Consider a binomial experiment with n = a. Compute f(0) (to 4 decimals). O f(0) = b. Compute f(3) (to 4 decimals). f(3) = c. Compute P(x ≤ 1) (to 4 decimals). P(x ≤ 1) = d. Compute P(x > 4) (to 4 decimals). P(x ≥ 4) = e. Compute E(x) (to 1 decimal). E(x) = f. Compute Var (x) and o. Var(x) = 1= (to 2 decimals) (to 2 decimals) = 8 and p = 0.1.

Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter12: Probability
Section12.4: Discrete Random Variables; Applications To Decision Making
Problem 2E
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nment: Chapter 5 Assignment
stions Exercise 05.32 Algo (Binomial Probability Distribution)
O Consider a binomial experiment with n = 8 and p = 0.1.
a. Compute f(0) (to 4 decimals).
f(0) =
b. Compute f(3) (to 4 decimals).
f(3)
c. Compute P(x ≤ 1) (to 4 decimals).
P(x ≤ 1) =
d. Compute P(x 24) (to 4 decimals).
P(x ≥ 4) =
e. Compute E(x) (to 1 decimal).
E(x)
f. Compute Var (x) and o.
Var(x) =
=
=
σ=
Q Icon Key
(to 2 decimals)
(to 2 decimals)
Transcribed Image Text:nment: Chapter 5 Assignment stions Exercise 05.32 Algo (Binomial Probability Distribution) O Consider a binomial experiment with n = 8 and p = 0.1. a. Compute f(0) (to 4 decimals). f(0) = b. Compute f(3) (to 4 decimals). f(3) c. Compute P(x ≤ 1) (to 4 decimals). P(x ≤ 1) = d. Compute P(x 24) (to 4 decimals). P(x ≥ 4) = e. Compute E(x) (to 1 decimal). E(x) f. Compute Var (x) and o. Var(x) = = = σ= Q Icon Key (to 2 decimals) (to 2 decimals)
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