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  1. Weak and strong should not be mistaken for dilute and concentrated. A dilute acid has the acid molecules mixed with a large amount of water, so that there is only a low concentration of H + ions.

  2. Sep 16, 2022 · Contributions & Attributions. 14.7: Strong and Weak Acids and Bases is shared under a CK-12 license and was authored, remixed, and/or curated by Marisa Alviar-Agnew & Henry Agnew. Acids are classified as either strong or weak, based on their ionization in water. A strong acid is an acid which is completely ionized in an aqueous solution.

  3. Aug 29, 2014 · As a general rule: Strong acid + Strong base $\rightarrow$ Neutral solution. Strong acid + weak base $\rightarrow$ acidic solution. Weak acid + Strong base $\rightarrow$ Basic solution. That's not true. The only time in which these rules are true is when you have an equimolar concentration of the acid and base in question, and the acids and ...

  4. Neutralisation is the reaction between an acid and a base. Part of ... or as a verb to describe the process of adding more water to a solution to decrease its concentration. Strong and weak acids ...

  5. Jan 7, 2011 · pH. An acid dissociates into H + in solution according to: HA → H+ + A-. The stronger the acid, the greater the concentration of H+ and therefore the lowerthepH. pH value of a strong acid & base table. The most accurate way to determine the pH is by reading it off a pH meter. The pH meter is connected to the pH electrode which shows the pH ...

  6. Apr 20, 2023 · A base that is a strong electrolyte is called a strong base, while a base that is a weak electrolyte is called a weak base. Classifying acids or bases as strong or weak has nothing to do with their concentration. It is possible to have a dilute solution of a strong acid or base and it is also possible to have a concentrated solution of a weak ...

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  8. Under standard conditions, water will self-ionize to a very small extent. The self-ionization of water refers to the reaction in which a water molecule donates one of its protons to a neighboring water molecule, either in pure water or in aqueous solution. The result is the formation of a hydroxide ion (OH -) and a hydronium ion (H 3 O +).

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