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Show that if $c > 0,$ then the integral of 1$/ x$ from $a c$ to $b c(0 < a < b)$ is the same as the integral of 1$/ x$ from $a$ to $b .$

Calculus 1 / AB

Calculus 2 / BC

Chapter 1

Integration

Section 6

Integrals Involving Exponential and Logarithmic Functions

Integrals

Integration Techniques

Campbell University

Oregon State University

Harvey Mudd College

University of Michigan - Ann Arbor

Lectures

01:11

In mathematics, integratio…

06:55

In grammar, determiners ar…

00:47

Show that if $c>0,$ the…

04:18

If $0<c<d$, then fin…

04:09

Show that$$\int_{a…

05:08

Show that$$\int_{a}^{b…

03:12

Show that if $ a > -1 $…

05:19

Show that $$\int_{a}^{b} \…

02:37

Prove that $$\int x b^{x} …

02:08

Show that if $f$ is inte…

02:12

Show that $\int_{a}^{b} \f…

06:33

Prove that $ \displaystyle…

okay. We know that affects equals one over X and we need to prove that from from the bounds of C t A to C B one over x t X equals the bounds of a to B one over x t x Therefore, we can let x equal C t d x equal C d t. We know that if axe equal c A t equals a and X equal cb therefore t equals b Okay, This means that we're looking out from the bounds of a to B. We went over c t C D t, which is equivalent to from the bounds of a to B won over t d t.

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