Tutorial Exercise Write the given expression as a single integral in the following form. [₁1 (2) dx + √₁5 (2) dx - [² 1 (x f (x) dx Part 1 of 3 We know that for a sb sc, [° f(x) dx + √ ² F(x) dx = [°F(x) a dx. Using the first and second integrals, since we have -4 S 154, [₁ f(x) dx + [² f(x) dx = ] Submit Skip (you cannot come back) f(x) dx.

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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5.2 q16

Tutorial Exercise
Write the given expression as a single integral in the following form.
[_^ 1 (x) dx + [ª 1 (x) dx − [_^²^1 (x) dx
f -
Part 1 of 3
We know that for a ≤ b ≤ C,
fºrex
Submit
f(x) dx +
+ √₁²°F(x) dx = √₂₁°F(x
Using the first and second integrals, since we have -4 ≤ 1 ≤ 4,
[ ^_F(x) dx + [ª f(x
f(x) dx =
Skip_(you cannot come back)
f(x) dx.
f(x) dx.
Transcribed Image Text:Tutorial Exercise Write the given expression as a single integral in the following form. [_^ 1 (x) dx + [ª 1 (x) dx − [_^²^1 (x) dx f - Part 1 of 3 We know that for a ≤ b ≤ C, fºrex Submit f(x) dx + + √₁²°F(x) dx = √₂₁°F(x Using the first and second integrals, since we have -4 ≤ 1 ≤ 4, [ ^_F(x) dx + [ª f(x f(x) dx = Skip_(you cannot come back) f(x) dx. f(x) dx.
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