Please answer subpart d and e.
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Please answer subpart d and e. Thanks
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- A parallel circuit of 25 – ohm resistor, 64 – mH inductor and 80 - μF capacitor connected across a 110 V, 50 Hz, single phase supply is shown in the figure below. Calculate: a.) the current in the individual element, b.) the total current drawn from the supply, c.) overall power factor of the circuit. Draw a neat phasor diagram showing IR, IL and IC.A circuit is composed of a resistance of 22 ohms, an inductance of 0.11 henry and a capacitance of 12 microfarad, all connected in parallel to a 115-volt 60-Hz supply. Calculate the (a) total current, (b) total reactive power, (c) and the power factor of the cicruit.8. A parallel circuit of 25 – ohm resistor, 64 – mH inductor and 80 - μF capacitor connected across a 110 V, 50 Hz, single phase supply is shown in the figure below. Calculate the current in the individual element, the total current drawn from the supply and overall power factor of the circuit. Draw a neat phasor diagram showing IR, IL and IC.
- A resistor of 50 ohms, a 200mH inductor, and a 1.5 x 10-4 F capacitor is connected in parallel to a 120-volt, 60 cps source. Calculate: a) the equivalent impedance b) the current in each load c) total current d) the total real, reactive, and apparent powers e) power factor.Please answer quickly "In series-connected ac circuit, the total voltage across the circuit is always equal to the sum of the magnitude (only) of the individual voltage across each element." True False The power factor is equal to cosine of the phase difference. True False A leading power factor means that the circuit is predominantly capacitive in nature. True False "Since most loads are resistive in nature (e.g. motors), improvement of power factor is done by connecting capacitor banks or a synchronous condenser " True FalseA 200 – ohm resistor, 130 millihenry inductor, and a 66 microfarad are placed in parallel across a 120 – V, 60 – Hz AC line. Calculate the following: a.) RESISTOR CURRENT b.) INDUCTOR CURRENT c.) CAPACITOR CURRENT d.) TOTAL CURRENT e.) PHASE ANGLE f.) TOTAL IMPEDANCE DRAW THE PHASOR DIAGRAM IF POSSIBLE AND ROUND OFF TO FOUR DECIMAL PLACES.
- A series circuit composed of a resistance of 24 ohms, an inductance of 0.09 henry and a capacitance of 8 microfarad, is connected to a 120-volt 50-Hz supply. Calculate the (a) power factor of the circuit, (b) total reactive power, (c) voltage drop accross the inductor.The total kVA rating of capacitors required to raise the full-load power factor of a 3-phase, 440 V, 50 Hz induction motor from 0.75 to 0.85 lagging is Qc = 15 KVAR. Capacitors are delta connected. (i) Determine the line current drawn by the capacitor bank (ii) Determine the phase current of the capacitor bank (iii) Determine the capacitive reactance per phase Xc (iv) What will be the capacitance per phase if the capacitors are delta connected ?41. Ideal inductors and capacitors are in phase with each other. True False "By the convention we are using in this course, if the reactance (X) is positive, it is inductive in nature." True False In series-connected ac circuit, the total current though the circuit is always equal to the phasor sum of the individual current though each element." True False "In a R-L series circuit, R=10 ohms and X=10 ohms, the applied voltage is in phase to the circuit total current (assumed applied voltage is the reference)." True False
- A parallel circuit of 25 – ohm resistor, 64 – mH inductor and 80 - μF capacitor connected across a 110 V, 50 Hz, single phase supply is shown in the figure below. Calculate: a.) the current in the individual elementb.) the total current drawn from the supply c.) overall power factor of the circuit. Draw a neat phasor diagram showing IR, IL and IC.A series circuit composed of a resistance of 24 ohms, an inductance of 0.09 henry and a capacitance of 8 microfarad, is connected to a 120-volt 50-Hz supply. Calculate (a) the line current, (b) impedance of the circuit, (c) voltage drop, (d) total reactive power, (e) power factor.(as fast as possible please)-50kVA, 380V, 3-phase, 50Hz, star connected, 4-pole (2p = 4) round-rotor synchronous generator has 0.6 Ω synchronous reactance (Xd = 0.6 Ω). (Internal resistance is negligible (Ra = 0))a. Draw the equivalent circuitb. Calculate the nominal currentc. Calculate the excitation voltage at full load for Cos ϕ = 0.86 (inductive).D. Draw the phasor diagram and plot the relevant angles (ϕ, β, ψ)to. Calculate the power induced in the machine.f. Calculate the moment induced in the machine.