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5. For the circuit shown below, find (a) T-equivalent and (b) II-equivalent circuits. 5H AO 15...
PHYSICS II: 4) For the circuit shown below, find: a) the equivalent resistance; b) the current through the battery; c) the potential difference across the 10 ohm resistor. 9 p /A we 100C 5) Two resistors with resistances of 12.0 2 and 6.0 are connected in parallel. An 8.0-12 resistor is then connected in series with this parallel combination. An ideal 12.0-V battery is then connected across the series- parallel combination. A) Draw a diagram of this circuit. B) Find...
1) Find the Thévenin equivalent circuit across nodes a-b for the circuit below. Points: 15 5 12 1012 15 V 0.5i 1012 o b
6: In the circuit shown in Figure-6, input voltage of 15V de was switched ON at t-o. (a) Convert the circuit its Laplace equivalent at t >0, if ILO)-2A and vc (0)-6V. b) Find the capacitor voltage, Ve (s) in the frequency domain (c) Solve Ve (t) in the time domain. Switch L= 5H t-o 15V (0 ) = 2A V (o =6V 0.1F 6: In the circuit shown in Figure-6, input voltage of 15V de was switched ON at...
terminal circuit shown. 3. Find the Thevenin and Norton equivalent circuits for the two terminal cir (25 points) sor 42 lov (A) 4000
3. Find the Norton's equivalent circuit at terminals a and b for the circuit shown below. 822 3 42 2A +) 12 V
P2.82. Find the Thévenin and Norton equivalent circuits for the circuit shown in Figure P2.82. Atarotas ant boitiaoqian gates i vino writo sulsy 5622 homoa ноа 24 123 C di ba b 3 A ure 3612 29 og ob. Cinta D282
Need the thevenin equivalent circuits and the solutions. 4) Find the Thevenin equivalent circuit between nodes A & B for the circuit shown in Figure 4. Build the circuit in MultiSim and use its ohmmeter (choose the "Multimeter" tool and set it to measure resistance) to verify the Thevenin equivalent resistance between A & B. 2 I Figure 4: Circuit for Exercise 4
5) Find Thevenin Equivalent at terminals a-b for circuit below. (15 Points) ?50SL- 2408 +
Find the Thévenin equivalent circuit for the circuit shown below with respect to terminals a and b. Draw the equivalent circuit in your examination book. 12 kΩ 15 k2 36 V 1 60 kΩ Vab 18 mA
Part II, OpAmp, RL, RC Circuits (30 pt) Problem 9 What is the equivalent capacitance of the circuit shown? 2F ー5F ー8F a) 5.6 F b) 15 F c) 5 F d) 6.6 F e) None of the above