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Gasoline (sg = 0 .67) is flowing at 0 .11 m3 / s in the fabricated tube shown in Fig. 6.19. If the pressure before the contraction is 415 kPa, calculate the pressure in the smaller tube.
4 Kg of air expands in an insulated cylinder from 1131 kPa and 327C to 100 kPa in a reversible manner. Determine the work output by (a) assuming contestant specific heats and (b) using ideal-gas table A.7.1
determine the required volume of the cuts and fills for a new road using the
a water reservoir 500 m by 500 m by 2 m deep located on a hill supplies water to a town at a gauge pressure of 500 kpa.
The volumetric flow rate over the spillway of a dam is 27,000 ft3/min. Determine the required volumetric flow rate for a 1/30 scale model that is operated in accordance with Froude number similarity.
Define an anonymous function for the following function. The anonymous function takes three inputs: x, a, and b. Make a plot of the function for x = 0 to 5. Use a = 2 and b = 2. f(x)=(x/a)-sin^b x (2) Repeat the above task with an inline function.
You have a centrifugal pump with an inlet radius of 200mm, an inlet blade width of 60mm, and inlet blade angle of 50 degrees. The outlet radius is 600mm, outlet blade width is 40mm and the outlet blade angle is 70 degrees. The pump handles water and ..
Is the number of prospective occupants an important consideration in the design of heating and cooling systems for classrooms? Explain.
consider an electrolytic cell for producing hydrogen and oxygen mi h2so4 0.5mmii where mi and mii are carbon rods. a
a flowrate measuring device is installed in a horizontal pipe through which water is flowing. a u-tube manometer is
When fuel flows through the pipe, the temperatures at ends A and B rise to 130oC and 80oC, respectively. If the temperature drop along the pipe is linear, determine the average normal stress developed in the pipe
Estimate the mean and median value of your investment after 50 years. Explain the large difference between the estimated mean and median.
The 80-N horizontal force P acts on a bell crank as shown. (a) Replace P with an equivalent force-couple system at B. (b) Find the two vertical forces at C and D that are equivalent to the couple found in part a.
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