A long straight wire runs along the z-axis and carries a steady current I in the positive z-direction. There is in addition a static, homogeneous magnetic field B0 = B0 (ˆi + ˆk) everywhere in space. -The points (0, a, 0), (0, 2a, 0), (0, 2a, b), (0, a, b) are the corners of a rectangle; plot it in a new sketch of the system. -Compute the magnetic flux through this rectangle, after stating your choice of unit normal. Remember, there are two sources of magnetic flux
A long straight wire runs along the z-axis and carries a steady current I in the positive z-direction. There is in addition a static, homogeneous magnetic field B0 = B0 (ˆi + ˆk) everywhere in space. -The points (0, a, 0), (0, 2a, 0), (0, 2a, b), (0, a, b) are the corners of a rectangle; plot it in a new sketch of the system. -Compute the magnetic flux through this rectangle, after stating your choice of unit normal. Remember, there are two sources of magnetic flux
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A long straight wire runs along the z-axis and carries a steady current I in the positive z-direction. There is in addition a static, homogeneous magnetic field B0 = B0 (ˆi + ˆk) everywhere in space.
-The points (0, a, 0), (0, 2a, 0), (0, 2a, b), (0, a, b) are the corners of a rectangle; plot it in a new sketch of the system.
-Compute the magnetic flux through this rectangle, after stating your choice of unit normal. Remember, there are two sources of magnetic flux
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