Question#4 Determine the value of V, and Z such that the circuit shown below is the Thevenin equivalent circuit of the circuit shown in Figure below: j10 -15 -j2.4 2 j20 (a) (b)

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1H
5 H
A cos 21 V
1F
31 1/4 F+ 3
Question#4
Determine the value of V. and Z, such that the circuit shown below is the Thevenin
equivalent circuit of the circuit shown in Figure below:
Z,
j10 2
-15
V.
-j2.4 2
j20 a
(a)
(b)
Question#5
Determine the voltage v(t) for the circuit of Figure below
2H
5 sin 5r V
4 cas (3/ + 15°) A
1/12F
4 H
Hint: Use superposition
+
Transcribed Image Text:1H 5 H A cos 21 V 1F 31 1/4 F+ 3 Question#4 Determine the value of V. and Z, such that the circuit shown below is the Thevenin equivalent circuit of the circuit shown in Figure below: Z, j10 2 -15 V. -j2.4 2 j20 a (a) (b) Question#5 Determine the voltage v(t) for the circuit of Figure below 2H 5 sin 5r V 4 cas (3/ + 15°) A 1/12F 4 H Hint: Use superposition +
Question#1:
Represent the circuit shown below in the frequency domain using impedances and
phasors.
+
25 2
ら()
2.5 mF
80 mH
8Va
i(t)
i,(t) = 1.44 cos(50t-24°) mA
Question#2:
The input to the circuit shown below is the current source current. Determine the
steady-state response i(t).
i,(1) = 25 cos (10r + 15") mA.
5 H
5 mF
40 2
2 H
2 mF
25 2
Question#3:
For the circuit of Figure below, it is known that
vy(1) = 0.7571 cos (21 + 66.7) V
v3 (r) = 0.6064 cos (21 – 69.8) V
Determine i: (t)
Transcribed Image Text:Question#1: Represent the circuit shown below in the frequency domain using impedances and phasors. + 25 2 ら() 2.5 mF 80 mH 8Va i(t) i,(t) = 1.44 cos(50t-24°) mA Question#2: The input to the circuit shown below is the current source current. Determine the steady-state response i(t). i,(1) = 25 cos (10r + 15") mA. 5 H 5 mF 40 2 2 H 2 mF 25 2 Question#3: For the circuit of Figure below, it is known that vy(1) = 0.7571 cos (21 + 66.7) V v3 (r) = 0.6064 cos (21 – 69.8) V Determine i: (t)
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