The network shown in Figure 1.17 contains three independent nodes and three meshes. Use the i-shift operation and the current source to voltage source transformation to reduce the network to one which contains only one independent mesh. Ry R
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Source Transformation-
Source transformation is the process of the conversion of voltage source into current source and vice versa without any change in the circuit.
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- Using the circuit, determine thevenin’s voltage(Vth) and thevenin's resistance(Rth) for load resistor R1. Then solve for I1. Draw all diagrams.A Wheatstone bridge is used for measuriug the valuc of change of resistance of a strain gauge wnich forms one of the arms of the bridge. All tbe arms of the bridge including the strain gauge have a resistance of 100 N each. The maximum a!lowable power dissipation from the strain gauge is 250 mW. Determine the value of maximu:n permissible current through the strain gauge and maximum allowable value of bridge supply voltage. Suppose a source of 20 V is available, lind the value of series resistance to be connected between the source and the bridge to limit the input voltage of the bridge to permissible level.a) Solve for the prur delivered to the 1Ds2 rYGifor in the eld sham. ease (1 eVen 72V Imalle
- Basic Electrical EngineeringDraw symbols of electrical components. Note: You may use both IEC and NEMA symbols. - Conductors crossing but not connected- Conductors crossing and connected - DC source other than battery- DC generator- AC voltage source- Ideal current source- Ideal Voltage Source- Current Controlled Current Source- Current Controlled Voltage Source- Voltage Controlled Current Source - Voltage Controlled Voltage SourceApply the theorems of source dominance, source transformation, and source combina- tion to reduce the network shown in Figure 1.194 to its minimal form with nodes 1 through 3 preserved by eliminating all redundant components. Draw the reduced net- work and use it to do the following: (a) calculate the node-to-ground voltages Vni, Vn2, and Vn3, and (b) calculate the voltage Vn and the current Ie2. E, 5.0V E2 J2 5mA Vn1 R2 1.0V Vn2 Rs, Vn3 1ΚΩ (1) 2000 J3 (3) R3 1ΚΩ 2mA 4mA R4 4000 Re. 6000 1000 Figure 1.194 Resistive network with independent sourcesQ2. A symmetrical n-network has a resistance of 7502 in the series arm and 2500 at each shunt arm. a) Calculate the open and short circuit impedances. b) Calculate the characteristic impedance. c) Calculate the propagation constant. d) Find its equivalent T-network.
- a) Draw and explain the equivalent circuit and V-I characteristics of the UJT in detail. b) A UJT circuit is shown in figure 2. The parameters of the UJT are n = 0.65 and RBB = 7 km. i. Find RBI and RB2. ii. Determine the value of VB1B2 and Vp. R₂ R₂ 400 £2 B₂ 20 100 £2 Figure 2The variable resistor (RL) in the circuit is adjusted for maximum powertransfer to RL.a) Find the numerical value of RL.b) Calculate the power for the dependent voltage source and determine if itabsorbs or supplies power.c) Find the maximum power transferred to RL.4) Use the Thevenin equivalent circuit technique to find Vab (a) without the load circuit connected (source circuit only) and (b) with the load circuit connected. (c) Using only one additional circuit element, to be connected across the ab terminals, sketch a circuit that would prevent the loading effect of the load circuit on the source circuit voltage. Please sketch this final circuit using the Thevenin equivalents from parts a and b. 3i1 SOURCE LOAD 2kN 3kN 2kN a 24V 4mA 8kQ 2k2 1kQ b 2000lx
- In some situations it is necessary to replace part of an electrical circuit. However, this must be carried out following certain criteria. The main one states that tension and current intensity, in the sector where the replacement occurred, must remain constant.In this we have what is known as the Substitution Theorem. For example, suppose that the circuit below it is necessary to replace the parts between terminals A and B. This will occur putting in their place a voltage source and a resistor. Calculate voltage and resistance that they must present.The network shown in Figure 1.39 contains a voltage source without a series resistor. (a.) Apply the E-shift operation to the network and reduce it to a network with a single mesh or cireuit. (b.) Use the reduced network to caleulate the values for the node-to-ground voltages Va and V, without the use of the nodal analysis method. 2.50 R, R3 V, R, 60 18V 120 RIn some situations it is necessary to replace part of an electrical circuit. However, this must be carried out following certain criteria. The main one states that tension and current intensity, in the sector where the replacement occurred, must remain constant.In this we have what is known as the Substitution Theorem. For example, suppose that the circuit below it is necessary to replace the parts between terminals A and B. This will occur putting in their place a voltage source and a resistor. Calculate voltage and resistance that they must present. a) V = 16,4 V e R = 3,0 Ωb) V = 36,7 V e R = 8,2 Ωc) V = 32,5 V e R = 7,0 Ωd) V = 18,9 V e R = 3,0 Ωe) V = 17,5 V e R = 2,5 Ω