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Define Thermodynamics
Thermodynamics is the science which deals with the conversion of heat into mechanical energy. It is relies upon observations of general experience, which have been formulated into thermodynamic laws.
These laws administrate the principles of energy conversion. The applications of the thermodynamic laws and principles are found in all branch of energy technology, particularly in steam and nuclear power plants, gas turbines, compressors, chemical process plants, air conditioning, internal combustion engines, refrigeration, gas dynamics, jet propulsion, and direct energy conversion devices.
Compressiv e Strain: When the compressive load acts on body then there will be an increase in cross sectional area and decrease in length of body. The ratio of reduction in l
A radically inward flow turbine working under a head of 10 m and running at 250 rpm develops 185 KW at the turbine shaft. At inlet tip of the runner vane, the peripheral velocity o
major components of a press
Boiler efficiency and heat losses, heat Balence sheet, boiler draught, high pressure boiler
hello. what is the shape of the fractur of brittle material after applied th tensil test.
how mechanism can be synthesized using relative pole method?
The end gates of a lock are 5m high and when closed include an angle of 120 o . The width of the lock is 6.25 m. Each gate is carried on two hinged placed at the top and the bottom
(a) Derive the mathematical expression for Steady Flow Energy Equation. State the assumption made before the derivation. (b) The internal energy of a substance is provided by th
Pipe flanges are protected from corrosion by means of electrolysis, with dielectric flanges. The piping system is electrically insulated by what is known as a sacrificial anode. A
The different advantages of alloy steel are as: (a) Higher strength, toughness and hardness upon surface and over bigger cross-section. (b) Better harden-ability and retentio
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