Exercise 4.1 The number of defects on the front side (X) of a wooden panel and the number of defects on the rear side (Y) of the panel are under study. 1. Suppose that the joint p.mfof X and Y is...


Exercise 4.1 The number of defects on the front side (X) of a wooden panel and the<br>number of defects on the rear side (Y) of the panel are under study.<br>1. Suppose that the joint p.mfof X and Y is modeled as<br>fx (x, y) = c(x + y), x = 1, 2, 3 and y = 1, 2, 3<br>Determine the value of c.<br>2. Determine the marginal p.m.f of X. Find also the mean and variance<br>of X.<br>3. Determine the conditional p.m.f. of Y given X= 2. Find also the<br>conditional mean and conditional variance of Y given X=2.<br>4. Check if the number of defects on the front side (X) of a wooden panel<br>and the number of defects on the rear side (Y) of the panel are<br>independent.<br>Engr. A. CUH-ING<br>

Extracted text: Exercise 4.1 The number of defects on the front side (X) of a wooden panel and the number of defects on the rear side (Y) of the panel are under study. 1. Suppose that the joint p.mfof X and Y is modeled as fx (x, y) = c(x + y), x = 1, 2, 3 and y = 1, 2, 3 Determine the value of c. 2. Determine the marginal p.m.f of X. Find also the mean and variance of X. 3. Determine the conditional p.m.f. of Y given X= 2. Find also the conditional mean and conditional variance of Y given X=2. 4. Check if the number of defects on the front side (X) of a wooden panel and the number of defects on the rear side (Y) of the panel are independent. Engr. A. CUH-ING

Jun 09, 2022
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