The source voltage in the circuit is v(t) = √2. 120V cos(2л · 60Hz• t). . Determine the complex power delivered to the load. v(t) ( 822 20 mH 50 μF
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Determine the complex power delivered to the load.
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- A current source of i(t) = 10 sin(377t + 30◦) A is applied to a single-element load. The resulting voltage across the element is v(t) = −65 cos(377t + 120◦) V. What type of element is this? Calculate its value.An RLC series circuit connected to a 110 – volt and 50 – cycle AC source, contains the following series resistances and reactances: R1 = 10 ohm, R2 = 15, R3 = 5 ohms, XL1 = 20 ohms, XL2 = 25 ohms, XC = 40 ohms. Find the following: a.) EQUIVALENT REACTANCE b.) TOTAL IMPEDANCE c.) VOLTAGE DROP ACROSS THE CAPACITOR d.) TOTAL INDUCTANCE IN MILLIHENRY e.) TOTAL CURRENT f.) REACTIVE POWER g.) REAL POWER DRAW THE PHASOR DIAGRAM IF POSSIBLE AND ROUND OFF TO FOUR DECIMAL PLACESUnderstand ac power concepts, their relationships to one another, and how to calculate them in a circuit Find the phasor voltage Vs in the circuit shown if loads L1 and L2are absorbing 15 kVA at 0.6 pf lagging and 6 kVA at 0.8 pf leading,respectively. Express Vs in polar form.
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- Discuss the challenges and solutions in integrating renewable energy sources into an existing power system grid.TOPIC: Ohm's Law, Power and Generating Direct CurrentDirect Current Circuit AnalysisInductor, Capacitor, Generating Alternating Current Please Answer: Itotal I2 I1 VtotalExercise 2: Resistance-Capacitance Series Circuits on an AC Supply Calculate (a) peak to peak voltage (b) time period (c) Total impedance (d) Total voltage and (e) Voltage across the resistor for the circuit given.