The AC Bridge shown below is used to measure an unknown inductance, Lx and its internal resistance, Rx. The Bridge parameters are R1 = 20,000 ohms, R2 = 50,000 ohms, C2 = 0.003 µf, w = 105 radians per sec. C1 is adjustable from 10 pf to 150 pf, and R3 is adjustable from 0 to 10,000 ohms. At Balance, I. Derive expressions for Rx and Lx in terms of w, R1, R2, R3, C1, and C2. II. Determine the largest values of Rx and Lx that are measurable with the given parameters.

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The AC Bridge shown below is used to measure an unknown inductance, Lx and its internal resistance, Rx. The Bridge parameters are R1 = 20,000 ohms, R2 = 50,000 ohms, C2 = 0.003 µf, w = 105 radians per sec. C1 is adjustable from 10 pf to 150 pf, and R3 is adjustable from 0 to 10,000 ohms. At Balance, I. Derive expressions for Rx and Lx in terms of w, R1, R2, R3, C1, and C2. II. Determine the largest values of Rx and Lx that are measurable with the given parameters.

Ry. The Bridge parameters are R, = 20,000 ohms, R2 = 50,000 ohms, C2 = 0.003 µf, w = 10$ radians
per sec. C, is adjustable from 10 pf to 150 pf, and R3 is adjustable from 0 to 10,000 ohms. At Balance,
1. Derive expressions for Rx and Lx in terms of o, R1, R2, R3, C1, and C2.
Determine the largest values of R, and Lx that are measurable with the given parameters.
%3D
The AC Bridge shown below is used to measure an unknown inductance, Lx and its internal resistance,
I.
R2
C2
Vs
R3
ll
Transcribed Image Text:Ry. The Bridge parameters are R, = 20,000 ohms, R2 = 50,000 ohms, C2 = 0.003 µf, w = 10$ radians per sec. C, is adjustable from 10 pf to 150 pf, and R3 is adjustable from 0 to 10,000 ohms. At Balance, 1. Derive expressions for Rx and Lx in terms of o, R1, R2, R3, C1, and C2. Determine the largest values of R, and Lx that are measurable with the given parameters. %3D The AC Bridge shown below is used to measure an unknown inductance, Lx and its internal resistance, I. R2 C2 Vs R3 ll
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