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Water (at 15 C) flows out of a nozzle that is attached to a garden hose. The volume flow rate is through this nozzle at a rate of 25 x 10-5 m3/s, which discharges into the atmosphere. The diameter of the garden hose is 1.5 cm, while the diameter of the nozzle exit is 3 mm. Make a drawing of the hose and nozzle, and then sketch an appropriate control volume/surface for this problem. Determine the force required to hold the nozzle in place on the garden hose. Neglect gravitational forces by assuming that the hose is horizontal.
a 23 kg crate rests on a 10 kg hand cart as shown. the center of mass of the combined cratecart is at c. the cart is
air enters a converging-diverging nozzle at 700 kpa 240 k and ma 0.3. the inflow nozzle area is 13 cm2 and the
Using the formula to compute torque and having a torque of 4966.97, with the RPM's at 250, Would my calculation for horsepower be correct at 236.4 hp?
a steam power plant operates as a reheat rankine cycle. steam enters the high pressure turbine isentropic efficiency 90
Air with a mass of 0.5 kg, contained inside a piston-cylinder device with an initial pressure of 5 bar and initial volume of 0.1 m3, undergoes a thermodynamic cycle consisting of 3 processes as follows:
consider a house whose walls are 4 m high and 12 m long. two of the walls of the house have no windows while each of
a particle of mass m kg carrying q coulombs enters the space between two charged plates with the horizontal velocity
a smoke stream from a smoke generating tube is often used as a simple method of flow visualization in wind tunnels.
a well insulated piston-cylinder assembly is connected to an air supply line at 8 bar as shown in the figure. initially
a carbon steel ball with a diameter of 50 mm rests in a stainless steel hemispherical socket with a diameter of 60 mm.
argon gas enters an adiabatic compressor under steady flow conditions at 12o kpa and 30 c with a velocity of 20 ms and
consider a pump that moves q0.1 m3s of oil s.g. 0.8 from an open reservoir through a 10 cm diameter pipe. the pump
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