6. Solve for the mesh currents: 20 Ohm w 10 V I1 = 12 = 13 = 42 V 16 Ohm w 20 Ohm w ►15 Ohm 25 V 100 V + 1 Ohm w
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- For the circuit given in Figure 1, a) Find the Thevenin equivalent circuit with respect to terminals a-b b) When a 5000 resistor is connected to terminal a-b, find the voltage on the resistor wwwwwwmm c) It will be connected to a-b terminals and its voltage on 5000 load will be 132 kV rms. What should be the capacitive reactance value that will increase it? wwwwwwwww d) What happens to the short-circuit current when the a-b terminals are short-circuited? 2+1202 000 m da 127/6 kV rms ob 1.5 +/902 000 w 12725 kV msTask 3 A three phase, four wire star connected load consisting of: ZR: a resistor of 9500 in series with a 3H inductor ZB: a resistor of 1950 ZY: a resistor of 1950 in series with a 4µF capacitor Using the equipment available in the power lab (Room T017), connect the given load to a three-phase supply available in the lab and: 3.1. Determine the current of each line and the neutral current and measure the total power supplied by the source. 3.2. Analytically, calculate all currents and the total power and compare with those obtained in measurements. 3.3. Device a method and measure the waveform of the neutral current. Discuss the obtained waveform and the reason for any distortion in the waveform 3.4. Validate your calculations using computer simulationa. Using Ohm’s Law, compute the voltage and current for eachcomponent. Use the formula Z = Vt / It. b. Compute and record the magnitude and phase angle of the impedanceusing the equation Z= R + RL + jXL – JXC. Use 3uF for the value of C,1.006H for the value of L and for the resistance is computed based onthe specification of the lamp. c. Compute and record for the total power using the formula: Pcomputed = Scosθ d. Compute and record the reactive power and apparent power using theformula Scomputed = V2/ZQcomputed = √S2 − P2 e. Compute for the reactive power (measure) and apparent power(measured) using the formula.Q = PtanθS = P/ cos θ f. Compute the percent difference between the measure and the computedvalue of the impedance.
- Solve for Zo. Vcc 2.7 k2 330 k2 he = 120 Z. hie= 1.175 k2 hoe= 20 µA/V I O 2.56 kohms O 330 kohms O 50 kohms O 1.175 kohmsAs shown in the figure, two metal plates are connected to a voltage Source the seperation astence between the plater is much smaller then Hhe s0 of Hhe plates ond He space between the plates Is tfill ed with a Uniform charge denity p -) Aind the potntial VIx) in between the plater. ) Fnd the ele ctric freld Ex Cx) in between the plater -) find the surface chorge denritres on the mne surpa ed af ept crd indt metal elaesThe values of the circuit elements are given below.Accordingly |I| What is its value (the maximum value of its current)? V=110 phase 40 VR1=10 ohmsR2=12 ohmsR3=14 ohmsL1=j15 ohmsL2=j8 ohmsM=j15 ohmsC1=-j5 ohmsC2=-j12 ohms
- Q3 Using superposition, determine the current through the inductance XL for each network in Figure below? R W H6 80 E₁ = 10 V 200 E₂ = 40 V / 60° 40 ell 360Help can you solve the problem in the pic.?A generator rated at 30MVA, 11kV has a reactance of 40%. Calculate its p.u. reactances for a base of 50MVA and 10kV. O 0.606 p.u. O 0.506 p.u. O 0.806 p.u. O 0.706 p.u.
- Do part c,d and eDetermine the nodal voltage V1 if l=4L25° A, and R=4 2, for the following figure: -j2 2 20/-90° V R Ref. Oa. 26.56 L 72.507 V Ob. 22.56 L 68.507 V Oc. 28.56 L 74.507 V Od. 24,56 L 70.507 V When the voltage source is compared with the current source, which of the following is true: Oa. The current source angle leads the voltage source angle by 135 Ob. The current source angle lags the voltage source angle by 115 Oc. The current source angle lags the voltage source angle by 135 Od. The current source angle leads the voltage source angle by 115 pe here to search DELL wwFor the circuit shown, determine the current through the 2+j5 ohms impedance. 1 22 jsn mm 2 B LOA D 15L280 ZAN jios 100 L² A 240 L