Mathematical Statistics with Applications
Mathematical Statistics with Applications
7th Edition
ISBN: 9780495110811
Author: Dennis Wackerly, William Mendenhall, Richard L. Scheaffer
Publisher: Cengage Learning
Question
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Chapter 7, Problem 100SE

a.

To determine

Prove that the moment-generating function of Y=(Xλ)/λ is given by mY(t)=exp(λet/λλtλ).

a.

Expert Solution
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Explanation of Solution

From the given information, X follows Poisson distribution with parameter λ and Y=(Xλ)/λ.

The moment generating function of X is MX(t)=eλ(et1).

Then,

mY(t)=m(Xλ)/λ(t)=E(et(Xλ)/λ)=E(etXλ)E(etλλ)=etλE(etXλ)=etλmX(tλ)=etλeλ(etλ1)=etλeλ(etλ)λ=exp(tλ+λetλλ)

Hence proved

b.

To determine

Prove that mY(t)=et2/2 as λ.

b.

Expert Solution
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Explanation of Solution

From the given information, the expansion is et/λ=i=0(t/λ)ii!

From the part a mY(t)=exp(tλ+λetλλ)

Then,

mY(t)=exp(tλ+λi=0(t/λ)ii!λ)=exp(tλ+λ(i=0(t/λ)ii!1))=exp(tλ+λ(1+tλ+t22λ+t36λ3/2+..........1))=exp(tλ+λ(tλ+t22λ+t36λ3/2+........))=exp(tλ+tλ+t22+t36λ1/2+.........)=exp(t22+t36λ1/2+..........)

As λ

mY(t)=exp(t22)

Hence proved.

c.

To determine

Prove that the distribution function of Y converges to a standard normal distribution function as λ by using theorem 7.5.

c.

Expert Solution
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Explanation of Solution

From the theorem 7.5, if Y and Y1,Y2,Y3,.......... are the random variables with the moment generating functions m(t), m1(t),m2(t),m3(t),........ and as n mn(t)=m(t), then the distribution function of Yn tends to distribution function of Y.

From the part b, as λ

mY(t)=exp(t22)

This is the moment generating function of the standard normal distribution.

By using theorem 7.5, Yn follows a standard normal distribution function.

Hence proved.

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Chapter 7 Solutions

Mathematical Statistics with Applications

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