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Indefinite Integrals of the Form a+bx

In calculus, an antiderivative, primitive, or indefinite integral of a function f is a function F whose derivative is equal to f, i.e., F ′ = f. The process of solving for antiderivatives is antidifferentiation (or indefinite integration). Antiderivatives are related to definite integrals through the fundamental theorem of calculus: the definite integral of a function over an interval is equal to the difference between the values of an antiderivative evaluated at the endpoints of the interval. - Wikipedia

When this page was first created back in the late 1990s, it was nearly impossible to locate tables of integrals (both definite and indefinite) on the Internet. Now, they are everywhere; being one of the first doesn't count for much on the Web.

Indefinite Integrals of the Form (a+bx)^n dx - RF Cafe

Indefinite Integrals of the Form x(a+bx) dx - RF Cafe

Indefinite Integrals of the Form 1/(a+bx) dx - RF Cafe

Indefinite Integrals of the Form 1/(a+bx)^2 dx - RF Cafe

Indefinite Integrals of the Form 1/(a+bx)^3 dx - RF Cafe

Indefinite Integrals of the Form x/(a+bx) dx - RF Cafe

Indefinite Integrals of the Form x/(a+bx)^2 dx - RF Cafe

Indefinite Integrals of the Form x/(a+bx)^n dx - RF Cafe

Indefinite Integrals of the Form x^2/(a+bx) dx - RF Cafe

Indefinite Integrals of the Form x^2/(a+bx)^2 dx - RF Cafe

Indefinite Integrals of the Form x^2/(a+bx)^3 - RF Cafe


Source: CRC Standard Math Tables, 1987

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RF Cafe began life in 1996 as "RF Tools" in an AOL screen name web space totaling 2 MB. Its primary purpose was to provide me with ready access to commonly needed formulas and reference material while performing my work as an RF system and circuit design engineer. The Internet was still largely an unknown entity at the time and not much was available in the form of WYSIWYG ...

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