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  2. Table of specific heat capacities - Wikipedia

    en.wikipedia.org/wiki/Table_of_specific_heat...

    For example, Paraffin has very large molecules and thus a high heat capacity per mole, but as a substance it does not have remarkable heat capacity in terms of volume, mass, or atom-mol (which is just 1.41 R per mole of atoms, or less than half of most solids, in terms of heat capacity per atom).

  3. Specific heat capacity - Wikipedia

    en.wikipedia.org/wiki/Specific_heat_capacity

    The term specific heat may also refer to the ratio between the specific heat capacities of a substance at a given temperature and of a reference substance at a reference temperature, such as water at 15 °C; [5] much in the fashion of specific gravity. Specific heat capacity is also related to other intensive measures of heat capacity with ...

  4. Volumetric heat capacity - Wikipedia

    en.wikipedia.org/wiki/Volumetric_heat_capacity

    Another way of stating this, is that the volume-specific heat capacity (volumetric heat capacity) of solid elements is roughly a constant. The molar volume of solid elements is very roughly constant, and (even more reliably) so also is the molar heat capacity for most solid substances. These two factors determine the volumetric heat capacity ...

  5. Heat capacities of the elements (data page) - Wikipedia

    en.wikipedia.org/wiki/Heat_capacities_of_the...

    1 Specific heat capacity. 2 Notes. ... (solid) 54.44 WEL (I 2, gas, ... Properties of the Elements and Inorganic Compounds; Heat Capacity of the Elements at 25 °C; WEL

  6. Properties of water - Wikipedia

    en.wikipedia.org/wiki/Properties_of_water

    It is the most abundant substance on the surface of Earth [23] and the only common substance to exist as a solid, liquid, and gas on Earth's surface. [24] It is also the third most abundant molecule in the universe (behind molecular hydrogen and carbon monoxide). [23] Water molecules form hydrogen bonds with each other and are strongly polar.

  7. Dulong–Petit law - Wikipedia

    en.wikipedia.org/wiki/Dulong–Petit_law

    An equivalent statement of the Dulong–Petit law in modern terms is that, regardless of the nature of the substance, the specific heat capacity c of a solid element (measured in joule per kelvin per kilogram) is equal to 3R/M, where R is the gas constant (measured in joule per kelvin per mole) and M is the molar mass (measured in kilogram per mole).

  8. Heat capacity - Wikipedia

    en.wikipedia.org/wiki/Heat_capacity

    The SI unit of heat capacity is joule per kelvin (J/K). Heat capacity is an extensive property. The corresponding intensive property is the specific heat capacity, found by dividing the heat capacity of an object by its mass. Dividing the heat capacity by the amount of substance in moles yields its molar heat capacity.

  9. Relations between heat capacities - Wikipedia

    en.wikipedia.org/wiki/Relations_between_heat...

    where ρ is the density of the substance under the applicable conditions. The corresponding expression for the ratio of specific heat capacities remains the same since the thermodynamic system size-dependent quantities, whether on a per mass or per mole basis, cancel out in the ratio because specific heat capacities are intensive properties. Thus: