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  2. Methane - Wikipedia

    en.wikipedia.org/wiki/Methane

    At about 891 kJ/mol, methane's heat of combustion is lower than that of any other hydrocarbon, but the ratio of the heat of combustion (891 kJ/mol) to the molecular mass (16.0 g/mol, of which 12.0 g/mol is carbon) shows that methane, being the simplest hydrocarbon, produces more heat per mass unit (55.7 kJ/g) than other complex hydrocarbons.

  3. Molar volume - Wikipedia

    en.wikipedia.org/wiki/Molar_volume

    The ideal gas equation can be rearranged to give an expression for the molar volume of an ideal gas: = = Hence, for a given temperature and pressure, the molar volume is the same for all ideal gases and is based on the gas constant: R = 8.314 462 618 153 24 m 3 ⋅Pa⋅K −1mol1, or about 8.205 736 608 095 96 × 10 −5 m 3 ⋅atm⋅K ...

  4. Methane (data page) - Wikipedia

    en.wikipedia.org/wiki/Methane_(data_page)

    1.1 kJ/mol Std entropy change of fusion, Δ fus S o: 12.1 J/(mol·K) Std enthalpy change of vaporization, Δ vap H o: 8.17 kJ/mol Std entropy change of vaporization, Δ vap S o? J/(mol·K) Solid properties Std enthalpy change of formation, Δ f H o solid? kJ/mol Standard molar entropy, S o solid? J/(mol K) Heat capacity, c p? J/(mol K) Liquid ...

  5. Van der Waals constants (data page) - Wikipedia

    en.wikipedia.org/wiki/Van_der_Waals_constants...

    1m 3 /mol 2 = 1 m 6 ·Pa/mol 2 = 10 L 2 ·bar/mol 2. 1 L 2 atm/mol 2 = 0.101325 J·m 3 /mol 2 = 0.101325 Pa·m 6 /mol 2. 1 dm 3 /mol = 1 L/mol = 1 m 3 /kmol = 0.001 m 3 /mol (where kmol is kilomoles = 1000 moles)

  6. Specific volume - Wikipedia

    en.wikipedia.org/wiki/Specific_volume

    The standard unit is the meter cubed per kilogram (m 3 /kg or m 3 ·kg1). Sometimes specific volume is expressed in terms of the number of cubic centimeters occupied by one gram of a substance. In this case, the unit is the centimeter cubed per gram (cm 3 /g or cm 3 ·g1). To convert m 3 /kg to cm 3 /g, multiply by 1000; conversely ...

  7. Molar mass - Wikipedia

    en.wikipedia.org/wiki/Molar_mass

    The molar mass of atoms of an element is given by the relative atomic mass of the element multiplied by the molar mass constant, M u ≈ 1.000 000 × 10 −3 kg/mol1 g/mol. For normal samples from Earth with typical isotope composition, the atomic weight can be approximated by the standard atomic weight [ 2 ] or the conventional atomic weight.

  8. Densities of the elements (data page) - Wikipedia

    en.wikipedia.org/wiki/Densities_of_the_elements...

    (near r.t.) 1738 kg/m 3: LNG (at 20 °C) 1.738 g/cm 3: CRC (near r.t.) 1.74 g/cm 3: 13 Al aluminium; use: 2.70 g/cm 3: WEL (near r.t.) 2700 kg/m 3: LNG (at r.t.) 2.70 g/cm 3: CRC (near r.t.) 2.70 g/cm 3: 14 Si silicon; use: 2.33 g/cm 3: WEL (near r.t.) 2330 kg/m 3: LNG (at r.t.) 2.33 g/cm 3: CRC (near r.t.) 2.3290 g/cm 3: 15 P phosphorus (white ...

  9. Table of specific heat capacities - Wikipedia

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

    The contribution of the muscle to the specific heat of the body is approximately 47%, and the contribution of the fat and skin is approximately 24%. The specific heat of tissues range from ~0.7 kJ · kg1 · °C−1 for tooth (enamel) to 4.2 kJ · kg1 · °C−1 for eye (sclera). [13]

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