A conducting cylindrical rod (blue) is able to slide on two perfect conductors that are placed in a V-formation as seen in the figure. This creates a triangular loop. The rod is being pulled with a force F that causes it to move with constant speed v =3.9 m/s . The system is in a uniform magnetic field, B =1.2 T. The angle 0o is 30°. Part A- Electromotive force What is the magnitude of the electromotive force generated in the circuit when the rod is x =0.18 m distance away from the vertex of the V-formation?

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Part B - Induced current
What is the current flowing in the circuit when the rod is x =0.18 m distance away from the vertex of the V-formation? The resistivity of the rod is p = 10- Nm and its radius is 1mm.
Part C - Force
is
magnitude
the
pulling the rod, wher
he rod is x =
8 m
away fro
the vertex of
V-formation?
Transcribed Image Text:Part B - Induced current What is the current flowing in the circuit when the rod is x =0.18 m distance away from the vertex of the V-formation? The resistivity of the rod is p = 10- Nm and its radius is 1mm. Part C - Force is magnitude the pulling the rod, wher he rod is x = 8 m away fro the vertex of V-formation?
Item 1
1 of 8 I
A conducting cylindrical rod (blue) is able to slide on two perfect conductors that are placed in a V-formation as seen
in the figure. This creates a triangular loop. The rod is being pulled with a force F that causes it to move with
constant speed v =3.9 m/s. The system is in a uniform magnetic field, B =1.2T. The angle 0o is 30°.
Part A - Electromotive force
What is the magnitude of the electromotive force generated in the circuit when the rod is x =0.18 m distance away from the vertex of the V-formation?
Transcribed Image Text:Item 1 1 of 8 I A conducting cylindrical rod (blue) is able to slide on two perfect conductors that are placed in a V-formation as seen in the figure. This creates a triangular loop. The rod is being pulled with a force F that causes it to move with constant speed v =3.9 m/s. The system is in a uniform magnetic field, B =1.2T. The angle 0o is 30°. Part A - Electromotive force What is the magnitude of the electromotive force generated in the circuit when the rod is x =0.18 m distance away from the vertex of the V-formation?
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