P2.A: The integral of the following function: r In(sin2 x) dx tan(x) may be expressed as: A ln3 (sin x) + C Where A, B, and C are constants. Show this by evaluating the integral and calculate A + B.

College Algebra
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ISBN:9781938168383
Author:Jay Abramson
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Chapter6: Exponential And Logarithmic Functions
Section6.7: Exponential And Logarithmic Models
Problem 27SE: Prove that bx=exln(b) for positive b1 .
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Evaluate the integral
P2.A: The integral of the following function:
r In(sin2 x)
dx
tan(x)
may be expressed as:
A ln (sin x) + C
Where A, B, and C are constants. Show this by evaluating the integral and calculate A + B.
Transcribed Image Text:P2.A: The integral of the following function: r In(sin2 x) dx tan(x) may be expressed as: A ln (sin x) + C Where A, B, and C are constants. Show this by evaluating the integral and calculate A + B.
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