Problem 3 (10 pts.) In the following circuit, operational amplifiers are ideal. Find vol and Vo2...
Problem 3 [201 Calculate land power dissipated by 5 K Ω resistor for the amplifier (ideal) 10 ΚΩ 1ov 5V Problem 4 Find lo at steady state condition. Use Mesh analysis ·[20] Problem 5 Find Vo and I through it in the circuit circuit below (use 120] analysis) Nodal 50 Ω 5052 o.1 H "40 sin 200,丶-
Problem 3 [201 Calculate land power dissipated by 5 K Ω resistor for the amplifier (ideal) 10 ΚΩ 1ov 5V Problem 4 Find...
5-4: The following circuit contains an ideal op-amp. The variable feedback resistor Re is adjusted until the op-amp saturates. Determine the value of R Re 1.6 kΩ 9 V 7.5 kΩ 9 V 18 V 1.5 kΩ 5-5: The following circuit contains an ideal op-amp. Assume Va = 1V, VB-1.5V, and Vc =-4V. Find the value of Vo. 220 kΩ 44 kΩ 10 V + 27.5 kΩ 80 k2 10 V 0a D)
Problem 2 (20 pts. Consider the following circuit. Use phasor method to find the following a. i(t). b. iz(t). c. Average power absorbed by the controlled source. d. Average power absorbed by the independent source. e. Average power absorbed by the inductor. f. Average power absorbed by the capacitor. g. Average power absorbed by the resistor. 322 500 pF H4 10 cos 103t v ففف 4 mH I + 2i1
#24 and #25 please and thank you
24. (3 pts) Draw below a circuit to create an automatic power-on reset for digital Elip-flops, be sure to label signal names on schematic, (hint: think RC-time- constant) 25. (3 pts) Find va, Vb and Ib for the circuit shown below 5 V 10 k2 4.7 kΩ
4. (20 pts) Find the voltage across the 10 k2 resistor in the following op-amp circuit, where vs=5cos 1000001, R1= 300k2, and R2=20k02. 10 KS2
a. (10 pts) Implement the voltage amplifier shown below using an ideal op amp circuit. You have one op amp available for this circuit, and a range of resistors with values from 1 kΩ to 100 ka. Draw the schematic of your op amp circuit, labeling resistor values. Make sure the gain, input resistance, and output resistance of your circuit matches the model in the schematic. R=012 *100v, RL 100 b. (5 pts) Your amplifier circuit should have a frequency...
Duplicate problem using the
command created in MATLAB and find the equivalent resistance for
the circuit
Find the power dissipated in the 3 k Ω resistor in the circuit in Fig. P3.49. Figure P3.49 750 2 25 kΩ 192 V Bridge structure is balanced therefore 15-5 = 3·25, the current flows by 5ΚΩ behaving as an open circuit Determining equivalent resistance in 192V source: R192,-750 + (15000 + 3000*25000 + 5000-750 + (18000 30000) 18000 30000 750 + ( -750...
1. (20 pts.). In the circuit shown in the diagram R 10 m,Ra 0.02 , R 01 , Rs -30 mt Rs 40 min. Rs 50 min. R7 60 min, and ε 100 V. A) (10 pts.) find the equivalent resistance for this circuit; B) (5 pts.) find the voltage and the current for the resistor R C) (5 pts.) find the electric power in the resistor Rr. 2. (20 pts.). In the cir rcuit shown in the diagram, find...
can you solve this 5 problem please
Q2. Using voltage divider and/or current divider to find the unknown on each of the circuits: 40 V -) ) ξR, υ ξR, 6 Ω 20 Ωξυ, 2.4A 1) 1890 Ω ξ10Ω 10 Ω ξ5 kΩ 360 kΩ 45 VI + υ, ξ 20 kΩ ξ90 ΚΩ Q3. Using a Y to delta transformation find the currents il, i2, and i3. And the power delivered by the source. 56 Ω 44Ω 80 Ω...
Question 1 20 pts R3 5 R1 R2 In the circuit 10 15 11 + V1 5 0.5( 12 shown, the current through the dependent source 12 is related to the current through R3, left to right, I2 = BIR3. Use Superposition to calculate IR3 , in terms of B. Show your steps clearly. Upload Choose a File In this question, use the same circuit as in Question 1, except, make R1 a variable resistor. We are interested in the...