A hot air balloon is shaped like a truncated sphere like the figure. The gases escape through the porous coating whose vector field isF(x, y, z) = (-3y,4x,0). If the radius of the untruncated sphere is 12, calculate the volumetric flux of the gases through the surface

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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A hot air balloon is shaped like a truncated sphere like the figure. The gases escape through the
porous coating whose vector field isF(x, y, z) = (-3y, 4x, 0). If the radius of the untruncated sphere
is 12, calculate the volumetric flux of the gases through the surface
Transcribed Image Text:A hot air balloon is shaped like a truncated sphere like the figure. The gases escape through the porous coating whose vector field isF(x, y, z) = (-3y, 4x, 0). If the radius of the untruncated sphere is 12, calculate the volumetric flux of the gases through the surface
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