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  2. Lithium bromide - Wikipedia

    en.wikipedia.org/wiki/Lithium_bromide

    Chemical formula. LiBr Molar mass: 86.845 g/mol [1] Appearance ... Lithium bromide (LiBr) is a chemical compound of lithium and bromine.

  3. Bromide - Wikipedia

    en.wikipedia.org/wiki/Bromide

    Chemical formula. Br − Molar mass: 79.904 g·mol −1 Conjugate acid: ... Lithium bromide was used as a sedative beginning in the early 1900s.

  4. List of inorganic compounds - Wikipedia

    en.wikipedia.org/wiki/List_of_inorganic_compounds

    Protonated molecular hydrogen – H + 3; Trioxidane – H 2 O 3; Water - H 2 O [204] He ... Lithium bromide – LiBr; Lithium borohydride – LiBH 4; Lithium ...

  5. Lithium metaborate - Wikipedia

    en.wikipedia.org/wiki/Lithium_metaborate

    Lithium metaborate is a chemical compound of lithium, boron, and oxygen with elemental formula LiBO 2. It is often encountered as a hydrate , LiBO 2 · n H 2 O , where n is usually 2 or 4. However, these formulas do not describe the actual structure of the solids.

  6. Methyllithium - Wikipedia

    en.wikipedia.org/wiki/Methyllithium

    Chemical formula. C H 3 Li: Molar mass: 21.98 g·mol −1 ... (MeLi) n, depends upon the solvent and the presence of additives (such as lithium bromide).

  7. Lithium borohydride - Wikipedia

    en.wikipedia.org/wiki/Lithium_borohydride

    Lithium borohydride (LiBH 4) is a borohydride and known in organic synthesis as a reducing agent for esters.Although less common than the related sodium borohydride, the lithium salt offers some advantages, being a stronger reducing agent and highly soluble in ethers, whilst remaining safer to handle than lithium aluminium hydride.

  8. Maintaining good balance is crucial as you age. Asking these ...

    www.aol.com/maintaining-good-balance-crucial-age...

    The underappreciated link between these mundane activities is good balance, which geriatricians say is key to maintaining an independent lifestyle as we age. Lacking balance can be dangerous. In ...

  9. Lithium - Wikipedia

    en.wikipedia.org/wiki/Lithium

    Lithium hydroxide absorbs carbon dioxide from the air by forming lithium carbonate, and is preferred over other alkaline hydroxides for its low weight. Lithium peroxide (Li 2 O 2) in presence of moisture not only reacts with carbon dioxide to form lithium carbonate, but also releases oxygen. [174] [175] The reaction is as follows: