1.4 points Evaluate the definite integral shown. You must show enough work to convince me that you did more than just use Geogebra. Give an exact answer (but you do not have to simplify). √r - rl dr are these derivatives You need antiderivatives メ So t S. 1/2 3.1 2. points Find the derivative function. F'(r). for the function F(x) = (tan(t) + 8t) dt F'(x) = (101/09)+8/04)) c* xim
1.4 points Evaluate the definite integral shown. You must show enough work to convince me that you did more than just use Geogebra. Give an exact answer (but you do not have to simplify). √r - rl dr are these derivatives You need antiderivatives メ So t S. 1/2 3.1 2. points Find the derivative function. F'(r). for the function F(x) = (tan(t) + 8t) dt F'(x) = (101/09)+8/04)) c* xim
Chapter3: Functions
Section3.3: Rates Of Change And Behavior Of Graphs
Problem 46SE: Near the surface of the moon, the distance that an object falls is a function of time. It is given...
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
Transcribed Image Text:1.4 points Evaluate the definite integral shown. You must show enough work to convince me that you did more
than just use Geogebra. Give an exact answer (but you do not have to simplify).
√r - rl dr
are
these derivatives
You need antiderivatives
メ
So t
S. 1/2
3.1
2.
points Find the derivative function. F'(r). for the function
F(x) = (tan(t) + 8t) dt
F'(x) = (101/09)+8/04)) c*
xim
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