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Consider a C-D nozzle with a throat and exit diameter of 252 mm and 657 mm, respectively. The reservoir pressure and temperature is 10 atm and 1000 K, respectively.
a) Calculate the back pressure (Pb) for each of these scenarios:
i) A choked nozzle with isentropic, subsonic flow throughout the nozzle
ii) Normal shock at the exit of the nozzle
iii) Isentropic, supersonic flow at the exit with no shocks and/or expansions
given atmospheric air enters a 10m long 150-mm diameter uninsulated heating duct at 60 celcius and 0.04 kgs. the duct
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consider a well-insulated steam turbine. the inlet steam is at 5.0 mpa and 900oc. the exit pressure is at 200 kpa.
a cylindrical stone mix concrete beam of diameter d 0.5 m initially at ti 20 c is exposed to hot gases at tinfin 500
a closed system consisting of 2lb of a gas undergoes a process during which the relation between pressure and volume is
the members of the truss shown can withstand a maximum compressive force of 800 lb and a maximum tensile force of 2000
find the response of a generic undamped spring-mass system subjected to a square pulse ftf0 for 0letltt0 and 0 for
air enters a compressor operating at steady state with a volumetric flow rate of 8 m3min at 23degc and 0.12 mpa. the
The acceleration, velocity, and position vectors of an object moving in x-y plane are given by the following expressions respectively.
Helium enters subsonically and flows isentropically through the converging-diverging duct. Compare the values of Ma, T/T0, and P/P0 for helium with those for air at several locations in the duct. Use 0.163 ≤ Ma ≤ 3.221.
steam is to be condensed in the condenser of a steeam power plant at a temperature of 60c with cooling water from a
find max stress sigmatheta. the cylinder is hollow in the center one layer of steel inside and a layer of brass
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