1. Plot the function f(t)= (x+5) for -35 x 3. 4+3x2

Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter3: The Derivative
Section3.3: Rates Of Change
Problem 19E: Find the instantaneous rate of change for each function at the given value. f(x)=x2+2x at x=0
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(x+5)
1. Plot the function f(t) =
for -35 x 5.
%3!
443x2
5 sin(x)
3x
2. Plot the function f(t) =
for -55x s10.
3. Make two separate plots of the function f(x) = (x+ 1)(x- 2)(2x -
0.25) – e, one plot for 0<xS 3and one for -3 <xS6.
4. Use the fplot command to plot the function f(t) VTcos(3x) + sin (4x) in
the domain -25 x S2.
5. Use the fplot command to plot the function f(x) = e2sin(048)5cos(4x)in the
domain
-20< x 30.
6. A parametric equation is given by x=1.5 sin (5t), y=1.5 cos (3t), Plot the
function for 0sts 2a. Format the plot such that the both axes will range from
-2 to 2.
Transcribed Image Text:(x+5) 1. Plot the function f(t) = for -35 x 5. %3! 443x2 5 sin(x) 3x 2. Plot the function f(t) = for -55x s10. 3. Make two separate plots of the function f(x) = (x+ 1)(x- 2)(2x - 0.25) – e, one plot for 0<xS 3and one for -3 <xS6. 4. Use the fplot command to plot the function f(t) VTcos(3x) + sin (4x) in the domain -25 x S2. 5. Use the fplot command to plot the function f(x) = e2sin(048)5cos(4x)in the domain -20< x 30. 6. A parametric equation is given by x=1.5 sin (5t), y=1.5 cos (3t), Plot the function for 0sts 2a. Format the plot such that the both axes will range from -2 to 2.
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