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[" Thermal Expansion "],[" &.Ikg ice at ...

[" Thermal Expansion "],[" &.Ikg ice at "-20^(@)C" is mixed with "1" kg steam at "200^(@)C]

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100 g ice at 0^(@)C is mixed with 10 g steam at 100^(@)C . Find the final temperature.

1 kg ice at -20^(@)C is mixed with 1 kg steam at 200^(@)C . The equilibrium temperature and mixture content is

1 kg ice at -20^(@)C is mixed with 1 kg steam at 200^(@)C . The equilibrium temperature and mixture content is

1 kg ice at -20^(@)C is mixed with 1 kg steam at 200^(@)C . The equilibrium temperature and mixture content is

What would be the final temperature of the mixture when 1kg of ice at -10^(@)C is mixed with 4.4kg of water of 30^(@)C ? (Specific heat capacity of ice =2100Jkg^(-1)K^(-1))

60 g of ice at 0^(@)C is mixed with 60 g of steam at 100^(@)C . At thermal equilibrium, the mixture contains

2 kg ice at 0^@C is mixed with 8 kg of water at 20^@C . The final temperature is

100 g ice at 0^(@)C is mixed with 10 g steam at 100^(@)C . Find the final temperature and composition .

100 g ice at 0^(@)C is mixed with 10 g steam at 100^(@)C . Find the final temperature and composition .

1kg ice at 0^(@)C is mixed with 1kg of steam at 100^(@)C what will be the composition of the system when thermal equilibrium is reached ? Latent beat of fusion of ice = 3.36xx 10^(5)J kg^(-1) and latent head of vaporization of water = 2.26 xx 10^(6)J kg^(-1)