a) Find the Thévenin voltage with respect to the terminals a,b. b) Find the Thévenin impedance with respect to the terminals a,b. c) Draw the Thévenin equivalent. Figure P9.43 Vg + 50 mH Jinonio od 250 2 Ω 1009350 m od mH 0,001 ae 1qz9 Bis32 unta on 400 nF nd the state expryssboo fornorthe citit in Fig 19.55 b

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Circuits 1 HW 7 Q2
9.43 The sinusoidal voltage source in the circuit
in Fig. P9.43 is developing a voltage equal to
22.36 cos(5000t + 26.565°) V.
wwwd
Qar
Transcribed Image Text:9.43 The sinusoidal voltage source in the circuit in Fig. P9.43 is developing a voltage equal to 22.36 cos(5000t + 26.565°) V. wwwd Qar
a) Find the Thévenin voltage with respect to the
terminals a,b.
b) Find the Thévenin impedance with respect to
the terminals a,b.
c) Draw the Thévenin equivalent.
Figure P9.43
50 mH
09 T tinazio od 250 Ω
tion +
Vg
50 mH
Use the mesh-current method to
90X000
400 nF
a220
b
UBACy
Transcribed Image Text:a) Find the Thévenin voltage with respect to the terminals a,b. b) Find the Thévenin impedance with respect to the terminals a,b. c) Draw the Thévenin equivalent. Figure P9.43 50 mH 09 T tinazio od 250 Ω tion + Vg 50 mH Use the mesh-current method to 90X000 400 nF a220 b UBACy
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