Use the Shell Balance approach for Momentum conservation, create a sketch of a control volume in Cartesian coordinates, and indicate all fluxes and forces in your sketch. Use this Shell Balance to derive the following Momentum conservation equations. x-motion: p(u y-motion: p(u ax +v) = - + μ (3+0) + Bx ax +v) = − ² +μ (0²2² +0²2) - - + By

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Use the Shell Balance approach for Momentum conservation, create a sketch of a
control volume in Cartesian coordinates, and indicate all fluxes and forces in your sketch.
Use this Shell Balance to derive the following Momentum conservation equations.
Ju
x-motion: p(u + v) = -x +
+μl
ax
ax
y-motion: p(u
Əv
+ v) = - 3² -
ду
μ
(a²u
Əx²
a²v
əx²
J²u
+ + Bx
ay²,
+372) + By
Transcribed Image Text:Use the Shell Balance approach for Momentum conservation, create a sketch of a control volume in Cartesian coordinates, and indicate all fluxes and forces in your sketch. Use this Shell Balance to derive the following Momentum conservation equations. Ju x-motion: p(u + v) = -x + +μl ax ax y-motion: p(u Əv + v) = - 3² - ду μ (a²u Əx² a²v əx² J²u + + Bx ay², +372) + By
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