1) Deliberate with your group about how you might approx- imate the function g(x) = e about z = 0. Explain your thinking. (2) Use one of the discussed methods to approximate the func- tion using a line L(z)= ao+az. Draw the linear approx- imation L(r) on the graph. 8 7 6 5 2 (3) Find a formula for the tangent line of an arbitrary function f(r) about at the point = 0.
1) Deliberate with your group about how you might approx- imate the function g(x) = e about z = 0. Explain your thinking. (2) Use one of the discussed methods to approximate the func- tion using a line L(z)= ao+az. Draw the linear approx- imation L(r) on the graph. 8 7 6 5 2 (3) Find a formula for the tangent line of an arbitrary function f(r) about at the point = 0.
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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
Transcribed Image Text:(A) Let us first do LINEAR approximations. We want to approximate the function g(x)= e about z = 0.
Y
1) Deliberate with your group about how you might approx-
imate the function g(x)= e about z = 0. Explain your
thinking.
(2) Use one of the discussed methods to approximate the func-
tion using a line L(z)= ao+az. Draw the linear approx-
imation L(r) on the graph.
87
65
(3) Find a formula for the tangent line of an arbitrary function f(r) about at the point z=0.
HITEL
2
et
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