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- Find the total impedance, voltage drop on the 100-ohm resistor, draw the phasor diagram of the voltage and current at R1, total power (apparent) delivered by the current source, draw the phasor diagram of the voltage and current at the source. Also, is the circuit inductive, capacitive, or neither (resistive)? please give the step-by-step solution NOTE: Polar form for Voltage & Current. Rectangular form for ImpedancevibrationsNeed Pen Paper solution not using chatgpt or AI
- Ministry of Manpower Directorate General of Technological Education Salalah College of Technology Zlectrical Inginearina Problem - 8 Refer to the circuit below and -25V C2 N. compute the following: i) Total capacitance ii) Voltage across C, iii)Charge across C, iv)Voltage across C5 5 uF C1 5 uF 5 uF C4 5 uF C6 5 uF -16-65V. C5 5 uF (Take V, as 25V) 8-35V VT 25V2. Using your values for Vps, Vind, VR, Vr, and V₁ from the Data and Calculations Tables above, construct and draw phasor diagrams on the attached graphical page below for each of the LR1, LR2, LR3, and LR4 circuits in Part 2. Be sure to appropriately label ALL the rms potentials.Please answer in typing format
- Shown in the figure below is an electrical circuit containing three resistors and two batteries. R1 10 R2 I2 R3 Write down the Kirchhoff Junction equation and solve it forI, in terms of J, and I. Write the result here: Write down the Kirchhoff Loop equation for a loop that starts at the lower left comer and follows the perimeter of the circuit diagram dockwise. Write down the Kirchhoff Loop equation for a loop that starts at the lower left comer and touches the components 4V, R, and Rg. The resistors in the circuit have the following values: . R,70 • R=10 Solve for all the following (some answers may be negative): Amperes Amperes AmperesThe Nyquist plot of the OLTF of a closed-loop system is shown below: Imaginary Axis Answer: 4 3 2 -2 -3 -4 -2 0 The OLTF has no poles at the RHP. What is the value of N? 1 O The closed-loop system is stable. O The closed-loop system is unstable. Nyquist Diagram 2 Real Axis 3 4 5 6Consider the following circuit used to provide power for an induative RL load. The input voltage is V-100V and the load has a 50 impedance value. The thyristor is working at a frequency fs = 2 kHz. The discharge current is to be limited to 40A and the required dv/dt is 40V/us. If the value of Ce is equal to 0.14uF, then the snubber losses are equal to: R. V. Select one: O a 5.4W O b. 7.4W 1.4W Od. 3.4W
- Two coupled coils have self-inductances L1= 2 H and L2=0.5 H, and a coefficient of coupling K = . 0.9. Determine the turns ratio N1/N2 of the two coils. a. 2 b. 0.2 c. 0.5 d. 0.91. A capacitive displacement transducer is connected the circuit shown in Figure 1 below, the output is the current measured by the Ammeter. The capacitance is related to the displacement x by C = A in the SI unit system. The permittivity of free space and the area of one side of one plate A are both constants. Determine the sensitivity at steady state for an excitation at cyclic frequency f. (Hint: you may use the impedance approach.) + E Ammeter A Current / Figure 1 R ww Capacitive C displacement transducerIn the study of MOSFET ID-VDS characteristics for different values of VGS, we came up with the following plot. Explain why the peaks of the parabolas lie on a parabola themselves. 'D,max4 'D,max3 ID,max2 VGS1-VTH...... VGS2 VTH VGS3 TH VGS1 Parabola VGS3 VGS2 Vps