A metal stick with mass 0.5 kg and length 0.6 m is at rest horizontally on conducting wires shown below (not attached to the wires). The stick has a resistance of 10 n and it is in a uniform magnetic field (B-2.00 T). Find the acceleration of the metal stick just after the switch is closed. (g-9.8 m/s) 2500 1200 V
A metal stick with mass 0.5 kg and length 0.6 m is at rest horizontally on conducting wires shown below (not attached to the wires). The stick has a resistance of 10 n and it is in a uniform magnetic field (B-2.00 T). Find the acceleration of the metal stick just after the switch is closed. (g-9.8 m/s) 2500 1200 V
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![A metal stick with mass 0.5 kg and length 0.6 m is at rest horizontally on conducting wires
shown below (not attached to the wires). The stick has a resistance of 10 0 and it is in a
uniform magnetic field (B-2.00 T). Find the acceleration of the metal stick just after the
switch is closed. (g-9.8 m/s)
25.0
120.0 V](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0f369caa-1612-4836-a75e-a4d6a8461da6%2Ffadaf13f-05f8-4b68-89f7-f20cdf091b30%2Fetjqgm_processed.png&w=3840&q=75)
Transcribed Image Text:A metal stick with mass 0.5 kg and length 0.6 m is at rest horizontally on conducting wires
shown below (not attached to the wires). The stick has a resistance of 10 0 and it is in a
uniform magnetic field (B-2.00 T). Find the acceleration of the metal stick just after the
switch is closed. (g-9.8 m/s)
25.0
120.0 V
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