Preb. 4: Consider the circuit shown in Fig. 3, where i(t) --6sin(10t + 30. D equivalent circuit in the frequency domain. 10 mH 10 mF 10 010 i()

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Electrical Circuits (2)
Name.
Prob. 1: Determine which signal :leads and by how much for:
vft) - 100cos(wt +35" ) and ift) 10cos(wt-10).
35
vieLeads Vee. by 45
Prob. 2: Consider the circuit shown in Fig. I, where vf 100cas(wt-26,87) and io
10cos(wt - 10).
1. The equivalent impedance at the terminals of the voltage source is R al.
2. When w 1000 rad/sec then L
= vjw.LE
i(t)
ww
R
1,,
Ze
V.
Figure I
Figure 2
Prob. 3: Consider the circuit shown in Fig. 2, where R-22, R2=22, Z, -j2 2, Z; -j2 2,
and Vs- 40/.
The equivalent impedance (Zy) seen by the source is ih. R R2al.12a4-2)
The current I is J.zI , E I- S. 14
V.
The current I is..
The voltage across the capacitor ( V.) is Vo x fmte
Prob. 4: Consider the cireuit shown in Fig. 3, where i(t) --6sin(10t + 30, D
equivalent cireuit in the frequency domain.
10 mH
10 mF
10 g() 10
i()
Figure 3
Transcribed Image Text:Electrical Circuits (2) Name. Prob. 1: Determine which signal :leads and by how much for: vft) - 100cos(wt +35" ) and ift) 10cos(wt-10). 35 vieLeads Vee. by 45 Prob. 2: Consider the circuit shown in Fig. I, where vf 100cas(wt-26,87) and io 10cos(wt - 10). 1. The equivalent impedance at the terminals of the voltage source is R al. 2. When w 1000 rad/sec then L = vjw.LE i(t) ww R 1,, Ze V. Figure I Figure 2 Prob. 3: Consider the circuit shown in Fig. 2, where R-22, R2=22, Z, -j2 2, Z; -j2 2, and Vs- 40/. The equivalent impedance (Zy) seen by the source is ih. R R2al.12a4-2) The current I is J.zI , E I- S. 14 V. The current I is.. The voltage across the capacitor ( V.) is Vo x fmte Prob. 4: Consider the cireuit shown in Fig. 3, where i(t) --6sin(10t + 30, D equivalent cireuit in the frequency domain. 10 mH 10 mF 10 g() 10 i() Figure 3
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