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A silicon NPN bipolar junction transistor is to be used as an amplifier. What are the required bias conditions for this to occur? If the emitter voltage is -3V, pick an acceptable base voltage and an acceptable collector voltage for the transistor to amplify.
What is the advantage of using a double-break contact instead of a single-break contact?
A batch process which involves filling a tank with liquid, mixing the liquid and draining the tank, is automated with a PLC. The specific sequence of events is as follows
Murray Loop Test and Locating Faults, Q.1 (a) Using the Murray Loop test, determine the distance to an earth fault on one of the cores of a uniform three-core underground cable. Ra = 2 ohms, Rb = 1 ohm
what would be the advantage, if any, of using a general equilibrium analysis to answer this question? Illustrate diagrammatically.
Find the impulse response fpr the filter? How many nonzero terms does the impulse response contain?
Calculate the torsional spring stiffness constant for a steel shaft 0.5" in diameter and 2.5 ft long.
Will the electric field inside change (how much if yes)? Will the stored energy in the capacitor change (how much if yes)?
Design an RC low-pass filter with a cutoff frequency at 2kHz, using a capacitor of \(0.1\mu F\) A. Show a circuit diagram and your calculations in obtaining R B. Make as sketch of the absolute value of the input impedence
Determine the location of the peaks in the following sampled spectrum for the following sine waves: (a.) signal frequency = 300 Hz; sampling frequency = 1 kHz (b.) signal frequency = 600 Hz ; sampling frequency = 1 kHz
A positive charge of magnitude q1 lies at the origin. Derive an expression for the incremental work done in moving a second point charge q2 through a distance dx from the starting position (x, y, z) in the direction -ax.
a) If the internal resistance of a voltmeter is 100x bigger than the output impedance of a circuit, what is the loading error b) If the internal resistance of an ammeter is 10x smaller than the output impedance of a circuit
Use Laplace transform techniques to find the solution to the following differential equation given that x = 1/3 at t = 0.
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