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1. Why is the QR method not suitable for the eigenvalue analysis of large-scale electrical power systems?
2. What is the critical eigenvalue? What methods are there for calculating critical eigenvalues of large-scale electrical power systems? What advantages and disadvantages are there for each method?
Screenshot of the circuit simulation running and the measurements of the required voltages and currents shown on a virtual digital multimeter from MultiSIM as shown in this week's lecture.
To maintain a freezer box at -40°C on a summer day when the ambient temperature is 27°C, heat is removed at the rate of 1.25 kW. What is the maximum possible coefficient of performance of the freezer
If the primary coil of a transformer has 200 turns and its secondary coil has 40 turns with the secondary coil having 25 A of current what is the current in the primary coil
Create a plot showing the power supplied by each generator as a function of the total power supplied to all loads (you may use MATLAB to create this plot). At what load does one of the generators exceed its ratings? Which generator exceeds its rat..
If an amplifier has an internal resistance of 500O, what turns ratio must be used to get maximum power transfer to a load of 4O.
a tank is initially filled with 1000 litres of brine containing 0.15kg of salt per litre. fresh brine containing
In general, what observations can be made about a physical system that has pole and zero locations that are not eitehr real-valued or complex conjugate pairs
The dielectric materials used in real capacitors are not perfect insulators. A resistance called a leakage resistance in parallel with the capacitance can model this imperfection. A 100-μF capacitor is initially charged to 100V.
Find the inductive reactance in ohms/mile/phase for the 765-kV, single-circuit, bundle-conductor line with four subconductors per bundle at a spacing of 18 in., given that the subconductor GMR is 0.0385 fi. Assume horizontal phase configuration wi..
What is understood by the ‘‘randomness'' of the load? When can the randomness of load be simulated by discrete stochastic variables?
1. We consider a Rayleigh fading signal. Suppose that a single branch receiver has a 10% chance of being 5 dB below a certain SNR threshold γo.
A 20 kW, 500 V shunt motor has an efficiency of 90% at full load. The armature copperloss is 40% of the full-load loss. The field resistance is 250 Ω.
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