Perform the following additions, all in the binary system:

a. 10101111+10100 b. 111100001+111000 c. 111001011+111001


Using the methodologies introduced in paragraph 13.2:

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A pipe operates at steady-state, steady-flow conditions. Steam enters the pipe at 300°C and 250 kPa, and exits at 250°C and 200 kPa. The volumetric flow rate of the steam entering the pipe is 1.2 m3/s. Assume that there are no work interactions.

(a) Determine the heat transfer rate to or from the pipe. (b) Using your equations, plot the rate of heat transfer for the same inlet conditions and outlet pressure, but for outlet temperatures varying from 150°C to 350°C. Given: V?1 = 1.2 m3/s; T1 = 300°C; P1 = 250 kPa; T2 = 250°C; P2 = 200 kPa Steady-state, steady-flow; (Inlet = State 1; Outlet = State 2) Assume: W?= 0 ; neglect changes in kinetic and potential energy What will be an ideal response?

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Give an example of a commonly used mat foundation.

What will be an ideal response?

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When it comes to employee moral, what was a downfall of Scientific Management?

What will be an ideal response?

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What is the purpose of the hot and cold decks on a multi-zone system?

A) they provide simultaneous hot and cold air B) the hot deck is energized and the cold deck is not C) the deck in use is called the hot deck D) the provide places to stand that are warm and cool

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