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At atmospherice pressure, 2 g of water h...

At atmospherice pressure, 2 g of water having a volume of `2.00 cm^3` becomes `3342 cm^3` of steam when boiled. The latent heat of vaporisation of water is `539 cal//g` at 1 atm. The amount of heat added to the system is

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At 1 atmospheric pressure, 1.000 g of water having a volume of 1.000 cm^3 becomes 1671 cm^3 of steam when boiled. The heat of vaporization of water at 1 atmosphere is 539 cal//g . What is the change in internal energy during the process ?

At 1 atmospheric pressure, 1.000 g of water having a volume of 1.000 cm^3 becomes 1671 cm^3 of steam when boiled. The heat of vaporization of water at 1 atmosphere is 539 cal//g . What is the change in internal energy during the process ?

1 gm of water having a volume of 1 cc becomes. 1671 cc steam when boiled at atmospheric pressure. If latent heat of vapourization of water is 540cal//gm at 1 atm, how much gain in internal energy takes place ?

At 1 atmospheric pressure, 1000 g of water having a volume of 1000 cm^3 becomes 1.097 cm^3 of ice on freezing. The heat of fusion of water at 1 atmosphere is 80.0 cal//g . What is the change in internal energy during the process?

At 1 atmospheric pressure, 1000 g of water having a volume of 1000 cm^3 becomes 1.097 cm^3 of ice on freezing. The heat of fusion of water at 1 atmosphere is 80.0 cal//g . What is the change in internal energy during the process?

1 g of water (volume 1 cm^(3) becomes 1671 cm^(3) of steam when boiled at a pressure of 1atm. The latent heat of vaporisation is 540 cal/g, then the external work done is (1 atm = 1.013 xx 10^(5) N/ m^(2))

5.00 kg of liquid water is heated to 100. 0^@ C in a closed system At this temperature , the density of liquid water is 958 kg/ m^3 . The pressure is maintained at atmospheric pressure of 1.01 xx 10^5 Pa. A moveable piston of negligible weight rests on the surface of the water. The water is then converted to steam by adding an additional amount of heat to the system. When all of the water is converted, the final volume of the steam is 8.50 m^3 . The latent heat of vaporization of water is 2.26 xx 10^6 J/kg. How much heat is added to the system in the isothermal process of converting all of the water into steam?