2) Use the Fundamental Theorem of Calculus to evaluate the definite integral. Show all work clearly and be sure to use complete and proper mathematical notation. Give an exact answer, not a decimal approximation (no calculators). [Example: cos(2)≈ -0.416. Here, cos (2) is the exact value whereas -0.416 is a decimal approximation. Another example: √√2 is an exact value whereas 1.414 is a decimal.] Evaluate: ₁ (2 cos x + 3x² + 5) dx

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter5: Inverse, Exponential, And Logarithmic Functions
Section5.5: Properties Of Logarithms
Problem 68E
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2) Use the Fundamental Theorem of Calculus to evaluate the definite integral. Show all
work clearly and be sure to use complete and proper mathematical notation. Give an
exact answer, not a decimal approximation (no calculators).
[Example: cos(2)≈ 0.416. Here, cos (2) is the exact value whereas -0.416 is a
decimal approximation. Another example: √2 is an exact value whereas 1.414 is a
decimal.]
Evaluate: ₁ (2 cos x + 3x² + 5) dx
Transcribed Image Text:2) Use the Fundamental Theorem of Calculus to evaluate the definite integral. Show all work clearly and be sure to use complete and proper mathematical notation. Give an exact answer, not a decimal approximation (no calculators). [Example: cos(2)≈ 0.416. Here, cos (2) is the exact value whereas -0.416 is a decimal approximation. Another example: √2 is an exact value whereas 1.414 is a decimal.] Evaluate: ₁ (2 cos x + 3x² + 5) dx
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