(b) Figure Q.1(b) depicts a circuit for measuring electrical resistance using an ohmmeter. The moving coil meter has a full-scale deflection current, Ifsd, of 500 μA and an internal resistance, Rm, of 420 2. The voltage supplied, denoted as Eb, is 9 Volts. The fixed resistor R, has a resistance of 5 k. Rx Eb 9 V R₁ = 5 k ww Ifsd=500 μA Rm= R₂ 420 Ω Figure Q.1(b): Parallel connection Ohmmeter circuit. (i) Find the value of zero-ohm-control resistor R2.

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(b) Figure Q.1(b) depicts a circuit for measuring electrical resistance using an ohmmeter.
The moving coil meter has a full-scale deflection current, Ifsd, of 500 μA and an
internal resistance, Rm, of 420 2. The voltage supplied, denoted as Eb, is 9 Volts. The
fixed resistor R, has a resistance of 5 k.
Rx
Eb
9 V
R₁ = 5 k
ww
Ifsd=500 μA
Rm=
R₂
420 Ω
Figure Q.1(b): Parallel connection Ohmmeter circuit.
(i)
Find the value of zero-ohm-control resistor R2.
Transcribed Image Text:(b) Figure Q.1(b) depicts a circuit for measuring electrical resistance using an ohmmeter. The moving coil meter has a full-scale deflection current, Ifsd, of 500 μA and an internal resistance, Rm, of 420 2. The voltage supplied, denoted as Eb, is 9 Volts. The fixed resistor R, has a resistance of 5 k. Rx Eb 9 V R₁ = 5 k ww Ifsd=500 μA Rm= R₂ 420 Ω Figure Q.1(b): Parallel connection Ohmmeter circuit. (i) Find the value of zero-ohm-control resistor R2.
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