4) Metal bar of length 2. cm moves with velocity 1. cm/s towards the right in a constant magnetic field of 0.2 T, x=5cm, R=5.. a) Find the magnetic flux through the conducting loop. b) Calculate the induced emf = -d/dt. c) Calculate the current I through the resistance d) Calculate the electric power P of this current. e) Calculate the applied force Fapp. X x x x Bin √x app

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Chapter25: Electromagnetic Induction
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Problem 48A
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Solve d,e
4) Metal bar of length 2. cm moves with velocity
1. cm/s towards the right in a constant magnetic
field of 0.2 T, x=5cm, R=5.02.
a) Find the magnetic flux through the
conducting loop.
b) Calculate the induced emf E= -do/dt.
c) Calculate the current I through the resistance
d) Calculate the electric power P of this current.
e) Calculate the applied force Fapp.
x
lx
x
x
x X
x
x
X X
x
x
app
Transcribed Image Text:4) Metal bar of length 2. cm moves with velocity 1. cm/s towards the right in a constant magnetic field of 0.2 T, x=5cm, R=5.02. a) Find the magnetic flux through the conducting loop. b) Calculate the induced emf E= -do/dt. c) Calculate the current I through the resistance d) Calculate the electric power P of this current. e) Calculate the applied force Fapp. x lx x x x X x x X X x x app
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