A surface y = 4 carries current 4A/m along a, ,while an infinitely long filamentary wire carries a current of 87 A in the +z-direction. a) Formulate and calculate the magnetic field flux intensity, H1 at P(5, 12, 8) due to the surface. b) Formulate and calculate the magnetic field flux intensity, H2 at P(5, 12, 8) due to the infinitely long wire. c) Calculate the total magnetic field flux intensity, H at P(5, 12, 8) .

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A surface y = 4 carries current 4A/m along a, , while an
infinitely long filamentary wire carries a current of 87 A
in the +z-direction.
a)
Formulate and calculate the magnetic
field flux intensity, H1 at P(5, 12, 8) due to the
surface.
Formulate and calculate the magnetic
P(5, 12, 8) due to the
b)
field flux intensity, H2 at
infinitely long wire.
c)
Calculate the total magnetic field flux
intensity, H at P(5, 12, 8) .
Transcribed Image Text:A surface y = 4 carries current 4A/m along a, , while an infinitely long filamentary wire carries a current of 87 A in the +z-direction. a) Formulate and calculate the magnetic field flux intensity, H1 at P(5, 12, 8) due to the surface. Formulate and calculate the magnetic P(5, 12, 8) due to the b) field flux intensity, H2 at infinitely long wire. c) Calculate the total magnetic field flux intensity, H at P(5, 12, 8) .
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