y B A rod of lengthl = 25 cm and mass m = 50 g lies on a plane inclined at 0 = 36° to the horizontal, as shown in the figure above. A current enters and leaves the rod via light flexible wires which we ignore. For what current magnitud will the rod be in equilibrium in a magnetic field B = 0.453 T? Ignore friction. I = А
y B A rod of lengthl = 25 cm and mass m = 50 g lies on a plane inclined at 0 = 36° to the horizontal, as shown in the figure above. A current enters and leaves the rod via light flexible wires which we ignore. For what current magnitud will the rod be in equilibrium in a magnetic field B = 0.453 T? Ignore friction. I = А
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![y
B
A rod of length l
50 g lies on a plane inclined at 0 = 36° to the horizontal, as shown in the
figure above. A current enters and leaves the rod via light flexible wires which we ignore. For what current magnitude
25 cm and mass m =
will the rod be in equilibrium in a magnetic field B = 0.453 T? Ignore friction.
I=
А](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F481b728f-83e9-4797-963a-a0a2305c843e%2F93447a65-1efb-489f-9af4-242ba17bc120%2Fjq4mluu_processed.png&w=3840&q=75)
Transcribed Image Text:y
B
A rod of length l
50 g lies on a plane inclined at 0 = 36° to the horizontal, as shown in the
figure above. A current enters and leaves the rod via light flexible wires which we ignore. For what current magnitude
25 cm and mass m =
will the rod be in equilibrium in a magnetic field B = 0.453 T? Ignore friction.
I=
А
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