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For the network of given figure, the switch is closed at t = 0 s.
a. Determine vL at t = 25 ms.
b. Find vL at t = 1 µs.
c. Calculate vR1 at t = 1τ.
d. Find the time required for the current iL to reach 100 mA.
Desired D.C. Output : 10 V Load Variation: 0.3 kilo-ohms - 10 kilo-ohms Ripple Factor: Less than 0.1% for 2 kilo-ohms load Load Regulation: Better than 3 mV for a 1 mA change in load current
how do you draw the standard form simulation diagram given a higher-order differential equation and how to make
The propagating pulse passes an observer at x=0. The peak of the pulse can be approximated by a parabola, v(t)=20 (1 - 10t^2), where v is the mV and t is in ms. (a) find the current along at x=0, t=0 (b) find the membrane current per unit area at ..
Find the transfer function, Y(s)/F(s), where F(s) is the step reduction in force felt when the top plate is removed, and Y(s) is the vertical displacement of the dispenser in an upward direction.
Describe the operation of the series RC circuit. The discussion must address phase angle relationships of current and voltage. The answer must include the effect of source frequency on the voltage drops across the resistor and the capacitor at ver..
1. Two students are discussing how programmable thermostats work. Student A says that a piece of material within the thermostat changes length depending on moisture content of the air and that temperature is related to this change in moisture.
A given system has four sensors that can produce an output of 0 or 1.The system operates properly when exactly 1 of the sensors has its output equal to 1.An alarm must be raised when two or more sensors have the output of 1.
The average power is not necessarily equal to the average current times the average voltage. To show this, find a voltage waveform and current waveform where each has a zero average value but their product has a non-zero value.
Assume the triac of an ac output module fails in the shorted state. How would this affect the device connected to this output
Find the induced emf as a function of time, for a square wire loop of side length 3m, in the x-y plane with one corner at the origin, due to a changing magnetic flux density B =5xycos(10t)z ˆ Wb/m2
Are these signals periodic, find their fundamental period T and their fundamental frequency, otherwise prove that they are non-periodic 1) x(t)= 4 cos(12 t+40) + sin(16 t) 2) x(t)=cos4t +3e-j12t
What is the actual voltage gain?
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