The following three problems are related to material found in lessons 5 and 6. Watch the videos for these sections first, and then try to work these problems. Scan and send your solutions (including work!) as a pdf file. Exercise 1. Evaluate the following indefinite integrals. (a) 4z (2-5) dz (Hint. Use the substitution u = 2ª – 5) (b) / In a dr (Hint. Use the substitution u = = In a) (c) / 6xez+1dx on the interval [1, 4 using a Exercise 2. Approximate the area under the curve () right endpoint approximation with 6 rectangles of equal width (i.e., calculate Re). Exercise 3. The graph below shows two regions, each of which is formed by a semicircle. Use familiar formulas from geometry to calculate Jo | f(2)dz. y fx)
The following three problems are related to material found in lessons 5 and 6. Watch the videos for these sections first, and then try to work these problems. Scan and send your solutions (including work!) as a pdf file. Exercise 1. Evaluate the following indefinite integrals. (a) 4z (2-5) dz (Hint. Use the substitution u = 2ª – 5) (b) / In a dr (Hint. Use the substitution u = = In a) (c) / 6xez+1dx on the interval [1, 4 using a Exercise 2. Approximate the area under the curve () right endpoint approximation with 6 rectangles of equal width (i.e., calculate Re). Exercise 3. The graph below shows two regions, each of which is formed by a semicircle. Use familiar formulas from geometry to calculate Jo | f(2)dz. y fx)
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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Question
![The following three problems are related to material found in lessons 5 and 6. Watch the videos
for these sections first, and then try to work these problems. Scan and send your solutions
(including work!) as a pdf file.
Exercise 1. Evaluate the following indefinite integrals.
(a) 4z (2-5) dz (Hint. Use the substitution u = 2ª – 5)
(b) /
In a
dr (Hint. Use the substitution u =
= In a)
(c)
/
6xez+1dx
on the interval [1, 4 using a
Exercise 2. Approximate the area under the curve ()
right endpoint approximation with 6 rectangles of equal width (i.e., calculate Re).
Exercise 3. The graph below shows two regions, each of which is formed by a semicircle. Use
familiar formulas from geometry to calculate
Jo
|
f(2)dz.
y fx)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F664326d3-abb0-4ce0-8c44-19e8263d591e%2F8e8b2ce5-cc06-48de-a8a7-cd40f03217d7%2F0z1zgzs.jpeg&w=3840&q=75)
Transcribed Image Text:The following three problems are related to material found in lessons 5 and 6. Watch the videos
for these sections first, and then try to work these problems. Scan and send your solutions
(including work!) as a pdf file.
Exercise 1. Evaluate the following indefinite integrals.
(a) 4z (2-5) dz (Hint. Use the substitution u = 2ª – 5)
(b) /
In a
dr (Hint. Use the substitution u =
= In a)
(c)
/
6xez+1dx
on the interval [1, 4 using a
Exercise 2. Approximate the area under the curve ()
right endpoint approximation with 6 rectangles of equal width (i.e., calculate Re).
Exercise 3. The graph below shows two regions, each of which is formed by a semicircle. Use
familiar formulas from geometry to calculate
Jo
|
f(2)dz.
y fx)
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