The motion of a liquid in a cylindrical container of radius 3 is described by the velocity field F(x, y, z). Find (curl F) · N dS, where S is the upper surface of the cylindrical container. F(x, y, z) = – + 4k

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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The motion of a liquid in a cylindrical container of radius 3 is described by the velocity field F(xyz). Find 
 
 
S
 
 
 
(curl F) · N dS,
 where S is the upper surface of the cylindrical container.
F(x, y, z) = − 
1
9
y3i + 
1
9
x3j + 4k
8. [-/1 Points]
DETAILS
LARCALC11 15.8.017.
MY NOTES
ASK YOUR TEACHER
PRACTICE ANOTHER
The motion of a liquid in a cylindrical container of radius 3 is described by the velocity field F(x, y, z). Find
(curl F) · N ds, where S is the upper surface of the
cylindrical container.
F(x, y, z) = -
+ 4k
+
Transcribed Image Text:8. [-/1 Points] DETAILS LARCALC11 15.8.017. MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER The motion of a liquid in a cylindrical container of radius 3 is described by the velocity field F(x, y, z). Find (curl F) · N ds, where S is the upper surface of the cylindrical container. F(x, y, z) = - + 4k +
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