(i) Calculate the magnitude of the induced current in the circuit. (ii) State the direction of induced current in the metal bar.
(i) Calculate the magnitude of the induced current in the circuit. (ii) State the direction of induced current in the metal bar.
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(i) Calculate the magnitude of the induced current in the circuit.
(ii) State the direction of induced current in the metal bar.
![(b)
FIGURE 4 shows a 0.8 m long metal bar being pulled to the right at a steady speed of 5.8 ms1 perpendicular to a 667 mT uniform magnetic field. The 5.8 m parallel metal rails are connected to a 6.3 0
resistor.
RAJAH 4 menunjukkan satu bar logam 0.8 m panjang ditarik ke kanan dengan laju tetap 5.8 ms1 pada 667 mT medan magnet seragam secara menegak. Landasan logam 5.8 m panjang selari
disambung pada perintang 6.3 0.
Metal Bar
Metal Rail
0.6 m
FIGURE 4/ RAJAH 4](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9bafb659-69f4-4c18-b4fe-e4f11ad7116c%2Fe201965c-53a4-40b3-b3a6-052bce188fad%2Fdjsdyv7_processed.png&w=3840&q=75)
Transcribed Image Text:(b)
FIGURE 4 shows a 0.8 m long metal bar being pulled to the right at a steady speed of 5.8 ms1 perpendicular to a 667 mT uniform magnetic field. The 5.8 m parallel metal rails are connected to a 6.3 0
resistor.
RAJAH 4 menunjukkan satu bar logam 0.8 m panjang ditarik ke kanan dengan laju tetap 5.8 ms1 pada 667 mT medan magnet seragam secara menegak. Landasan logam 5.8 m panjang selari
disambung pada perintang 6.3 0.
Metal Bar
Metal Rail
0.6 m
FIGURE 4/ RAJAH 4
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