4.1 Consider the sequence of functions {fn(2)} = {n²r(1 − 2)"} for z € R and n = 1,2,3.... 4.1.1 Sketch on the same axis the graphs of fi(r) and ƒ2(1). 4.1.2 Find f(x) = lim fn(2) in the interval [0, 1]. 004-11 4.1.3 Evaluate f f(r)dr 4.1.4 Evaluate f fn(x)dx To f ² √ (² 4.1.5 Evaluate lim 11+00 fn(r)dr 1

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter10: Sequences, Series, And Probability
Section10.6: Permutations
Problem 47E
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4.1.1

4.1.2

4.1.6

4.1 Consider the sequence of functions {fn(x1)} = {n²x(1– x)™"} for r € R and n =
= 1,2, 3....
4.1.1 Sketch on the same axis the graphs of fi(r) and fa(r).
4.1.2 Find f(z) = lim fn(x) in the interval [0, 1].
1
4.1.3 Evaluate fo f()dx
4.1.4 Evaluate f fn(x)dx
4.1.5 Evaluate lim
Transcribed Image Text:4.1 Consider the sequence of functions {fn(x1)} = {n²x(1– x)™"} for r € R and n = = 1,2, 3.... 4.1.1 Sketch on the same axis the graphs of fi(r) and fa(r). 4.1.2 Find f(z) = lim fn(x) in the interval [0, 1]. 1 4.1.3 Evaluate fo f()dx 4.1.4 Evaluate f fn(x)dx 4.1.5 Evaluate lim
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