Let F and G be vector-valued F(1) = (1,0,2), F'(1) = (1,1,2), Ģ(1) = (2,1,3), G'(1) = (-1, -2, 4), Find the following: 1. a vector equation of the tangent line to the graph of ♬ at t = 1. 2. (Ğ○ ƒ)'(0) + Ē″(1) where f(t) = e²t. 3. (F' × Ģ)'(1). functions such that F" (1) = (3, 4, 2), G"(1) = (3,2,0).

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.
Chapter6: Applications Of The Derivative
Section6.3: Implicit Differentiation
Problem 35E
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Let F and Ģ be vector-valued functions such that
Ē(1) = (1,0, 2),
Ē'(1) = (1,1,2),
Ģ(1) = (2,1,3),
Ģʻ(1) = (−1, −2, 4),
Find the following:
1. a vector equation of the tangent line to the graph of ♬ at t = 1.
2. (Ğ○ ƒ)'(0) + Ē″(1) where ƒ(t) = e²t.
3. (F' × Ģ)'(1).
F"(1) = (3, 4, 2),
G"(1) = (3, 2, 0).
Transcribed Image Text:Let F and Ģ be vector-valued functions such that Ē(1) = (1,0, 2), Ē'(1) = (1,1,2), Ģ(1) = (2,1,3), Ģʻ(1) = (−1, −2, 4), Find the following: 1. a vector equation of the tangent line to the graph of ♬ at t = 1. 2. (Ğ○ ƒ)'(0) + Ē″(1) where ƒ(t) = e²t. 3. (F' × Ģ)'(1). F"(1) = (3, 4, 2), G"(1) = (3, 2, 0).
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