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Water flows in a horizontal rectangular channel at a depth of 0.5 ft and a velocity of 8 ft/s. Determine the two possible depths at a location slightly downstream. Viscous effects between the water and the channel surface are negligible.
What is the effect on the critical load when the rods act as a single member?
what proportion of these multipart products are not within specification limits? Answer this question again for the cases where m = 50 and m = 500. Explain the differences among the three probabilities.
We want to transport water at a rate of Q = 56.55 m3/h from point 1 to 2 with the new commercial steel pipe shown in the figure. The pressure difference between point 1 and 2 is given as P1 - P2 = 52,800 N/m2. What should be the diameter of the pi..
for this wye fitting which lies in a horizontal plane the cross-sectional areas at sections 1 2 and 3 are 1 ft2 1 ft2
what other factors other than protection potential need to be taken into account when selecting a sacrificial anode
Compare this value to the Carnot efficiency based on the temperatures of energy addition and rejection. [26.98%; 27.0%]
a 20 mw radial flow hydraulic turbine is to be designed with a head of 70 m and a speed of 90 rpm. a geometrically
consider a naca 1408 airfoil in low speed flow at zero degrees angle of attack and a reynolds number of 8.9 acute106.
crosslinked copolymers consisting of 60 wt ethylene and 40wt propylene may have elastic properties similar to those
List at least three customer needs inherent in the products and three features that deliver these needs. Identify the interactions among the features and establish target values for your new and improved product.
Consider a three stage compression process with inter cooling, and determine the intermediate pressures that minimize the total work input. How can you generalize this to n-stage compression with inter cooling?
Three aluminium cylindrical pressure vessels thicknesses 14 mm and radius 840 mm. They are periodically filled and emptied to an interal pressure of 2MPa. Cracks can grow through the wall driven by cycle of stress on pressurisation.
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