
Calculus: Early Transcendentals
8th Edition
ISBN: 9781285741550
Author: James Stewart
Publisher: Cengage Learning
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![### Question 10
Suppose that \( f(x) \) is a differentiable function such that \( f'(4) = 5 \) and \( f(4) = 4 \). If \( g(x) = 2xf(x) \), then what is \( g'(4) \)?
* [Answer Box]](https://content.bartleby.com/qna-images/question/139cb5f2-923a-4627-93ad-b9a40e985e19/4d0f7ff7-957b-4cb7-bab7-c2cac6793f8b/uo2oapg_thumbnail.jpeg)
Transcribed Image Text:### Question 10
Suppose that \( f(x) \) is a differentiable function such that \( f'(4) = 5 \) and \( f(4) = 4 \). If \( g(x) = 2xf(x) \), then what is \( g'(4) \)?
* [Answer Box]
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- Suppose that f(x) is a function with f(135) = 43 and f'(135) = 7. Estimate f(138).f(138) = _____arrow_forwardThe derivative of f(x) f(x) = 4.x5 is Зх-2arrow_forwardSuppose that f is a function given as f(x) = 2x² + 7x - 2. Simplify the expression f(x + h). f(x + h) = Simplify the difference quotient, f(x+h)-f(x) h f(x+h)-f(x) h The derivative of the function at a is the limit of the difference quotient as h approaches zero. f'(x) = lim f(x+h)-f(x) h→0 harrow_forward
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