b) The magnetic vector potential in free space is given by: A(p,Ø, z) = 10e-3PCOS40 a, (wb/m] i)- Find the magnetic field intensity at the point P (2, ,-3). ii)- Calculate the magnetic flux Y through p = 1, søs and 0szS2 iii)- Calculate the volume current density 3 that produce the H ficld %3D
b) The magnetic vector potential in free space is given by: A(p,Ø, z) = 10e-3PCOS40 a, (wb/m] i)- Find the magnetic field intensity at the point P (2, ,-3). ii)- Calculate the magnetic flux Y through p = 1, søs and 0szS2 iii)- Calculate the volume current density 3 that produce the H ficld %3D
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![b) The magnetic vector potential in free space is given by: A(p,0, z) = 10e-3Pcos40 a, (wb/m)
i)- Find the magnetic field intensity at the point P (2, -3).
ii)- Calculate the magnetic flux Y through p 1, sos and Oszs2
%3D
iii)- Calculate the volume current density 3 that produce the H field](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff3488646-1183-4583-b1de-a794f99518bb%2F652a7f6e-5412-4cde-b8b4-da5792ee5414%2Fa30mnkf_processed.jpeg&w=3840&q=75)
Transcribed Image Text:b) The magnetic vector potential in free space is given by: A(p,0, z) = 10e-3Pcos40 a, (wb/m)
i)- Find the magnetic field intensity at the point P (2, -3).
ii)- Calculate the magnetic flux Y through p 1, sos and Oszs2
%3D
iii)- Calculate the volume current density 3 that produce the H field
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