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Assignment - Fundamental Properties of AC Circuits/Lab - Series and Parallel Inductive Reactance
Q1. Consider the series inductive reactive circuit:
Calculate the following: (Express all answers in magnitude/ Rectangular form)
a. L
b. IT
c. XL1
d. XL2
e. VR1
f. VR2
g. VL1
h. VL2
Q2. Consider the parallel inductive reactive circuit:
Calculate the following: (Express all answers in magnitude/Rectangular form)
a. Z
e. IR1
f. IR2
g. IL1
h. IL2
Design an inverting amplifier with a gain of -12 that has an input impedance that is larger than 100K that can drive a 2K resistive load using bipolar transistors. Verify your design analytically and with SPICE.
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A Si sample contains 1016 cm-3 In acceptoratoms and a certain number of shallow donors. The In acceptorlevel is 0.16eV above Ev, and EF is 0.26eVabove Ev at 300K. How many (cm-3) In atoms are un-ionized (i.e., neutral)
Can the motor be used?
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An amplitude-modulated radio signal consists of an 80 Hz to 12 kHz audio signal superimposed on a 770 kHz carrier signal. A low-pass filter is to be designed in which the gain in the passband is unity and the carrier signal is attenuated by at lea..
Compare the results of part a and part b to show that swapping is a selfinvertible operation.
A disk located at 0
An input signal given by Vin(t)=5cos(500pi*t)+5cos(1000pi*t)+5cos(2000pi*t) is applied to a basic lowpass RC filter. R=318.3 ohms and C=1 microFarad. Find the expression for the output signal in terms of t and pi.
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