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A copper rod of length 0.19 m is moving with uniform velocity 10 ms-1 parallel to a long straight wire carrying a current of 5A. The rod is perpendicular to the wire with its ends at distance 0.01 m and 0.2 m from it. Calculate the e.m.f. induced 
    Correct answer is '30'. Can you explain this answer?
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    A copper rod of length 0.19 m is moving with uniform velocity 10 ms-1 ...
    Here  Due to motion of element dx in the field. B induced e.m. f. dE = Bvdx Total e.m. f.

    = 30 x 10-6 V = 30 μV
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    A copper rod of length 0.19 m is moving with uniform velocity 10 ms-1 ...
    Here  Due to motion of element dx in the field. B induced e.m. f. dE = Bvdx Total e.m. f.

    = 30 x 10-6 V = 30 μV
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    A copper rod of length 0.19 m is moving with uniform velocity 10 ms-1 parallel to a long straight wire carrying a current of 5A. The rod is perpendicular to the wire with its ends at distance 0.01 m and 0.2 m from it. Calculate the e.m.f. inducedCorrect answer is '30'. Can you explain this answer?
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    A copper rod of length 0.19 m is moving with uniform velocity 10 ms-1 parallel to a long straight wire carrying a current of 5A. The rod is perpendicular to the wire with its ends at distance 0.01 m and 0.2 m from it. Calculate the e.m.f. inducedCorrect answer is '30'. Can you explain this answer? for Physics 2024 is part of Physics preparation. The Question and answers have been prepared according to the Physics exam syllabus. Information about A copper rod of length 0.19 m is moving with uniform velocity 10 ms-1 parallel to a long straight wire carrying a current of 5A. The rod is perpendicular to the wire with its ends at distance 0.01 m and 0.2 m from it. Calculate the e.m.f. inducedCorrect answer is '30'. Can you explain this answer? covers all topics & solutions for Physics 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for A copper rod of length 0.19 m is moving with uniform velocity 10 ms-1 parallel to a long straight wire carrying a current of 5A. The rod is perpendicular to the wire with its ends at distance 0.01 m and 0.2 m from it. Calculate the e.m.f. inducedCorrect answer is '30'. Can you explain this answer?.
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