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  2. RICE chart - Wikipedia

    en.wikipedia.org/wiki/RICE_chart

    The fourth row, labeled E, is the sum of the first two rows and shows the final concentrations of each species at equilibrium. It can be seen from the table that, at equilibrium, [H +] = x. To find x, the acid dissociation constant (that is, the equilibrium constant for acid-base dissociation) must be specified.

  3. Bjerrum plot - Wikipedia

    en.wikipedia.org/wiki/Bjerrum_plot

    3 (i.e. the first acid dissociation constant for carbonic acid), K 2 is the equilibrium constant for the reaction HCO − 3 ⇌ H + + CO 2− 3 (i.e. the second acid dissociation constant for carbonic acid), and DIC is the (unchanging) total concentration of dissolved inorganic carbon in the system, i.e. [CO 2] + [HCO − 3] + [CO 2− 3].

  4. Acid dissociation constant - Wikipedia

    en.wikipedia.org/wiki/Acid_dissociation_constant

    Carbonic acid equilibria are important for acidbase homeostasis in the human body. An amino acid is also amphoteric with the added complication that the neutral molecule is subject to an internal acidbase equilibrium in which the basic amino group attracts and binds the proton from the acidic carboxyl group, forming a zwitterion.

  5. Charlot equation - Wikipedia

    en.wikipedia.org/wiki/Charlot_equation

    The Henderson–Hasselbalch equation assumes that the autoionization of water is negligible and that the dissociation or hydrolysis of the acid and the base in solution are negligible (in other words, that the formal concentration is the same as the equilibrium concentration). For an acid-base equilibrium such as HA ⇌ H + + A −, the Charlot ...

  6. Henderson–Hasselbalch equation - Wikipedia

    en.wikipedia.org/wiki/Henderson–Hasselbalch...

    The equilibrium constant for the protonation of a base, B, + H + ⇌ + is an association constant, K b, which is simply related to the dissociation constant of the conjugate acid, BH +. = The value of is ca. 14 at 25 °C. This approximation can be used when the correct value is not known.

  7. Acid–base titration - Wikipedia

    en.wikipedia.org/wiki/Acidbase_titration

    acid + base → salt + water. For example: HCl + NaOH → NaCl + H 2 O. Acidimetry is the specialized analytical use of acid-base titration to determine the concentration of a basic (alkaline) substance using standard acid. This can be used for weak bases and strong bases. [8] An example of an acidimetric titration involving a strong base is as ...

  8. Pitzer equations - Wikipedia

    en.wikipedia.org/wiki/Pitzer_equations

    Values for the parameters β (0), β (1) and C for inorganic and organic acids, bases and salts have been tabulated. [16] Temperature and pressure variation is also discussed. One area of application of Pitzer parameters is to describe the ionic strength variation of equilibrium constants measured as concentration quotients.

  9. Determination of equilibrium constants - Wikipedia

    en.wikipedia.org/wiki/Determination_of...

    This is suitable for all acidbase equilibria. log 10 β values between about 2 and 11 can be measured directly by potentiometric titration using a glass electrode . This enormous range of stability constant values (ca. 100 to 10 11 ) is possible because of the logarithmic response of the electrode.