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1) In the circuit shown in Figure-1 assume iL(0)*= 0.
(a) Calculate the transfer function, H(s) = Vo(s)/Vin(s).
(b) If Vin(t)= I V dc at t = 0, calculate its output =lionise, Vo(t) for t ≥ 0.
(a) Calculate the resonance frequency, fo of the circuit shown in Figure-2
(b) Calculate the cut-off frequencies f1 and f2 of the circuit.
A designer searches for a simple circuit to provide one-third of a signal current I to a load resistance R. Suggest a solution using one resistor. What must its value be. What is the input resistance of the resulting current divider
The current in the bulb depends on the time t according to the relation I = (0.807 A) sin [(272 rad/s)t]. (a) What is the frequency of the alternating current (b) Determine the resistance of the bulb's filament. (c) What is the average power deliv..
State two signs of SCID. Explain two options for expecting parents who have family members with SCID and are concerned their child will be affected with the immuno deficiency. Why might parents choose these options
The transfer function of a system is formulated as H(f)=2f^2+i3f+2. Calculate the output signal for the input signal below which was applied to this system Vin(t)= 5+2cos(20(pi)t+30degrees)+sin(10(pi)t)
Determine the transmission coefficient for the system for X=a where a is on the order of nanometers. Determine the transmission coefficient for the system for X=a where a is on the order of meters
A BJT is being used as a switch and is triggered whenever thebase-emitter voltage v(t) rises above 0.15 volts. The voltage v(t)is sinusoidal and changes according to v(t )= 0.23cos( 100π t)+ 0.16sin(100π t + 0.4) . a) Express v(t) a sine function ..
A harmonic wave traveling along a string is generated by an oscillator that completes 180 vibrations per minute. If it isobserved that a given crest, or maximum, travels 300 cm in 10s,what is the wavelength
Suppose that the machining operation requires 1 kW, that the tool machine ihas 90 percent efficiency, and that the supply current is 14 A rms with a power factor of 0.8. Find the AC machine efficiency.
use the method of recursion to solve the following problems: compute y[n] for n = 0,1.2, when x[n] = 0 for all n andy[-l] = 2. Compute y[n] for n = 0,1.2, when x[n] = u[n]and y[-l] = 0. Compute y[n] for n = 0,1.2, when x[n] = u[n]and y[-l] = 2.
reference the textbook problem 4.8. the rtd of problem 4.7 is used in the bridge circuit of figure 4.4. if r1 r2 r3
design your circuit using only two, three, and four input NAND gates and inverters. try to minimize the number of gates and inverters required. the variables A, B, C, AND D will be available from toggle switches.
An infinitely long cylindrical shell extending between r = 1m and r= 3 m contains a uniform charge density ρv0 .Apply Gauss's law to find D in all regions.
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