Verifying Stokes’ Theorem Verify that the line integral and the surface integral of Stokes ’ Theorem are equal for the following vector fields, surfaces S. and closed curves C. Assume that C has counterclockwise orientation and S has a consistent orientation. 7. F = 〈 x , y , z 〉 ; S is the paraboloid z = 8 – x 2 – y 2 , for 0 ≤ z ≤ 8, and C is the circle x 2 + y 2 = 8 in the xy -plane.
Verifying Stokes’ Theorem Verify that the line integral and the surface integral of Stokes ’ Theorem are equal for the following vector fields, surfaces S. and closed curves C. Assume that C has counterclockwise orientation and S has a consistent orientation. 7. F = 〈 x , y , z 〉 ; S is the paraboloid z = 8 – x 2 – y 2 , for 0 ≤ z ≤ 8, and C is the circle x 2 + y 2 = 8 in the xy -plane.
Solution Summary: The author explains the Stokes' Theorem, wherein the line integral and surface integral are equal.
Verifying Stokes’ TheoremVerify that the line integral and the surface integral of Stokes’ Theorem are equal for the following vector fields, surfaces S. and closed curves C. Assume that C has counterclockwise orientation and S has a consistent orientation.
7.F = 〈x, y, z〉 ; S is the paraboloid z = 8 – x2 – y2, for 0 ≤ z ≤ 8, and C is the circle x2 + y2 = 8 in the xy-plane.
Quantities that have magnitude and direction but not position. Some examples of vectors are velocity, displacement, acceleration, and force. They are sometimes called Euclidean or spatial vectors.
Two cables tied together at C are loaded as shown. Given: Q = 130 lb.
8
30°
C
B
Q
3
4
Draw the free-body diagram needed to determine the range of values of P for which both cables remain taut.
Cable AB is 103 ft long and the tension in the cable is 3900 lb.
56 ft
A
50°
20°
B
x
C
Identify the angles 0.0, and 8, that define the direction of force.
1
By
N
2
Match each of the options above to the items below.
142.1°
57.1°
73.3°
3
8.
In the given figure, P = 51 lb .
65°
C
25°
35°
75 lb
P
Determine the corresponding magnitude of the resultant.
The corresponding magnitude of the resultant is|
lb.
Chapter 17 Solutions
Calculus: Early Transcendentals, Books a la Carte, and MyLab Math with Pearson eText -- Title-Specific Access Card Package (3rd Edition)
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