Which of the following statement (s) is/are correct? The formula for the differential of a product is: (A d (gh) = g (dh) - h(dg) A fraction can be broken into a sum of partial fractions if ta) the proper fraction is improper, (b) the denominator is (в not completely factored, and the fraction is reducible. Integration by parts is usually used when u-substitution is not appropriate and is useful when the integrand is the product of two unrelated functions. D In Trigonometric Substitution, if - (a² – u²) is present, then set u = sec 0 E All choices are correct

Algebra and Trigonometry (6th Edition)
6th Edition
ISBN:9780134463216
Author:Robert F. Blitzer
Publisher:Robert F. Blitzer
ChapterP: Prerequisites: Fundamental Concepts Of Algebra
Section: Chapter Questions
Problem 1MCCP: In Exercises 1-25, simplify the given expression or perform the indicated operation (and simplify,...
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Which of the following statement (s) is/are correct?

Which of the following statement (S) isfare correct?
The formula for the differential of a product is:
A
d (gh) = g (dh) - h(dg)
A fraction can be broken into a sum of partial fractions if ta) the proper fraction is improper, (b) the denominator is
B
not completely factored, and the fraction is reducible.
Integration by parts is usually used when u-substitution is not appropriate and is useful when the integrand is the
C)
product of two unrelated functions.
D In Trigonometric Substitution, if - (a2 - u?) is present, then set u = sec 0
E) All choices are correct
Transcribed Image Text:Which of the following statement (S) isfare correct? The formula for the differential of a product is: A d (gh) = g (dh) - h(dg) A fraction can be broken into a sum of partial fractions if ta) the proper fraction is improper, (b) the denominator is B not completely factored, and the fraction is reducible. Integration by parts is usually used when u-substitution is not appropriate and is useful when the integrand is the C) product of two unrelated functions. D In Trigonometric Substitution, if - (a2 - u?) is present, then set u = sec 0 E) All choices are correct
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