Part of a single rectangular loop of wire with dimensions shown in the (Figure 1) is situated inside a region of uniform magnetic field of 0.810 T. The total resistance of the loop is 0.490 . Calculate the force required to pull the loop from the field (to the right) at a constant velocity of 3.40

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Part of a single rectangular loop of
wire with dimensions shown in the
(Figure 1) is situated inside a region of
uniform magnetic field of 0.810 T.
The total resistance of the loop is
0.490 . Calculate the force required
to pull the loop from the field (to the
right) at a constant velocity of 3.40
m/s. Neglect gravity.
Express your answer to three
significant figures and include the
appropriate units.
X
X
X
X
X
X X X
0.350 m X X X X
X X X X
X
X
X
X
X
X X X'
-0.750 m
Transcribed Image Text:Part of a single rectangular loop of wire with dimensions shown in the (Figure 1) is situated inside a region of uniform magnetic field of 0.810 T. The total resistance of the loop is 0.490 . Calculate the force required to pull the loop from the field (to the right) at a constant velocity of 3.40 m/s. Neglect gravity. Express your answer to three significant figures and include the appropriate units. X X X X X X X X 0.350 m X X X X X X X X X X X X X X X X' -0.750 m
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