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  2. Molar concentration - Wikipedia

    en.wikipedia.org/wiki/Molar_concentration

    Therefore, the molar concentration of water is c(H 2 O) = ⁠ 1000 g/L / 18.02 g/mol ⁠ ≈ 55.5 mol/L. Likewise, the concentration of solid hydrogen (molar mass = 2.02 g/mol) is c(H 2) = ⁠ 88 g/L / 2.02 g/mol ⁠ = 43.7 mol/L. The concentration of pure osmium tetroxide (molar mass = 254.23 g/mol) is c(OsO 4) = ⁠ 5.1 kg/L / 254.23 g/mol ...

  3. Equivalent concentration - Wikipedia

    en.wikipedia.org/wiki/Equivalent_concentration

    For example, sulfuric acid (H 2 SO 4) is a diprotic acid. Since only 0.5 mol of H 2 SO 4 are needed to neutralize 1 mol of OH −, the equivalence factor is: f eq (H 2 SO 4) = 0.5. If the concentration of a sulfuric acid solution is c(H 2 SO 4) = 1 mol/L, then its normality is 2 N. It can also be called a "2 normal" solution.

  4. Hydrochloric acid - Wikipedia

    en.wikipedia.org/wiki/Hydrochloric_acid

    Hydrochloric acid as the binary (two-component) mixture of HCl and H 2 O has a constant-boiling azeotrope at 20.2% HCl and 108.6 °C (381.8 K; 227.5 °F). There are four constant- crystallization eutectic points for hydrochloric acid, between the crystal form of [H 3 O]Cl (68% HCl), [H 5 O 2 ]Cl (51% HCl), [H 7 O 3 ]Cl (41% HCl), [H 3 O]Cl·5H ...

  5. Orders of magnitude (molar concentration) - Wikipedia

    en.wikipedia.org/wiki/Orders_of_magnitude_(molar...

    M denotes the non-SI unit molar: 1 M = 1 mol/L = 10 −3 mol/m 3. All orders. List of orders of magnitude for molar concentration; Factor (Molarity) SI prefix Value

  6. Ionic strength - Wikipedia

    en.wikipedia.org/wiki/Ionic_strength

    The molar ionic strength, I, of a solution is a function of the concentration of all ions present in that solution. [3]= = where one half is because we are including both cations and anions, c i is the molar concentration of ion i (M, mol/L), z i is the charge number of that ion, and the sum is taken over all ions in the solution.

  7. Molality - Wikipedia

    en.wikipedia.org/wiki/Molality

    The term molality is formed in analogy to molarity which is the molar concentration of a solution. The earliest known use of the intensive property molality and of its adjectival unit, the now-deprecated molal, appears to have been published by G. N. Lewis and M. Randall in the 1923 publication of Thermodynamics and the Free Energies of Chemical Substances. [3]

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  9. Solubility table - Wikipedia

    en.wikipedia.org/wiki/Solubility_table

    Substance Formula 0 °C 10 °C 20 °C 30 °C 40 °C 50 °C 60 °C 70 °C 80 °C 90 °C 100 °C Barium acetate: Ba(C 2 H 3 O 2) 2: 58.8: 62: 72: 75: 78.5: 77: 75