R1 1.0kn 3.536 Vrms ~10kH z 0° [L1 100m bt TT 10nF Figure 1 2. Set the frequency at 10kHz. 3. Connect channel 1 input of the oscilloscope in points (a b). Set the output of the signal generator to have Vs= 10 Vp-p. 4. Connect Channel 2 of the oscilloscope in points (c.b) and measure the voltage across the resistor VR(P-p)= volts 5. Change the position of the resistor and capacitor, then measure the voltage across the сaрacitor. Vclp-p)= volts 6. Change the position of the capacitor and inductor , then measure the voltage across the inductor.

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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R1
1.0kn
3.536 Vrms
~ 10kH z
0,
L1
CT
10 F
Figure 1
2. Set the frequency at 10kHz.
3. Connect channel 1 input of the oscilloscope in points (a b). Set the output of the signal
generator to have Vs= 10 Vp-p.
4. Connect Channel 2 of the oscilloscope in points (c.b) and measure the voltage across the
resistor
VR(P-p)=
volts
5. Change the position of the resistor and capacitor, then measure the voltage across the
сaрacitor.
Vclp-p)=
volts
6. Change the position of the capacitor and inductor, then measure the voltage across the
inductor.
VL(p-p)=.
volts
Transcribed Image Text:R1 1.0kn 3.536 Vrms ~ 10kH z 0, L1 CT 10 F Figure 1 2. Set the frequency at 10kHz. 3. Connect channel 1 input of the oscilloscope in points (a b). Set the output of the signal generator to have Vs= 10 Vp-p. 4. Connect Channel 2 of the oscilloscope in points (c.b) and measure the voltage across the resistor VR(P-p)= volts 5. Change the position of the resistor and capacitor, then measure the voltage across the сaрacitor. Vclp-p)= volts 6. Change the position of the capacitor and inductor, then measure the voltage across the inductor. VL(p-p)=. volts
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