State both forms of the Chain Rule for calculating the derivative of y = f(g(x)) with u=g(x). State both forms of the Chain Rule. dy [f(g(x))] = dx %3D dx f'(g'(x)) f'(g(x)) • g'(x) f'(g(x)) +g'(x) g'(f(x)) • f'(x)

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter5: Inverse, Exponential, And Logarithmic Functions
Section: Chapter Questions
Problem 18T
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State both forms of the Chain Rule for calculating the derivative of y = f(g(x)) with u=g(x).
State both forms of the Chain Rule.
dy
[f(g(x))] =
dx
%3D
dx
f'(g'(x))
f(g(x)) • g'(x)
f'(g(x)) + g'(x)
g'(f(x)) • f'(x)
Transcribed Image Text:State both forms of the Chain Rule for calculating the derivative of y = f(g(x)) with u=g(x). State both forms of the Chain Rule. dy [f(g(x))] = dx %3D dx f'(g'(x)) f(g(x)) • g'(x) f'(g(x)) + g'(x) g'(f(x)) • f'(x)
State both forms of the Chain Rule for calculating the derivative of y = f(g(x)) with u=g(x).
State both forms of the Chain Rule.
dy
d.
-[f(g(x))] =
dx
dx
dx du
du dy
dy dx
dx
du
du
dx
dy
du
dy
du
du
dx
Transcribed Image Text:State both forms of the Chain Rule for calculating the derivative of y = f(g(x)) with u=g(x). State both forms of the Chain Rule. dy d. -[f(g(x))] = dx dx dx du du dy dy dx dx du du dx dy du dy du du dx
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