No Battery: A metal rod is dragged along two parallel rails in a uniform 0.36 T magnetic field, as shown in the figure below. The rails and the field extend for a total distance of 1.53 m. A voltmeter connects the two rails, which are 12 cm apart. X X X X X X X X X V X X X X x The rod is dragged to the right at a constant speed of 3.00 m/s. What will the voltmeter register as the rod passes the halfway point? A positive voltage indicates a clockwise current.)

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No Battery: A metal rod is dragged along two parallel rails in a uniform 0.36 T magnetic field, as shown in the figure below. The rails
and the field extend for a total distance of 1.53 m. A voltmeter connects the two rails, which are 12 cm apart.
V
X X X X
X X X X X
The rod is dragged to the right at a constant speed of 3.00 m/s. What will the voltmeter register as the rod passes the halfway point?
(A positive voltage indicates a clockwise current.)
Transcribed Image Text:No Battery: A metal rod is dragged along two parallel rails in a uniform 0.36 T magnetic field, as shown in the figure below. The rails and the field extend for a total distance of 1.53 m. A voltmeter connects the two rails, which are 12 cm apart. V X X X X X X X X X The rod is dragged to the right at a constant speed of 3.00 m/s. What will the voltmeter register as the rod passes the halfway point? (A positive voltage indicates a clockwise current.)
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