Review | Constants The source voltages vgi and vg2 in the circuit in (Figure 1) are...
1) (10 marks) In this question, you will calculate the voltages, currents and powers as follows for the dc circuit in Fig. 1. a) Using mesh analysis, calculate the mesh currents. Redraw the circuit with the mesh currents added. b) If the bottom node of the 3 12 resistor is 0 V, what is the voltage at the top node of the 312 resistor? c) Calculate the power that is absorbed or produced by each of the circuit elements. For...
Problem 1) The numerical values of the voltages and currents in the circuit seen in Figure P1 are given in Table 1. Find the total power developed in the circuit. Element Voltage (V) Current (mA) 1 OOO دم دما با همه را با S + w ام دی Figure P1 Table 1
Solve this circuit using node-voltage method. Determine the
currents through all the elements and voltages across all elements.
Verify that the total power developed equals the total power
absorbed
Without repeating the node-voltage analysis, predict the node
voltages at nodes d, c, b and g, if node a was selected as the
reference node (or ground).
R2 560 n R, 1 kn R 430 Vs a ww R 820 n ww R3 2.2 kn V6R430 R, 1.5 k Rs 820...
Problemuǐ(30 points) Consider the circuit in Figure 1 1Ω 4A Figure I. DC resistive circuit Submit these Numerical Values in the Answer Sheet 5 points:IA 5 points: IA 5 points:VV 5 points: V.V 5 points : Power of the 2 Ω resistor Li 5 points: Power of the current source [W 1.a : Use KCL, KVL, and Ohm's Law to calculate 1 [AJ. I2 IA]. V1 IV] and V2 [V] 工 20-120 A 112 2. L.b: Verify your results by...
1. (12 marks) For the circuit in Fig. 1: a) Label all the node voltages and show and label all branch currents for mesh analysis if they are not already labelled. (2 marks) b) Calculate the currents using mesh analysis. Show your equations and solutions in a logical order. (6 marks) c) Calculate the power generated or absorbed by each element including the sources. Show that power is conserved in the circuit. (4 marks) 10 12 212 512 1 341...
Problem 4a (15 points) For the transistor circuit shown in the figure, calculate the value of the output voltage given β 49 and VBE-0.7V. Problem 4b (10 points) The charge entering an electric element (part) is shown in the figure. Find the current at t- 1.5 sec, t-2.5 sec and t 10 sec 30 0 246810 12 Problem 3 (25 points) For the circuit shown in the Figure, use the Mesh Analysis method, to find the value of the branch...
1) (10 marks) In this question, you will calculate the voltages, currents and powers as follows for the dc circuit in Fig. 1. a) Using the bottom node as the reference, calculate using node analysis, the other two node voltages. Label these other two node voltages in order from the top va and Vp. b) Calculate the current in each resistor. Calculate the power that is absorbed or produced by the each of the circuit elements. For each circuit element...
For the circuit shown in figure 7, find the node voltages Vi. V2 and Va nalysis 12 (4 V 2Ω 4 A Fig.7 h. For the circuit shown in figure 7, find the mesh currents I, la, and Is
For the circuit shown in figure 7, find the node voltages Vi. V2 and Va nalysis 12 (4 V 2Ω 4 A Fig.7 h. For the circuit shown in figure 7, find the mesh currents I, la, and Is
find the voltages V, V, and V, in the circuit of Fig. 1, and the currents 1,, l, and I, in the circuit of Fig. 2. + V- R1, 10K2 + R2, 27KV2 1 R3, 10K w - V + Figure 1 W R1, 10K R2, 27K12 R3, 10K<< Figure 2
Question [5x2 marks 10 marks] In the circuit in Figure 4, the resistance value R1, R2, R3 and R4 have a value of 30, 40, 40 and 50 (a) Find the equivalent resistance (Req) in the circuit (b) Determine the current through each resistance 1 to 14. (c) Determine the power dissipated by each resistor and the power delivered by the independence voltage source. Confirm that the power delivered by the independent source is the same as the power absorbed...