A bar of length d 0.8 m is free to slide without friction on horizontal rails as shown in Figure. A uniform magneti c field B the figure. Left ends of the rails are connected to a circuit composed ofresistances, R1 = 250, R2 = 10 N, and R3 = battery with emf ɛ = 120 V, and a switch S. The bar has mass m = resistance R = 50. Ignore all other resistance in the circuit due to connecting wires and the rails. Just after the switch is closed, what is the accelerati on of the %3D = 1.6 T is directed into the plane of 10N, a solenoid with inductance L 0.5 H, a 100 g and %3D %3D %3D %3D bar?
A bar of length d 0.8 m is free to slide without friction on horizontal rails as shown in Figure. A uniform magneti c field B the figure. Left ends of the rails are connected to a circuit composed ofresistances, R1 = 250, R2 = 10 N, and R3 = battery with emf ɛ = 120 V, and a switch S. The bar has mass m = resistance R = 50. Ignore all other resistance in the circuit due to connecting wires and the rails. Just after the switch is closed, what is the accelerati on of the %3D = 1.6 T is directed into the plane of 10N, a solenoid with inductance L 0.5 H, a 100 g and %3D %3D %3D %3D bar?
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Question
![16)
R1
ww
R3x
ww-
Rx x d
R2
A bar of length d = 0.8 m is free to slide without friction on horizontal rails as
shown in Figure. A uniform magneti c field B = 1.6 T is directed into the plane of
the figure. Left ends of the rails are connected to a circuit composed ofresistances,
10 0, and R3 = 10 0 , a solenoid with inductance L = 0.5 H , a
battery with emf ɛ = 120 V, and a switch S. The bar has mass m = 100 g and
resistance R = 50. Ignore all other resistance in the circuit due to connecting
wires and the rails. Just after the switch is closed, what is the accelerati on of the
bar?
=0.87
A unifor
ds of the
100ar
A) 38.4 m/s? B) 17.14 m/s
? C) 8.4 m/s² D) 264 m/s² E) 28 m/s²](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc29b251a-d1a0-4a31-b82a-b3fb0e27fa21%2F4e90d76d-af87-49e1-bd59-dd4a0cae71c8%2Fip49b2z_processed.jpeg&w=3840&q=75)
Transcribed Image Text:16)
R1
ww
R3x
ww-
Rx x d
R2
A bar of length d = 0.8 m is free to slide without friction on horizontal rails as
shown in Figure. A uniform magneti c field B = 1.6 T is directed into the plane of
the figure. Left ends of the rails are connected to a circuit composed ofresistances,
10 0, and R3 = 10 0 , a solenoid with inductance L = 0.5 H , a
battery with emf ɛ = 120 V, and a switch S. The bar has mass m = 100 g and
resistance R = 50. Ignore all other resistance in the circuit due to connecting
wires and the rails. Just after the switch is closed, what is the accelerati on of the
bar?
=0.87
A unifor
ds of the
100ar
A) 38.4 m/s? B) 17.14 m/s
? C) 8.4 m/s² D) 264 m/s² E) 28 m/s²
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