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1. Using examples, explain why real-time systems usually have to be implemented using concurrent processes.
2. Identify possible stimuli and the expected responses for an embedded system that controls a home refrigerator or a domestic washing machine.
an engineering student considers using a fan as a levitation demonstration. she plans to face the box-enclosed fan so
a 1 hp electric motor drives a water pump. the pump volumetric flow rate is 2103 m3s at 300 k.a determine the head loss
The ground state of dysprosium (element 66, in the 6th row of the Periodic Table) is listed as 5 Jg . What are the total spin, total orbital, and grand total angular momentum quantum numbers? Suggest a likely electron configuration for dysprosium.
A hydraulic cylinder is 100mm diameter and is fed by a pipe 15mm in diameter. If the piston in the cylinder moves forward at a rate of 0.2ms^1
a steel bar 2-meters long and having a square cross-section 2-cm on an edge is pulled in tension with a load of 100000
Calculate the horizontal reaction force on the stop sign support. What, if anything, can you conclude about the fluid flow characteristics in the vertical direction for this situation?
consider a space ship in a stationary orbit around a planet. the potential energy of the ship is u-kmr where kgm is
Three return steam lines in a chemical processing plan enter a collection tank operating at a steady state at 1 bar. Steam enters inlet 1 with flow rate of 0.8 kg/s and a quality of 0.9. Steam enters inlet 2 with flow rate of 2kg/s at 200 degrees C. ..
a curved rectangular bar has a mean radius of 6 in and cross section width b2.5 in and depth h 1.5 in. 1. determine the
a photomicrograph was taken at a magnification of 500x and it was determined that the average number of grains per
a 4-lb ball b is traveling around in a circle of radius r1 3 ft with a speed vb1 6 fts. if the attached cord is
Sketch the fully annotated velocity triangles for a Parsons turbine stage. Use your sketch to show that the specific work produced per stage is given as w_stage = (C_b)^2 [1 + 2(f/C_b)(cot(B_1))].
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