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  2. Potassium oxide - Wikipedia

    en.wikipedia.org/wiki/Potassium_oxide

    Molar mass: 94.196 g·mol −1 Appearance Pale yellow solid Odor: Odorless ... Potassium oxide (K 2 O) is an ionic compound of potassium and oxygen. It is a base ...

  3. Equivalent weight - Wikipedia

    en.wikipedia.org/wiki/Equivalent_weight

    potassium permanganate has a molar mass of 158.034(1) g mol −1, and reacts with five moles of electrons per mole of potassium permanganate, so its equivalent weight is 158.034(1) g mol −1 /5 eq mol −1 = 31.6068(3) g eq −1. Historically, the equivalent weights of the elements were often determined by studying their reactions with oxygen.

  4. Potassium permanganate - Wikipedia

    en.wikipedia.org/wiki/Potassium_permanganate

    Molar mass: 158.032 g·mol −1 ... Potassium permanganate is an inorganic compound with the ... to carbon dioxide (CO 2), manganese oxide (MnO 2) and potassium ...

  5. Potassium - Wikipedia

    en.wikipedia.org/wiki/Potassium

    Four oxides of potassium are well studied: potassium oxide (K 2 O), potassium peroxide (K 2 O 2), potassium superoxide (KO 2) [25] and potassium ozonide (KO 3). The binary potassium-oxygen compounds react with water forming KOH. KOH is a strong base. Illustrating its hydrophilic character, as much as 1.21 kg of KOH can dissolve in a single ...

  6. Potassium superoxide - Wikipedia

    en.wikipedia.org/wiki/Potassium_superoxide

    Potassium superoxide is a source of superoxide, which is an oxidant and a nucleophile, depending on its reaction partner. [8] Upon contact with water, it undergoes disproportionation to potassium hydroxide, oxygen, and hydrogen peroxide: 4 KO 2 + 2 H 2 O → 4 KOH + 3 O 2 2 KO 2 + 2 H 2 O → 2 KOH + H 2 O 2 + O 2 [9] It reacts with carbon ...

  7. Rubidium oxide - Wikipedia

    en.wikipedia.org/wiki/Rubidium_oxide

    Molar mass: 186.94 g/moL Appearance ... Potassium oxide Caesium oxide: ... Rubidium oxide is the chemical compound with the formula Rb 2 O. Rubidium oxide is highly ...

  8. Avogadro constant - Wikipedia

    en.wikipedia.org/wiki/Avogadro_constant

    The Avogadro constant, commonly denoted N A [1] or L, [2] is an SI defining constant with an exact value of 6.022 140 76 × 10 23 mol −1 (reciprocal moles). [3] [4] It is this defined number of constituent particles (usually molecules, atoms, ions, or ion pairs—in general, entities) per mole and used as a normalization factor in relating the amount of substance, n(X), in a sample of a ...

  9. 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).