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Compute the maximum efficiency of the cas code PA shown in Figure. Assume M1 and M2 nearly turn off but their drain currents can be approximated by sinusoids.
The line voltage is 120V, the armature resistance is 0.7 Ω and the series field-winding resistance is 0.5Ω. What is the torque developed by the motor. For the motor to operate at a speed of 2400rpm,
How do I find the signal flow graph from a Moore state machine in digital logic systems?
The overall system with inputs x1 and x2 and outputs z1 and z2 can be represented as shown with p11, p12, p21, and p22 properly chosen. Determine these four probabilities and the capacity of the overall system. Comment on the results.
Design, a simple RLCcircuit which can be used to display both an underdamped andoverdamped natural response. The circuit design and componentvalues are up to you. The key is to keep it simple - asimple circuit, and a simple adjustment
A charged 100-pf capacitor has initial voltage across it of 10V. a 100kohm resistor is suddenly connected across the capacitor (at t=0) to discharge it. What is the magnitude of the instantaneous current at 20 usec?
What do you envision as the future of this device?
What is a particle's speed if its kinetic energy T is equal to its rest energy?
(1) In a lab experiment on parallel Resonance circuit with switch closed, What is the phase relationship between Ic and IL at Is minimum (2) Why is the source current , Is, minimum at a given frequency
Compute the power gain, the available power gain, and the transducer power gain.
Determine which of these properties hold or don't hold for the following discrete time systems. Justify your answers. IN each example, y(t) denotes the system output and x(t) denotes the system input.
A sinusoidal current is zero and increasing at t = -3.33ms; the next zero crossing occurs at t = 6.67ms. a) calculate T, F, and W. b) if i(0) = 25.98 A, Find i(t). c) By what angle does i(t) lead another current i(t) = 5 sin (wt - 5°) A.
Parallel resonant circuits are used to select frequencies because the voltage and impedance peak at resonance. Calculate the impedance of the resonant circuit specified in Problem 25
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