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  2. Brønsted–Lowry acid–base theory - Wikipedia

    en.wikipedia.org/wiki/Brønsted–Lowry_acid...

    Because DMSO accepts protons more strongly than H 2 O the acid becomes stronger in this solvent than in water. [11] Indeed, many molecules behave as acids in non-aqueous solutions but not in aqueous solutions. An extreme case occurs with carbon acids, where a proton is extracted from a C−H bond. [12] Some non-aqueous solvents can behave as acids.

  3. Anderson impurity model - Wikipedia

    en.wikipedia.org/wiki/Anderson_impurity_model

    The Anderson impurity model, named after Philip Warren Anderson, is a Hamiltonian that is used to describe magnetic impurities embedded in metals. [1] It is often applied to the description of Kondo effect-type problems, [2] such as heavy fermion systems [3] and Kondo insulators [citation needed]. In its simplest form, the model contains a term ...

  4. HSAB theory - Wikipedia

    en.wikipedia.org/wiki/HSAB_theory

    An alternative quantitative measure is the heat of formation of the Lewis acid-base adduct in a non-coordinating solvent. The ECW model is quantitative model that describes and predicts the strength of Lewis acid base interactions, -ΔH . The model assigned E and C parameters to many Lewis acids and bases.

  5. Acid strength - Wikipedia

    en.wikipedia.org/wiki/Acid_strength

    Acid strength is the tendency of an acid, symbolised by the chemical formula, to dissociate into a proton, +, and an anion, .The dissociation or ionization of a strong acid in solution is effectively complete, except in its most concentrated solutions.

  6. Acid–base reaction - Wikipedia

    en.wikipedia.org/wiki/Acid–base_reaction

    In chemistry, an acid–base reaction is a chemical reaction that occurs between an acid and a base.It can be used to determine pH via titration.Several theoretical frameworks provide alternative conceptions of the reaction mechanisms and their application in solving related problems; these are called the acid–base theories, for example, Brønsted–Lowry acid–base theory.

  7. Hydroxyl radical - Wikipedia

    en.wikipedia.org/wiki/Hydroxyl_radical

    The hydroxyl radical can damage virtually all types of macromolecules: carbohydrates, nucleic acids , lipids (lipid peroxidation) and amino acids (e.g. conversion of Phe to m-Tyrosine and o-Tyrosine). The hydroxyl radical has a very short in vivo half-life of approximately 10 −9 seconds and a high reactivity. [5]

  8. Dr. David Perlmutter’s ‘Drop Acid’ Book Shares Truth About ...

    www.aol.com/entertainment/dr-david-perlmutter...

    Written by five-time New York Times bestselling author David Perlmutter, M.D., Drop Acid suggests that high levels of uric acid, an overlooked “waste product” of metabolism, can lead to many ...

  9. Fluoroantimonic acid - Wikipedia

    en.wikipedia.org/wiki/Fluoroantimonic_acid

    Fluoroantimonic acid is a mixture of hydrogen fluoride and antimony penta­fluoride, containing various cations and anions (the simplest being H 2 F + and Sb F − 6).This mixture is a superacid that, in terms of corrosiveness, is trillions of times stronger than pure sulfuric acid when measured by its Hammett acidity function.