# Heat Capacity

Heat capacity, C, is the amount of energy required to raise the temperature of a substance by exactly 1 degree Celsius. The energy needed to warm an object increases as the mass of that object increases. We see this in our everyday life. For example, we know that it takes much more energy to heat a large tank of water than a small cup. Because of this dependence on mass, experimentally determined heat capacities are always reported in terms of the amount of the substance that is heated. One method is to report how much energy it takes to raise the temperature of *one mole* of a substance by exactly 1 degree Celsuis. This value is the *molar heat capacity*, which has the symbol Cp.The molar heat capacity is given in the units J/(mol⋅∘C). A second method is to report how much energy it takes to raise the temperature of *one gram* of a substance by exactly 1 degree Celsius. This value is the*specific heat*, which has been given the symbol Cs. The units for specific heat are J/(g⋅∘C).

The heat capacity of a substance is therefore related to the energy q needed to raise its temperature by an amount ΔT. That is, q=nCpΔT, where n denotes the number of moles of the substance, or q=mCsΔT, where m denotes the number of grams of the substance.

1.) It takes 53.0J to raise the temperature of an 11.4g piece of unknown metal from 13.0∘C to 24.3∘C. What is the specific heat for the metal?

2.) The molar heat capacity of silver is 25.35 J/mol⋅∘C. How much energy would it take to raise the temperature of 11.4g of silver by 10.7∘C?

3.) What is the specific heat of silver?

Posted on November 16, 2013, in Question and tagged Chemistry, Heat Capacity, How much energy would it take to raise the temperature of 11.4g of silver by 10.7∘C?, molar heat capacity, question, science, specific heat, What is the specific heat of silver?. Bookmark the permalink. 1 Comment.

1.) 0.411 J⋅(g⋅∘C)−1

2.) 28.6 J

3.) 0.235 J⋅(g⋅∘C)−1

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