Calculate Theoretical Impedance by formula Z

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Calculate Theoretical Impedance by formula Z 

Exp 5. Measurement of the Impedance of a Cable ONLINE SIMULATION.doc [Compatibility Mode] - Microsoft Word (Product Activation Failed)
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TABLE.1
|Z| = /R? +(X, - Xc)°|
Theoretical
A (Ctrl) -
Practical
Frequency
(f)
Supply
Voltage (V)
Impedance by
formula
Current
SI.No
Impedance
Z=
(1)
Rms(mA)
0.7973m
Z=
10 Khz
10.0338
8 Vrms
1
A
0.7915m
A
20Khz
10.1073
8 Vrms
2
0.7866m
A
30Khz
10.1703
8 Vrms
50Khz
10.5124
0.7610m
A
0.7322m
8 Vrms
70Khz
10.9259
8 Vrms
A
6
100Khz
0.6753m
11.8465
8 Vrms
A
7
500Khz
8 Vrms
8
1Mhz
8 Vrms
CONCLUSION:
主
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English (U.S.)
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W
O O G J)) ENG
3/16/2021
345
Transcribed Image Text:Exp 5. Measurement of the Impedance of a Cable ONLINE SIMULATION.doc [Compatibility Mode] - Microsoft Word (Product Activation Failed) File Home Insert Page Layout References Mailings Review View Cut A Find- - 12 - A A Aa Arial dаBьСсDe AaBbC AаBbCi AаBbC AаBbC AаBbCc AaBЬСс AаBbСс AаBbCс AaBbCс a Copy ah. Replace Paste B I U - abe x, x 1 Heading 1 T Heading 2 T Heading 3 1 Heading 4 1 Heading 5 T Heading 6 1 Heading 7 1 Heading 8 1 Heading 9 Change Styles Emphasis Format Painter E Select - Clipboard Font Paragraph Styles Editing TABLE.1 |Z| = /R? +(X, - Xc)°| Theoretical A (Ctrl) - Practical Frequency (f) Supply Voltage (V) Impedance by formula Current SI.No Impedance Z= (1) Rms(mA) 0.7973m Z= 10 Khz 10.0338 8 Vrms 1 A 0.7915m A 20Khz 10.1073 8 Vrms 2 0.7866m A 30Khz 10.1703 8 Vrms 50Khz 10.5124 0.7610m A 0.7322m 8 Vrms 70Khz 10.9259 8 Vrms A 6 100Khz 0.6753m 11.8465 8 Vrms A 7 500Khz 8 Vrms 8 1Mhz 8 Vrms CONCLUSION: 主 Page: 8 of 9 Words: 822 English (U.S.) 目 昆 目 100% - (+) 7:55 PM P Type here to search W O O G J)) ENG 3/16/2021 345
Ipp 1.9104mA
IRMS 677.25HA
Lay 298.28FA
PR1
100.00kHz
C1
R1
L1
1
3
10k2
10mH
0.1µF
V1
8Vrms
100kHz
0°
Transcribed Image Text:Ipp 1.9104mA IRMS 677.25HA Lay 298.28FA PR1 100.00kHz C1 R1 L1 1 3 10k2 10mH 0.1µF V1 8Vrms 100kHz 0°
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