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1. Explain the difference between a basic zone control system and an advanced zone control system.
2. The PIAB jumper on zone 1 of a Lennox Harmony III control is set at 40 percent. The minimum airflow is 900 CFM and the maximum is 1,800 CFM. How much air will this zone receive? Show all work.
Design a counter with the sequence 0-3-2-1-0 utilizing two flip flops. Flip flop A (MSB) is to be a JK type and Flip Flop B (LSB) is to be a RS Flip Flop.
Draw the logic diagram to implement the following functions using AND and OR gates. Form a truth table for each and show the outputstate for each possible input combinations (notice that there are16 possible input combinations).
What is the maximum temperature required for the maximum emissive power to enter the microwave range?
Discuss how more sophisticated (compared to the basic NOR and NAND) logic functions can be implemented in a single CMOS logic circuit.
We wish to build a machine with as great a flux density as possible while avoiding excessive saturation in the core. What would be a reasonable maximum flux density for this core?
A 100-hp 440-V 0.8-PF-leading Δ-connected synchronous motor has an armature resistance of 0.22Ω and a synchronous reactance of 3.0Ω. Its efficiency at full load is 89 percent. What is the input power to the motor at rated conditions?
Fortunately, for this purpose, we can replace multiplication with switching operation. A similar observation applies to demodulators. In the scheme depicted in fig p7-40a, the period of the rectangular periodic pulse x(t) shown in Fig. P7-40b is T..
For an ideal Zener, is the Zener voltage is 15v and the power rating is 750mW, what is the maximum zener current allowed What is the relationship between base current and collector current called
Uniaxial crystal in 2D. Write a 2D TM mode FDTD simulation in the x-y plane for a uniaxial crystal with no = 1.5 and ne = 2.
An audio signal s(t) generated by a loudspeaker is reflectedat two different walls with reflection coefficientsr1 and r2. The signal x(t)recorded by a microphone close to the loudspeaker, after sampling,is: x(n) = s(n) + r1s(n-k1) +r2s(n-k2)
Using time lines, show the arrival time, the process duration, and the departure time for each packet. Also show the contents of the queue at the beginning of each millisecond.
Plot the magnitude response, the log-magnitude response in dB, the phase response, and the impulse response of the filter.
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