Inx Find the derivative of F(x) = √ t dt. ○ F'(x) = ln x 2 F' (x) = ½ (ln x) ² ○ F' (x): ln x = x О ○ F' (x) = ½/nx Previous Page Next Page Submit Quiz 0 of 25 questions saved Suppose we would like to approximate 33 f(x)dx using six (6) midpoint rectangles of equal width. What is the width of those rectangles, i.e. ▲x? Δη Δη Ax 11 = 5 5 11 = - 10/7 10/0 5 6 Δη = Previous Page 65 65 Next Page Submit Quiz 0 of 25 questions saved Page 13

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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Inx
Find the derivative of F(x) = √ t dt.
○ F'(x) = ln x
2
F' (x) = ½ (ln x) ²
○
F' (x):
ln x
=
x
О
○ F' (x) = ½/nx
Previous Page
Next Page
Submit Quiz
0 of 25 questions saved
Transcribed Image Text:Inx Find the derivative of F(x) = √ t dt. ○ F'(x) = ln x 2 F' (x) = ½ (ln x) ² ○ F' (x): ln x = x О ○ F' (x) = ½/nx Previous Page Next Page Submit Quiz 0 of 25 questions saved
Suppose we would like to approximate 33 f(x)dx using six (6) midpoint
rectangles of equal width. What is the width of those rectangles, i.e. ▲x?
Δη
Δη
Ax
11
=
5
5
11
=
-
10/7 10/0
5
6
Δη
=
Previous Page
65
65
Next Page
Submit Quiz
0 of 25 questions saved
Page 13
Transcribed Image Text:Suppose we would like to approximate 33 f(x)dx using six (6) midpoint rectangles of equal width. What is the width of those rectangles, i.e. ▲x? Δη Δη Ax 11 = 5 5 11 = - 10/7 10/0 5 6 Δη = Previous Page 65 65 Next Page Submit Quiz 0 of 25 questions saved Page 13
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