Difference between revisions of "Integral"
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#Indefinite Integral <math>\int f(x) \,dx = F(x)+c,</math> | #Indefinite Integral <math>\int f(x) \,dx = F(x)+c,</math> | ||
#sum rule of Indefinite Integral <math>\int [f(x)+g(x)] \,dx = \int f(x) \,dx + \int g(x) \,dx </math> | |||
#The Difference Rule <math>\int [f(x)-g(x)] \,dx = \int f(x) \,dx - \int g(x) \,dx</math> | |||
#Indefinite Integral <math>\int x^n \,dx = { b^{n+1} \over n+1 }+c,</math> | #Indefinite Integral <math>\int x^n \,dx = { b^{n+1} \over n+1 }+c,</math> | ||
==Examples== | ==Examples== | ||
====Examples for Definite Integral==== | ====Examples for Definite Integral==== |
Revision as of 14:29, 2 September 2021
Vocabulary of the equation
- F(x)= f'(x)
- c = constant
- n = constant
- = Integrals from a to b
Definite Integral
Some equations you can remember But when you are looking at the equation you must need to know F(x)= f'(x).
Indefinite Integral
Some equations you can remember But same you must need to know F(x)= f'(x).
- Indefinite Integral
- sum rule of Indefinite Integral
- The Difference Rule
- Indefinite Integral