4. Let X denote the vibratory stress (psi) on a wind tur- bine blade at a particular wind speed in a wind tunnel. The article "Blade Fatigue Life Assessment with Application to VAWTS" (J. of Solar Energy Engr., 1982: 107-111) proposes the Rayleigh distribution, with pdf X f(x; 0) = 0² • e-x²/(20²) x > 0 0 as a model for the X distribution. a. Verify that f(x; 0) is a legitimate pdf. b. Suppose 0 = 100 (a value suggested by a graph in the article). What is the probability that X is at most 200? Less than 200? At least 200? otherwise c. What is the probability that X is between 100 and 200 (again assuming 0 = 100)? d. Give an expression for P(X ≤ x).
4. Let X denote the vibratory stress (psi) on a wind tur- bine blade at a particular wind speed in a wind tunnel. The article "Blade Fatigue Life Assessment with Application to VAWTS" (J. of Solar Energy Engr., 1982: 107-111) proposes the Rayleigh distribution, with pdf X f(x; 0) = 0² • e-x²/(20²) x > 0 0 as a model for the X distribution. a. Verify that f(x; 0) is a legitimate pdf. b. Suppose 0 = 100 (a value suggested by a graph in the article). What is the probability that X is at most 200? Less than 200? At least 200? otherwise c. What is the probability that X is between 100 and 200 (again assuming 0 = 100)? d. Give an expression for P(X ≤ x).
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
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Problem 1P
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Transcribed Image Text:4. Let X denote the vibratory stress (psi) on a wind tur-
bine blade at a particular wind speed in a wind tunnel.
The article "Blade Fatigue Life Assessment with
Application to VAWTS" (J. of Solar Energy Engr., 1982:
107-111) proposes the Rayleigh distribution, with pdf
X
f(x; 0) = { 0²
e-x²/(20²)
x>0
0
as a model for the X distribution.
a. Verify that f(x; 0) is a legitimate pdf.
b.
Suppose 0 = 100 (a value suggested by a graph in
the article). What is the probability that X is at most
200? Less than 200? At least 200?
otherwise
c.
What is the probability that X is between 100 and 200
(again assuming 0 = 100)?
d. Give an expression for P(X ≤ x).
5. A college professor never finishes his lecture before the
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