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In the Maxwell bridge, as shown in the figure, the values of resistance and inductance Rx of a coil are to be Lx calculated values are shown in the figure at balance. The values of Rx and Lx will respectively be-
  • a)
    37.5 ohm, 75 mH
  • b)
    75 ohm, 75 mH
  • c)
    375 ohm, 75 mH
  • d)
    75 ohm, 150 mH
Correct answer is option 'C'. Can you explain this answer?
Verified Answer
In the Maxwell bridge, as shown in the figure, the values of resistanc...
Rs = R2R3/R4  = (2000*750)/4000
= 375Ω
L = R2R3C4 = 2000*750*0.5*10-6
= 75mH
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In the Maxwell bridge, as shown in the figure, the values of resistance and inductance Rxof a coil are to be Lxcalculated values are shown in the figure at balance. The values of Rxand Lxwill respectively be-a)37.5 ohm, 75 mHb)75 ohm, 75 mHc)375 ohm, 75 mHd)75 ohm, 150 mHCorrect answer is option 'C'. Can you explain this answer?
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In the Maxwell bridge, as shown in the figure, the values of resistance and inductance Rxof a coil are to be Lxcalculated values are shown in the figure at balance. The values of Rxand Lxwill respectively be-a)37.5 ohm, 75 mHb)75 ohm, 75 mHc)375 ohm, 75 mHd)75 ohm, 150 mHCorrect answer is option 'C'. Can you explain this answer? for SSC 2024 is part of SSC preparation. The Question and answers have been prepared according to the SSC exam syllabus. Information about In the Maxwell bridge, as shown in the figure, the values of resistance and inductance Rxof a coil are to be Lxcalculated values are shown in the figure at balance. The values of Rxand Lxwill respectively be-a)37.5 ohm, 75 mHb)75 ohm, 75 mHc)375 ohm, 75 mHd)75 ohm, 150 mHCorrect answer is option 'C'. Can you explain this answer? covers all topics & solutions for SSC 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for In the Maxwell bridge, as shown in the figure, the values of resistance and inductance Rxof a coil are to be Lxcalculated values are shown in the figure at balance. The values of Rxand Lxwill respectively be-a)37.5 ohm, 75 mHb)75 ohm, 75 mHc)375 ohm, 75 mHd)75 ohm, 150 mHCorrect answer is option 'C'. Can you explain this answer?.
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