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Mur boundaries in corner regions. The second-order Mur boundary in Equations (8.22) and (8.23) will not work in the corners of a 2D simulation, or in the corners and edges of a 3D simulation. Derive a Mur boundary condition for the 2D corner regions, both (a) first-order, and (b) second-order.
The counter should be designed using D flip-flops and using the state equation method. (No credit will be given if the circuit is designed using the excitation table method.) Draw the final logic diagram.
A differential band brake is used to control the speed of a drum. Determine the minimum value of the coefficient of static friction for which the brake is self-locking when the drum rotates counter clockwise.
Combine the impedances and find phasor current in the two circuits by using Phasor Ohm ( I= V/Z), then find voltage across each element (eg: VR = I * ZR ). Setting magnitudes equal is the same as setting the square of the magnitudes equal.
Determine the transition point. - Determine vO for vI = 3.3 V. - Repeat part (a) for RD = 30 k. - Repeat part (a) for RD = 5 k.
Suppose we discovered that the charge of the electron were not quantized; that is, that the charge of the electron is not fixed. Speculate on the consequences of this "discovery."
Sketch an AND circuit using bipolar junction transistors. Briefly explain how input combinations produce the desired output. Sketch and XOR circuit using transistors. Briefly explain how input combinations produce the desired output.
Analyze the synchrounous circuit with input X and output Z constructed with two flip flop of JK type with outputs QA and QB. The flip flop input exciatation are as follows: JA=XQB; KA=0; Jb=XQA'; KB=QA. the output equation is Z=XQB'.
Design the entire circuit implementing each of the three outputs with a two-level circuit plus inverters for the input variables. Begin the design with the following equations for each of the two bits of the adder
If it is possible to determine whether a circuit is in resonance given only the RMS values, explain how it could be done. If it is not possible, explain what further information you would have to have.
Define the doppler effect giving a practical example.- Consider the two cases of doppler efferct giving the definitions of each term used.
The end of the plates is 30 cm from the tube screen. The kinetic energy of the electrons is 2.80 keV. If a potential difference of 25.0 V is applied across the deflection plates, by how much will the point where the beam of electrons strikes the s..
A series circuit consists of a voltage source and four resistors (R1=1k-ohm; R2=30-ohm; R3=470-ohm; R4=2k-ohm). The resistor of 1k-ohm has a voltage of V1=3V across its terminals. a) Find the current out of the voltage source.
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