The rod is kept in a magnetic field of B 0.048T as shown in the figure. Now if we move the rod at a velocity of v = 2.5sin10 t m/sec, then the indued emf in the rod will be %3D Rod X-0.2 O 0.098 V -0.098 V O 0.03 V Oov
The rod is kept in a magnetic field of B 0.048T as shown in the figure. Now if we move the rod at a velocity of v = 2.5sin10 t m/sec, then the indued emf in the rod will be %3D Rod X-0.2 O 0.098 V -0.098 V O 0.03 V Oov
Electricity for Refrigeration, Heating, and Air Conditioning (MindTap Course List)
10th Edition
ISBN:9781337399128
Author:Russell E. Smith
Publisher:Russell E. Smith
Chapter7: Alternating Current, Power Distribution, And Voltage Systems
Section: Chapter Questions
Problem 11RQ
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![The rod is kept in a magnetic field of B = 0.04IT as shown in the figure. Now if we move
the rod at a velocity of v 2.5sin10 t m/sec, then the indued emf in the rod will be
%3D
Rod
X-0.2
O 0.098 V
-0.098 V
O 0.03 V
O ov](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc2c6ad9c-86fa-44de-b00b-77ebb3004a47%2Fbdadfc55-70a6-4889-84d8-94299be4c7d6%2Fv64rk4d_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The rod is kept in a magnetic field of B = 0.04IT as shown in the figure. Now if we move
the rod at a velocity of v 2.5sin10 t m/sec, then the indued emf in the rod will be
%3D
Rod
X-0.2
O 0.098 V
-0.098 V
O 0.03 V
O ov
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