Problem 1.33 Test Stokes' theorem for the function v = (xy)&+ (2yz) ŷ +(3zx)î, using the triangular shaded area of Fig. 1.34. Problem 1.34 Check Corollary 1 by using the same function and boundary line as in Ex, 1.11, but integrating over the five sides of the cube in Fig. 1.35. The back of the cube is open. A(v) (iv) (iii) y (i) 2 y (ii) Figurc 1.34 Figure 1.35

Calculus: Early Transcendentals
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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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Problem 1.33 Test Stokes' theorem for the function v = (xy)& +(2yz) ŷ +(3zx) î, using the
triangular shaded area of Fig. 1.34.
Problem 1.34 Check Corollary I by using the same function and boundary line as in Ex, 1.11,
but integrating over the five sides of the cube in Fig. 1.35, The back of the cube is open.
4(v)
(iv)
(ii)
y
y
V (ii)
Figure 1.34
Figure 1.35
11:32 AM
P Type here to search
19°C
면 ENG
10/29/2021
Transcribed Image Text:Watch Temptation Island Season po Griffiths_Fundamental_Theorems x O File | C:/Users/27621/Documents/PHY222/New%20folder/Griffiths_Fundamental_Theorems_3ed.pdf D Page view A Read aloud O Add text V Draw 9 Highlight O Erase 9 of 9 Problem 1.33 Test Stokes' theorem for the function v = (xy)& +(2yz) ŷ +(3zx) î, using the triangular shaded area of Fig. 1.34. Problem 1.34 Check Corollary I by using the same function and boundary line as in Ex, 1.11, but integrating over the five sides of the cube in Fig. 1.35, The back of the cube is open. 4(v) (iv) (ii) y y V (ii) Figure 1.34 Figure 1.35 11:32 AM P Type here to search 19°C 면 ENG 10/29/2021
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