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Define the input resistance, output resistance, and no-load voltage gain of an amplifier stage. Include the conditions required for determining each. Use the AC small-signal equivalent circuit shown in Figure P10.41 to specify the voltages, currents, etc. used in your definitions and conditions. Draw a simplified model using these three circuit parameters. Include the signal source and load and derive an expression for the overall gain
Write a computer program to evaluate the coefficients of the complex exponential Fourier series of a signal by using the FFT.
Simulate the proportional fair scheduling algorithm for tc large and compute the performance of each user for a range of y from 1 to 100. You can assume the use of capacity-achieving codes.
Derive Eigenvalue equation for the Transverse magnetic modes in a symmetric waveguide.
A balanced D-connected load is fed by a three-phase supply for which phase C is open and phase A is carrying a current of 10
a circular coil of 150 turns is made of flexible wire. the cross-sectional area of the coil is 200cm2. it is placed
For the simple equivalent circuit of 0.017 m2 PV cell shown below, the reverse saturatoin current is I0= 4 * 10-11 A and at an insolation of 1-sun the short circuit current is Isc = 6.4 A. At 25 degrees C
Consider LTI system described by input-out relationship below y(t)=u(t) times integral(from minus infinity to t) (x(tau)) d(tau) a) Determine impulse response ,h(t), of the system without using Fourier and Laplace transform tools.
A 3 phase Y connected alternator is rated at 1600 KVA, 13500 V. The armature resistance and synchronous reactance are 1.5 ohms and 30 ohms respectively. Calculate the % voltage regulation for a load of 1280 KW at 0.8 leading power factor.
A certain 11 V dry-cell battery, completely discharged, requires a current of 100 mA for 1.2 hr to completely recharge. What is the energy storage capacity of the battery, assuming the voltage does not depend on its charge status?
What happens to the spectrum and time domain output when the laser is mode-locked? Why is a four-level system normally more efficient than a three-level system? What are the primary characteristics of an argon laser?
A 60 Hz, three-phase, transposed transmission line has the following parameters: Z = 13.114+ j52.952, Y = j0.311/1000. The sending-end line-to-line voltage is 161 kV. The total receiving-end load is represented by ZL =143 with an angle
which electrical meters are self-powered from an internal source such as a battery, and which meters draw their power frm the circuit to which they are attached
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