Question

A rectangular circuit is moved at a constant velocity of 3.00 m/s into, through, and then out of a uniform 1.25 Tmagnetic field, as shown in the figure (Figure 1) . The magnetic field region is considerably wider than 50.0 cm

Part A A rectangular circuit is moved at a constant velocity of 3.00 m/s into, through, and then out of a uniform 1.25 T magnetic field, as shown in the figure (Figure 1). The magnetic field region is considerably wider than 50.0 cm Find the direction (clockwise or counterclockwise) of the current induced in the circuit as it is going into the magnetic field (the first case), totally within the magnetic field but still moving (the second case), and moving out of the field (the third case) The current is zero in the first case.counterclockwise in the second case and clockwise in the third case The current is counterclockwise in the first case, zero in the second case and clockwise in the third case, The current is clockwise in the first case, counterclockwise in the second case and zero in the third case, The current is clockwise in the first case, zero in the second case and counterclockwise in the third case, Figure 1 of 1 The current is counterclockwise in the first case, clockwise in the second case and zero in the third case, Submit My Answers Give Up Part B 3.0 m/s B (1.25T) Find the magnitude of the current induced in the circuit as it is going into the magnetic field 12.512 75.0 cm 50.0 cm Submit My Answers Give Up

Part A 

 Find the direction (clockwise or counterclockwise) of the current induced in the circuit as it is going into the magnetic field (the first case), totally within the magnetic field but still moving (the second case), and moving out of the field (the third case) 

The current is zero in the first case.counterclockwise in the second case and clockwise in the third case 

The current is counterclockwise in the first case, zero in the second case and clockwise in the third case, 

The current is clockwise in the first case, counterclockwise in the second case and zero in the third case, 

The current is clockwise in the first case, zero in the second case and counterclockwise in the third case, 

The current is counterclockwise in the first case, clockwise in the second case and zero in the third case, 


Part B

Find the magnitude of the current induced in the circuit as it is going into the magnetic field

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SalutionA The current is clockwise in the first case, zero in the second case and counterclockwise in the third case. 0 12 5

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