Impedance Z = (5 - j2) ohm = 5.385 <-21.80 ohm
Voltage V = IZ = (5 < 450) (5.385 <-21.80) = 26.925 <23.20
Choose the correct answer: Use source transformations to exchange the partial circuit shown into an equivalent...
Use a series of source transformations to simplify the circuit below into the Norton equivalent and find Vo. 20 kΩ Σ10 ΚΩ 30 kΩ 0.3 mAT) ΩΣ 0.3 mA - Isc(1) Βτοξ 10 kΩς Vo
Find the Thevenin equivalent circuit for the circuit shown below. Draw the equivalent circuit along with the load impedance. V 10 /0° V, w 1000 rad/s. Calculate the current through and the voltage across the load resistor. (30 pts) L1 1 mH R1 L2 500 Q 1 mH V C1 RL 100 μF 1.5 kQ
10.5 For the circuit shown, find a. The equivalent impedance seen by the source. b. The steady-state response of the voltage across the resistor, vR(). DIGILENT 2012 Digilent, Inc. Real Analog 0.1H 0 20cos(100 30
40 Aa 25 V * 200 Use source-transformations to find the Thévenin equivalent circuit with respect to terminals a and b. Show your work. V = (answers: 32 V, 892)
Use a series of source transformations to find io in
this circuit.
1 A 6? 5? 0 17? 6? 1,5 ? 34 V
1. Use a series of source transformations to find the power dissipated by the 10 kOhm resistor in the circuit below. 6 ΚΩ 10 ΚΩ 60 V 12 ΚΩ 6 ΚΩ 10 mA 2. Find the Thevenin equivalent circuit of the circuit shown below. +V. - 4 Ω 2ΗΩ 2 mA (1 4V.
a. Use source transformations to reduce the circuit to a single
loop with one V supply and one resistor in series with the unknown
component X.
b. Use source transformations to reduce the circuit to a single
node pair circuit with one I supply in parallel with one resistor
and the unknown component X.
c. Use your answer to part a to determine the voltage drop
across component X if it is an open.
d. Use your answer to part...
Problem 4. Use source transformations to find the current i2 in the circuit shown. 12 A 120 V
-2㏀.R3 = 10kf2.and R4-8㏀in the circuit shown Use a series of source transformations to find . I R2 1 alue Units Submit Request Answer
Matlab Code if available
Problem 04 mm us(0 In the circuit, the voltage source Vs(t) frequency, amplitude and phase are 22 kHz, 10 V and 0.25 rad correspondingly; Rs=4 Ohm, Ri=12 Ohm, R2=9 Ohm, R3=2 Ohm, L1=0.11 mH, L2=0.13 mH, C= 1.4 uF ("u"="micro"). Part A. Using any appropriate techniques, find the parameters of Thevenin equivalent circuit with respect to the ports "a" and "b". Present the Thevenin source in the polar form and the Thevenin impedance in the algebraic...