2. Suppose a transition diagram is given as follows: 1 2 50 3 1/2 1/4 1/2 4 6 7 1/4 1/2 For this chain, there are two recurrent classes R₁ = {6, 7} and R₂ = {1, 2, 5}, and one transient class R3 = {3, 4}. (a) Find the period of state 3 and the probability that, starting at state 3, the state 3 is eventually re-entered (i.e., f33). (b) Assuming X₁ = 3, find the probability that the chain gets absorbed in R₁. Xo (c) Assuming X₁ = 3, find the expected time (number of steps) until the chain gets absorbed in R₁ or R2. More specifically, let T be the absorption time, i.e., the first time the chain visits a state in R₁ or R2. We would like to find E[T|X0=3]. Note: there are missing transition probabilities for this chain, but no impact for your solution.
2. Suppose a transition diagram is given as follows: 1 2 50 3 1/2 1/4 1/2 4 6 7 1/4 1/2 For this chain, there are two recurrent classes R₁ = {6, 7} and R₂ = {1, 2, 5}, and one transient class R3 = {3, 4}. (a) Find the period of state 3 and the probability that, starting at state 3, the state 3 is eventually re-entered (i.e., f33). (b) Assuming X₁ = 3, find the probability that the chain gets absorbed in R₁. Xo (c) Assuming X₁ = 3, find the expected time (number of steps) until the chain gets absorbed in R₁ or R2. More specifically, let T be the absorption time, i.e., the first time the chain visits a state in R₁ or R2. We would like to find E[T|X0=3]. Note: there are missing transition probabilities for this chain, but no impact for your solution.
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
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VIEWStep 2: Determine the period of state 3 and the probability of starting at state 3, eventually return to 3
VIEWStep 3: Determine the probability that the chain gets absorbed in R1 if X0=3
VIEWStep 4: Determine the expected time (number of steps) until the chain gets absorbed in R1 or R2.
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