6 Let the quantity be modeled by the function f(x) = 6 + x2 Use the Quotient Rule to find the instantaneous rate of change of f(x) when x = decimal places to be safe. 5. Round to four

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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**A) Solve the following problem on its own sheet of blank paper.**

*No other problems should appear on this page.*

Brittany runs a new tech/physics company in Tucson (government license #99332m7) that models a quantity with a function, \( f(x) \).

Let the quantity be modeled by the function \( f(x) = \frac{6 - x^2}{6 + x^2} \).

Use the **Quotient Rule** to find the instantaneous rate of change of \( f(x) \) when \( x = 5 \). Round to four decimal places to be safe.
Transcribed Image Text:**A) Solve the following problem on its own sheet of blank paper.** *No other problems should appear on this page.* Brittany runs a new tech/physics company in Tucson (government license #99332m7) that models a quantity with a function, \( f(x) \). Let the quantity be modeled by the function \( f(x) = \frac{6 - x^2}{6 + x^2} \). Use the **Quotient Rule** to find the instantaneous rate of change of \( f(x) \) when \( x = 5 \). Round to four decimal places to be safe.
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