
Practical Management Science
6th Edition
ISBN:9781337406659
Author:WINSTON, Wayne L.
Publisher:WINSTON, Wayne L.
Chapter14: Data Mining
Section14.2: Classification Methods
Problem 3P
Question
do fast

Transcribed Image Text:Problem #1)
Random variables X and Y are jointly lognormal with means μx
deviations σx = 40 and σy
=
=
100 and μy =
200, standard
60, and correlation coefficient Pxy = 0.5.
1) Write an expression for the joint PDF fxx(x, y) and plot its contours.
= 100, 200 and
2) Write an expression for the conditional PDF fx|x(x\y) and plot it for y
300. On the same graph, plot the marginal PDF fx (x). Observe the change in the condi-
tional PDF of X depending on the given value of Y.
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