4) Compare E and VR in part II. Is this result reasonable. Justify your answer. 5) Compare V and Vc in part II. Is this result reasonable. Justify your answer. 6) Is the phase o measured in part II...


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4) Compare E and VR in part II. Is this result reasonable. Justify your answer.<br>5) Compare V and Vc in part II. Is this result reasonable. Justify your answer.<br>6) Is the phase o measured in part II reasonable. Justify your answer.<br>

Extracted text: 4) Compare E and VR in part II. Is this result reasonable. Justify your answer. 5) Compare V and Vc in part II. Is this result reasonable. Justify your answer. 6) Is the phase o measured in part II reasonable. Justify your answer.
Data Sheet<br>10002<br>-_a 7mH<br>047uF<br>R=<br>PART I<br>phasor<br>f-1kHz<br>V..<br>Vc =<br>Xc=34002<br>E =7.0 Vimg<br>VR<br>6.9 EV<br>E = sqrt((Vr-Vc) + V)=<br>O = tan

Extracted text: Data Sheet 10002 -_a 7mH 047uF R= PART I phasor f-1kHz V.. Vc = Xc=34002 E =7.0 Vimg VR 6.9 EV E = sqrt((Vr-Vc) + V)= O = tan" (V-Ve)/Va) = 71,40 ī=Ins f=10kHz 1,82 X=16402 phaser Va = S. 49 E = 10,49 +56.70 =549 9,55 JR E - sqrt((V-Ve) + Va)= - tan (V-Va/Va) = 54.9 A+ 15.755 =36. At T= 100NS PART II Vc 27043h42 fom V =5.27 Ve=5.14 7,22 Va = E- F77.62 fo'- 1/2x*sqrt{LC))=_967H2

Jun 11, 2022
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