Provide an appropriate response. Why is dy not generally equal to Ay? Because Ay is the slope of f(x) at x + Ax , whereas, dy is the slope of f(x) at x + Ax. O Because dy is the change in f(x) over an interval x to x + Ax , whereas, over the same interval, Ay is the rise of the line tangent to f(x) at x - x. Because Ay is the slope of f(x) at x + Ax , whereas, dy is the slope of the line tangent to f(x) at x = x. O Because Ay is the change in f(x) over an interval x to x + Ax , whereas, over the same interval, dy is the rise of the line tangent to f(x) at x = x.

Algebra and Trigonometry (MindTap Course List)
4th Edition
ISBN:9781305071742
Author:James Stewart, Lothar Redlin, Saleem Watson
Publisher:James Stewart, Lothar Redlin, Saleem Watson
Chapter2: Functions
Section2.4: Average Rate Of Change Of A Function
Problem 4.2E: bThe average rate of change of the linear function f(x)=3x+5 between any two points is ________.
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Provide an appropriate response.
Why is dy not generally equal to Ay?
Because Ay is the slope of f(x) at x + Ax , whereas, dy is the slope of f(x) at x + Ax.
O Because dy is the change in f(x) over an interval x to x + Ax , whereas, over the same interval, Ay is the rise
of the line tangent to f(x) at x - x.
Because Ay is the slope of f(x) at x + Ax , whereas, dy is the slope of the line tangent to f(x) at x = x.
O Because Ay is the change in f(x) over an interval x to x + Ax , whereas, over the same interval, dy is the rise
of the line tangent to f(x) at x = x.
Transcribed Image Text:Provide an appropriate response. Why is dy not generally equal to Ay? Because Ay is the slope of f(x) at x + Ax , whereas, dy is the slope of f(x) at x + Ax. O Because dy is the change in f(x) over an interval x to x + Ax , whereas, over the same interval, Ay is the rise of the line tangent to f(x) at x - x. Because Ay is the slope of f(x) at x + Ax , whereas, dy is the slope of the line tangent to f(x) at x = x. O Because Ay is the change in f(x) over an interval x to x + Ax , whereas, over the same interval, dy is the rise of the line tangent to f(x) at x = x.
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