Design a six-bit digital-to-analog converter.


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A closed, nonconducting, horizontal cylinder is fitted with a nonconducting, frictionless, floating piston that divides the cylinder into Sections A and B. The two sections contain equal masses of air, initially at the same conditions, = 300 K and = 1(atm). An electrical heating element in Section A is activated, and the air temperatures slowly increase: in Section A because of heat transfer, and in Section A because of heat transfer, and

src="https://sciemce.com/media/4/7bc03e91afc40c5.png" class="w-image" /> in Section A because of heat transfer, and be the number of moles of air in Section A. For the process as described, evaluate one of the following sets of quantities:

What will be an ideal response?
(a) and if P(final) = 1.25(atm)
(b) and P (final), if = 425 K
(c) and P (final), if = 325 K
(d) and P (final), if

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In the circuit of Fig. 16.63, find v(t) and i(t) for t > 0. Assume v(0) = 0 V and i(0) = 1.25 A.

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How is a latched output reset to a 0?

What will be an ideal response?

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Most analog sensors can produce only very weak signals.

Answer the following statement true (T) or false (F)

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