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the parallel galvanized-iron pipe system of fig delivers water at 20degc with a total flow rate of 0036 m3s if the pump
the original flettner rotor ship was approximately 100 ft long displaced 800 tons and had a wetted area of 3500 ft2 as
the jet engine in fig admits air at 20degc and 1 atm at 1 where a1 05 m2 and v1 250 ms the fuel-air ratio is 130 the
the horizontal wye fitting in fig splits the 20degc water flow rate equally if q1 5 ft3s and p1 25 lbfin2 gage and
the horizontal pump in fig discharges 20degc water at 57 m3h neglecting losses what power in kw is delivered to the
the following turbulent-flow velocity data uy for air at 75degf and 1 atm near a smooth flat wall were taken in the
the cone frustum in the figure contains incompressible liquid to depth h a solid piston of diameter d penetrates the
problems involving viscous dissipation of energy are dependent on viscosity mu thermal conductivity k stream velocity
panel bcd is semicircular and line bc is 8 cm below the surface determinea the hydrostatic force on the panel andb the
modify the analysis of fig to find the velocity v when the inner cylinder is fixed and the outer cylinder rotates at
kerosene at 20degc flows at 18 m3h in a 5-cm-diameter pipe if a 2-cm-diameter thin-plate orifice with corner taps is
it is proposed to run the pump of prob 1135 at 880 rpm to pump water at 20degc through the system of fig the pipe is
in fig the flowing fluid is co2 at 20degc neglect losses if p1 170 kpa and the manometer fluid is merriam red oil sg
in 1952 e s crump developed the triangular weir shape shown in fig the front slope is 12 to avoid sediment deposition
gate abc in fig is a quarter circle 8 ft wide into the paper compute the horizontal and vertical hydrostatic forces on
gate ab in fig is a homogeneous mass of 180 kg 12 m wide into the paper resting on smooth bottom b all fluids are at
for the piping system of fig all pipes are concrete with a roughness of 004 inch neglecting minor losses compute the
for the container of fig use bernoullis equation to derive a formula for the distance x where the free jet leaving
for the 20degc water flow of fig use the pitot-static arrangement to estimate a the centerline velocity and b the
consider two-dimensional potential flow into a step contraction as in fig the inlet velocity u1 7 ms and the outlet
consider the three-reservoir system of fig with the following data l1 95 m l2 125 m l3 160 m z1 25 m z2 115 m z3
consider the flow under the sluice gate of fig if y1 10 ft and all losses are neglected except the dissipation in the
as shown in fig a liquid column of height h is confined in a vertical tube of cross-sectional area a by a stopper at t
an incompressible fluid is squeezed between two disks by downward motion vo of the upper disk assuming 1-dimensional