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Using simulation, determine the steady-state phase error for a first-order PLL with G = 40 (see Figure 6.6).
Estimate this value using the linear model. How do they compare? Repeat for G = 50 and G = 100. What do you conclude?
Use the lookback method to find ZN(s).- If I1(s) is equal to IA/s, find the poles and zeroes of I2(s) and identify the natural and the forced poles.
Electrical energy costs increase at a rate of 0.5% yearly. An amount of capital C is invested today in a field of solar panels that produce electricity that is sold at an annually levelized cost A. What is the levelized cost per unit of invested c..
SSB has an advantage over AM with respect to efficiency and power gain. Why, then, is AM commercial broadcast being replaced with SSB transmission?
The current through a 1 kΩ resistor is given by i(t) - 2e-t sin(10t) mA for t > 0. Find expressions for the oltage across the resistor and the instantaneous power dissipated by the resistor. What is the maximum power dissipated in the resistor?
a) Plot the spectrums for the range from 0 Hz to 25000 Hz. Make sure to label the frequncies. b) sketch the recoverd analog signal spectrum if an ideal lowpass filter with a cutoff frequncey of 4.5 kHzis used to filter the sampled signal.
You also do not need to consider radiation heat transger in the calculations. However, you should consider how the resuts for the no-fin cases might change if radiation heat transfer is included in the analysis Calculate the circuit board temperat..
Charges +Q and +3Q are separted by a distance 2m. A third charge is located such that the electrostatic system is in equilibrium. Find the location and kthe value of the third charge in terms of Q.
Given the electric field E=4xux+2yuyV/m find the voltage between the points A(2,0) and B(0,2) integrating along: (a) straight line AB; (b) broken line AOB, where O(0,0).
For the network of given figure: - Find the total admittance YT. - Find the voltages V1 and V2. - Find the current I3.
Which grating would be easier to fabricate?
Solve these equations to find the expressions for the phasors corresponding to the voltages across the resistor and the capacitor.
A certain parallel-plate capacitor has plate length of 2 cm and width of 3 cm. The dielectric has a thickness of 0.1mm and a relative dielectric constant of 80. Determine the capacitance.
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