C) g'(x) = 3x²; g'(1) = 3 D) g'(x) = 3x2 + 5; g'(1) = 8 mits to find the derivative function f' for the given function f. Then evaluate f'(a) for the given val 20) f(s)=√√6s+7; a = -1, A) f'(s) = C) f'(s) = ne derivative. 3 -1.-/-/- √63+7:1 (-1) = 3,1 6s (1)-1 16 3 √√6s+7' f'(-1)= 3, f A/w - B) f'(s) = D) f'(s) = 1 2√6s+7 1 2√/6s + 7° ² (-1) = 2 · (²³) ; f'(-1) = (3) 100 8 -100 8
C) g'(x) = 3x²; g'(1) = 3 D) g'(x) = 3x2 + 5; g'(1) = 8 mits to find the derivative function f' for the given function f. Then evaluate f'(a) for the given val 20) f(s)=√√6s+7; a = -1, A) f'(s) = C) f'(s) = ne derivative. 3 -1.-/-/- √63+7:1 (-1) = 3,1 6s (1)-1 16 3 √√6s+7' f'(-1)= 3, f A/w - B) f'(s) = D) f'(s) = 1 2√6s+7 1 2√/6s + 7° ² (-1) = 2 · (²³) ; f'(-1) = (3) 100 8 -100 8
Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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