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The photoconductive cell in Figure is used to measure distance from a stable source of 0.5- wavelength radiation. The source has 75 mW of power, 2 mr divergence, and a 0.5-cm exit radius. Construct a graph of sensor resistance versus distance from 0 to 2.5 m.
Identify the properties of ideal amplifiers and compare them to the properties of real amplifiers. Discuss some of the reasons an ideal amplifier cannot be constructed.
Develop the Boolean equations for a T type Flip Flop realisation and draw the schematic circuit
(b) Verify that there are 4.994×(10 to the power 22) atoms per cubic centimeter in the Si lattice at room temperature. (c) Determine the center to center distance between nearest neighbours in the Si lattice.
Give a flowsheet of program for evaluating corrected peak area.- Use the detailed block diagram.
The frequency stability required for an amplitude modulated (ASK) optical coherent communications system is ±10 MHz.
When the starter motor, which draws 90A, is running the terminal voltage drops to 11V. What is the internal resistance of the battery What percentage of the chemical power is delivered to the starter motor
A ring of magnetic material has a rectangular cross-section. The inner diameter of the ring is 20 cm and the outer diameter is 25 cm, its thickness being 2 cm.
You sample a known signal of equation x(t)=3 cos(2 π 4425 t) with a sampling rate of 3000 Hz. What signal will you get after reconstructing to continuous time (assume perfect interpolation of a discrete time signal).
A current source of 12 cos 2000t A, a 200-ohm resistor, and a 0.2-H inductor are in parallel. Assume steady-state conditions exist. At t = 1 ms, find the power being absorbed by the (a) resistor; (b) inductor; (c) sinusoidal source.
What factors and management decisions must be considered when developing a solution to this problem?
The power required to drive a fan varies as the cube of the speed.
A voltage v (t) = 100 cos 3 k (t) V is applied across a series connection of a 33-kΩ resistor and 3300-pF capacitor. Find the steady-state current i(t) through the series connection.
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