Consider two infinitely long straight wires lying in the ry-plane. Wire 1 carries current I in the +â direction and wire 2 carries current I2 in the -ŷ direction. Suppose a magnetic moment u = uz^ is placed at rest at some location (x, y). 1. Calculate the torque felt by the magnetic moment, in terms of u0, 11, 12, µ, x, and/or y. 2. Calculate the potential energy of the magnetic moment in this magnetic field, in terms of µ0, 11, 12, µ, x, and/or y. 3. Čalculate the force exerted by the magnetic field on this magnetic moment, in terms of u0, I1, 12, µ, X, and/or y.

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Consider two infinitely long straight wires lying in the xy-plane. Wire 1 carries current I in the +ê
direction and wire 2 carries current I2 in the -ŷ direction.
Suppose a magnetic moment H = µz° is placed at
rest at some location (x, y).
1. Calculate the torque felt by the magnetic
moment, in terms of u0, 11, 12, µ, x, and/or y.
2. Calculate the potential energy of the magnetic
moment in this magnetic field, in terms of µ0, 11,
12, µ, x, and/or y.
3. Čalculate the force exerted by the magnetic field
on this magnetic moment, in terms of u0, 11, 12, µ,
x, and/or y.
Transcribed Image Text:Consider two infinitely long straight wires lying in the xy-plane. Wire 1 carries current I in the +ê direction and wire 2 carries current I2 in the -ŷ direction. Suppose a magnetic moment H = µz° is placed at rest at some location (x, y). 1. Calculate the torque felt by the magnetic moment, in terms of u0, 11, 12, µ, x, and/or y. 2. Calculate the potential energy of the magnetic moment in this magnetic field, in terms of µ0, 11, 12, µ, x, and/or y. 3. Čalculate the force exerted by the magnetic field on this magnetic moment, in terms of u0, 11, 12, µ, x, and/or y.
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