The single rectangular loop of wire shown on the figure has a resistance of 2.0 Q and is lying on the. subjected to a uniform magnetic field of magnitude 3.0 T as shown. plane. The wire is 25 cm a) Calculate the torque on the wire due to the magnetic field (magnitude and direction) when the switch is closed.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The single rectangular loop of wire shown on the figure has a resistance of 2.0 N and is lying on the xy plane. The wire is
subjected to a uniform magnetic field of magnitude 3.0 T as shown.
25 cm
a) Calculate the torque on the wire due to the
magnetic field (magnitude and direction) when
the switch is closed.
40 cm
N
Battery (emf = 24 V)
Transcribed Image Text:The single rectangular loop of wire shown on the figure has a resistance of 2.0 N and is lying on the xy plane. The wire is subjected to a uniform magnetic field of magnitude 3.0 T as shown. 25 cm a) Calculate the torque on the wire due to the magnetic field (magnitude and direction) when the switch is closed. 40 cm N Battery (emf = 24 V)
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