Problem #4: Students with the last name of P-T: Please review Section 5.3. Solve the following five problems showing work, using the Poisson Distribution formula from our te POISSON DISTRIBUTION P(X = x|A) = x! (5.8) where P(X = x|A) = probability that X = x events in an area of opportunity given A A = expected number of events per unit e = mathematical constant approximated by 2.71828 x = number of events (x = 0, 1, 2, . ..) 1. Let A = 2.0, find P(X 2 2). (Round to three decimal places) 2. Let A = 0.5, find P(X s 1). (Round to three decimal places) 3. Let A = 7.0, find P(X s 3). (Round to three decimal places)
Problem #4: Students with the last name of P-T: Please review Section 5.3. Solve the following five problems showing work, using the Poisson Distribution formula from our te POISSON DISTRIBUTION P(X = x|A) = x! (5.8) where P(X = x|A) = probability that X = x events in an area of opportunity given A A = expected number of events per unit e = mathematical constant approximated by 2.71828 x = number of events (x = 0, 1, 2, . ..) 1. Let A = 2.0, find P(X 2 2). (Round to three decimal places) 2. Let A = 0.5, find P(X s 1). (Round to three decimal places) 3. Let A = 7.0, find P(X s 3). (Round to three decimal places)
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
Related questions
Question
![Page <
4
> of 5
ZOOM
Problem #4: Students with the last name of P-T:
Please review Section 5.3. Solve the following five problems showing work, using the Poisson Distribution formula from our textbook:
POISSON DISTRIBUTION
P(X = x|A)
(5.8)
%3D
%3D
x!
where
P(X = xA) = probability that X = x events in an area of opportunity given A
1 = expected number of events per unit
e = mathematical constant approximated by 2.71828
x = number of events (x = 0, 1, 2, . . .)
1. Let A = 2.0, find P(X > 2). (Round to three decimal places)
2. Let A = 0.5, find P(X s 1). (Round to three decimal places)
3. Let A = 7.0, find P(X < 3). (Round to three decimal places)
4. Let A = 4.1, find P(X 2 1). (Round to three decimal places)
5. Let A = 5.1, find P(X s 3). (Round to three decimal places)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F00a48d79-f805-418c-a679-1c91878d1d75%2F5a5737fb-3f81-42a1-be6f-0a7a0a25efc1%2Fr6xda6i_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Page <
4
> of 5
ZOOM
Problem #4: Students with the last name of P-T:
Please review Section 5.3. Solve the following five problems showing work, using the Poisson Distribution formula from our textbook:
POISSON DISTRIBUTION
P(X = x|A)
(5.8)
%3D
%3D
x!
where
P(X = xA) = probability that X = x events in an area of opportunity given A
1 = expected number of events per unit
e = mathematical constant approximated by 2.71828
x = number of events (x = 0, 1, 2, . . .)
1. Let A = 2.0, find P(X > 2). (Round to three decimal places)
2. Let A = 0.5, find P(X s 1). (Round to three decimal places)
3. Let A = 7.0, find P(X < 3). (Round to three decimal places)
4. Let A = 4.1, find P(X 2 1). (Round to three decimal places)
5. Let A = 5.1, find P(X s 3). (Round to three decimal places)
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