(ohms) X (ohms) angle mag (V) angle (V) angle (mA) 500 - 3183.0987 10K - j3183.0987 2.2869 17.6568 22.8690 17.6568 7.2795 -72.3432 1000 -1591.5494 10K -j1591.5494 2.3702 9.0431 23.7020 9.0431 3.7794 -80.9569 2000 -795.7747 10K -j795.7747 2.3924 4.5499 23.9240 4.5499 1.9038 -85.450. 4000 -397.8874 10K -j397.8874 2.3981 2.2785 23.9810 2.2785 0.9542 -87.7215 8000 -198.9437 10K -j198.9437 2.3995 1.1397 23.9950 1.1397 0.4774 -88.860

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.1MCQ: The rms value of v(t)=Vmaxcos(t+) is given by a. Vmax b. Vmax/2 c. 2Vmax d. 2Vmax
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Describe what happens to the current in this RC series circuit as the frequency increases. Explain in general terms why the observed change should occur. (5 sentences)
Part 1: Computed Values
For this part of the experiment, calculate the data needed in the table below based on the circuit
shown above.
ZTotal (ohms)
ITotal (RMS)
VR (RMS)
Vc (RMS)
Freq
Xc (ohms)
R
(Hz)
mag
mag
X (ohms)
angle
mag (V)| angle
(V)
angle
(ohms)
(mA)
500
- 3183.0987
10K
- j3183.0987
2.2869| 17.6568
22.8690
17.6568 7.2795 | -72.3432
1000
-1591.5494
10K
-j1591.5494 | 2.3702
9.0431
23.7020 9.0431
3.7794
-80.9569
2000
-795.7747
10K
-j795.7747
2.3924
4.5499
23.9240
4.5499
1.9038
-85.4501
4000
-397.8874
10K
-j397.8874
2.3981
2.2785
23.9810 2.2785
0.9542
-87.7215
8000
-198.9437
10K
-j198.9437
2.3995
1.1397
23.9950
1.1397
0.4774
-88.8603
Part 2: Measured Values
For this part of the experiment, measure the values needed on the table below through the
simulation on Multisim Live.
ITotal
ZTotal (ohms)
VR (RMS)
Vc (RMS)
Freq
(RMS)
Xc (ohms)
(Hz)
R
mag (mA)
X (ohms)
mag (V)
mag (V)
(ohms)
500
-3183.0987
10K
-j3183. 0987
2.2876
22.876
7.2583
1000
-1591.5494
10K
-j1591.5494
2.3704
23.704
3.7604
2000
-795.7747
10K
-j795.7747
2.3925
23.925
1.8978
4000
-397.8874
10K
-j397.8874
2.3981
23.981
0.9511
8000
-198.9437
10K
-j198.9437
2.3995
23.995
0.4758
Transcribed Image Text:Part 1: Computed Values For this part of the experiment, calculate the data needed in the table below based on the circuit shown above. ZTotal (ohms) ITotal (RMS) VR (RMS) Vc (RMS) Freq Xc (ohms) R (Hz) mag mag X (ohms) angle mag (V)| angle (V) angle (ohms) (mA) 500 - 3183.0987 10K - j3183.0987 2.2869| 17.6568 22.8690 17.6568 7.2795 | -72.3432 1000 -1591.5494 10K -j1591.5494 | 2.3702 9.0431 23.7020 9.0431 3.7794 -80.9569 2000 -795.7747 10K -j795.7747 2.3924 4.5499 23.9240 4.5499 1.9038 -85.4501 4000 -397.8874 10K -j397.8874 2.3981 2.2785 23.9810 2.2785 0.9542 -87.7215 8000 -198.9437 10K -j198.9437 2.3995 1.1397 23.9950 1.1397 0.4774 -88.8603 Part 2: Measured Values For this part of the experiment, measure the values needed on the table below through the simulation on Multisim Live. ITotal ZTotal (ohms) VR (RMS) Vc (RMS) Freq (RMS) Xc (ohms) (Hz) R mag (mA) X (ohms) mag (V) mag (V) (ohms) 500 -3183.0987 10K -j3183. 0987 2.2876 22.876 7.2583 1000 -1591.5494 10K -j1591.5494 2.3704 23.704 3.7604 2000 -795.7747 10K -j795.7747 2.3925 23.925 1.8978 4000 -397.8874 10K -j397.8874 2.3981 23.981 0.9511 8000 -198.9437 10K -j198.9437 2.3995 23.995 0.4758
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