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Auron87
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I've got a set of questions based on internal energy and specific heat capacities and things. I could just do with a bit of help on some of them. Just a push in the right direction will probably do! Thanks.
Specific heat capacity of water = 4200 J/kg/K
Specific heat capacity of ice = 2100 J/kg/K
Specific heat capacity of lead = 130 J/kg/K
Specific heat capacity of copper = 390 J/kg/K
Specific latent heat of fusion of ice = 330 kJ/kg
Specific latent heat of vaporisation of water = 2.3MJ/kg
1. Calculate the thermal capacity of an object that contains 950g of copper and 700g of lead.
2. An electric kettle is rated as 2.5kW. The thermal capacity of the kettle is negligible and then kettle is filled with 1.2kg of water at 15 degrees C.
Calculate (a) the time taken for the kettle to bring the water to the boil and (b) the mass of the water boiled away in 4 mins.
3. The mass of 1.0 mole of water is 0.018 kg. Estimate the energy required to remove a molecule of water from the surface of boiling water. (Avogadro constant = 6.02 x 10^23 mol^-1).
And also if something is as steam and is condensing to water then wuold the specific latent heat of it be the same as the latent heat of vaporisation of water?
Thanks again!
Specific heat capacity of water = 4200 J/kg/K
Specific heat capacity of ice = 2100 J/kg/K
Specific heat capacity of lead = 130 J/kg/K
Specific heat capacity of copper = 390 J/kg/K
Specific latent heat of fusion of ice = 330 kJ/kg
Specific latent heat of vaporisation of water = 2.3MJ/kg
1. Calculate the thermal capacity of an object that contains 950g of copper and 700g of lead.
2. An electric kettle is rated as 2.5kW. The thermal capacity of the kettle is negligible and then kettle is filled with 1.2kg of water at 15 degrees C.
Calculate (a) the time taken for the kettle to bring the water to the boil and (b) the mass of the water boiled away in 4 mins.
3. The mass of 1.0 mole of water is 0.018 kg. Estimate the energy required to remove a molecule of water from the surface of boiling water. (Avogadro constant = 6.02 x 10^23 mol^-1).
And also if something is as steam and is condensing to water then wuold the specific latent heat of it be the same as the latent heat of vaporisation of water?
Thanks again!