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A Carnot engine operates between a high - temperature reservoir at 6 0 0 K and a low - temperature reservoir at 3 0 0
A Carnot engine operates between a hightemperature reservoir at K and a lowtemperature reservoir at K If the engine absorbs J of heat from the hightemperature reservoir, calculate:
a The efficiency of the engine.
b The work done by the engine.
c The heat rejected to the lowtemperature reservoir.
Fluid Mechanics:
Water flows through a horizontal pipe with a diameter of m at a velocity of ms The pipe then narrows to a diameter of m Using the principle of continuity, calculate:
a The velocity of water in the narrower section of the pipe.
b The mass flow rate of water through the pipe.
Mechanics of Materials:
A steel rod with a length of meters and a crosssectional area of m is subjected to a tensile force of N Calculate:
a The stress in the rod.
b The strain in the rod if the Youngs modulus for steel is GPa.
c The elongation of the rod.
Dynamics:
A block of mass kg is sliding down an inclined plane with an angle of to the horizontal. The coefficient of friction between the block and the plane is Calculate:
a The acceleration of the block.
b The net force acting on the block.
c The distance traveled by the block in seconds.
Heat Transfer:
A flat plate of area m is exposed to solar radiation. The solar irradiance is Wm If the plate is made of a material with an absorptivity of calculate:
a The total solar energy absorbed by the plate per second.
b The temperature rise of the plate after minutes if the specific heat capacity of the material is JkgK and the mass of the plate is kg
Thermodynamics:
A steam turbine operates with an inlet steam condition of MPa and C and an exit steam condition of MPa with a dryness fraction of Calculate:
a The work done by the turbine per kilogram of steam.
b The change in enthalpy.
c The change in entropy.
Fluid Mechanics:
Air flows through a convergingdiverging nozzle with an inlet pressure of kPa, an inlet temperature of K and an inlet velocity of ms The throat pressure is kPa. Calculate:
a The throat temperature.
b The throat velocity.
c The throat area assuming isentropic flow.
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