v=ZI VI Curve I w R Exp No 5 Name of Exp. RLC Circuit in the Steady State Aim of Exp: 0 To verify Ohms Law (2) To verif

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v=ZI VI Curve I w R Exp No 5 Name of Exp. RLC Circuit in the Steady State Aim of Exp: 0 To verify Ohms Law (2) To verif

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V Zi Vi Curve I W R Exp No 5 Name Of Exp Rlc Circuit In The Steady State Aim Of Exp 0 To Verify Ohms Law 2 To Verif 1
V Zi Vi Curve I W R Exp No 5 Name Of Exp Rlc Circuit In The Steady State Aim Of Exp 0 To Verify Ohms Law 2 To Verif 1 (58.38 KiB) Viewed 30 times
V Zi Vi Curve I W R Exp No 5 Name Of Exp Rlc Circuit In The Steady State Aim Of Exp 0 To Verify Ohms Law 2 To Verif 2
V Zi Vi Curve I W R Exp No 5 Name Of Exp Rlc Circuit In The Steady State Aim Of Exp 0 To Verify Ohms Law 2 To Verif 2 (46.05 KiB) Viewed 30 times
v=ZI VI Curve I w R Exp No 5 Name of Exp. RLC Circuit in the Steady State Aim of Exp: 0 To verify Ohms Law (2) To verif z. R=wide as a stop (3) To determine and measure the phouse shift between V and I and compare it with the analytial valute - ter - VR (4) To draw a vetror diagram of Vs VR.Vc Procedure + VR- (1) Choose the following Daters f-60Hz (w = 377rads) V Vie) = 6 VT Cos (377) R=40, L= 15.92 m H -* Figure A) C=1326MF (2) Connect the circuit shown in the gure 1) - (3) Measure I , VR. VL and ve for each of the chosen values of Vm listed in the Table (1) Table on T VR VL فيv=v с V ve VM 6 (2 18 24 30 36 42 (4) Draw a graph between Vm and I and find the slope slope = A = Zer and compare with Zanon = [(4 (we-te ² 74 Table 32 VVR+CVL-VE) AV Tble (2) Zeup Zanal. VM 8 13 30
Compare tear (tan't eve) with &- tani (ante 3 T&L (4) VR V Ve Anal . Use the osallos ope to find : cio phase shift between V VR ii) "Vs.vc 19 Vs. Ve (iv) phase shift between Vs (v.-vel 22 VR Figlan At= AX (time base scale) Arad) - Wat = 377AŁ 4$ (degree) - $(rad) * 18947-57-27 44 (43 vm) = tant (-) 24 OR ,VM) = cos' (VR) & CUL-VC) su M) = sin (VVE) 44 Compare results from the three relations listed abou Fig(3) M (4-v) VR
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