Strong Exchange

Strong exchange is an ion-exchange method that separates charged chemical species by their reversible electrostatic interactions with a stationary phase carrying permanently charged functional groups. In strong cation exchange, negatively charged groups bind positively charged ions, while strong anion exchange uses positively charged groups to retain anions; bound compounds are released when salt concentration or solution conditions disrupt these interactions. The method supports the separation, purification, and analysis of inorganic ions, peptides, proteins, and other charged molecules. Because the exchanger remains charged across a broad pH range, strong exchange can provide consistent selectivity in chemical and biochemical workflows.

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JoVE Core - Chemistry

Titration Calculations: Strong Acid - Strong Base

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2020

Calculating pH for Titration Solutions: Strong Acid/Strong Base A titration is carried out for 25.00 mL of 0.100 M HCl (strong acid) with 0.100 M of a strong base NaOH. The pH at different volumes of added base solution can be calculated as follows: (a) Titrant volume = 0 mL. The solution pH is due to the acid ionization of HCl. Because this is a strong acid, the ionization is complete and the hydronium ion molarity is 0.100 M. The pH of the solution is then: (b) Titrant volume = 12.50 mL.

Ion-Exchange Chromatography

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2023

Source: Laboratory of Dr. B. Jill Venton - University of Virginia Ion-exchange chromatography is a type of chromatography that separates analytes based on charge. A column is used that is filled with a charged stationary phase on a solid support, called an ion-exchange resin. Strong cation-exchange chromatography preferentially separates out cations by using a negatively-charged resin while strong anion-exchange chromatography preferentially selects out anions by using a positively-charged...

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JoVE Core - Analytical Chemistry
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Titration of a Strong Acid with a Strong Base

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2024

During the titration of a strong acid with a strong base, pH calculations are primarily based on the concentration of residual hydronium or hydroxide ions. Initially, a strong acid like hydrochloric acid fully dissociates, creating hydronium and chloride ions, resulting in a low pH. The addition of a strong base like sodium hydroxide alters the concentration of hydronium ions by neutralizing them. As more base is added, the pH gradually increases. At the equivalence point, all hydronium ions...

Strong Acid and Base Solutions

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2020

A strong acid is a compound that dissociates completely in an aqueous solution and produces a concentration of hydronium ions equal to the initial concentration of acid. For example, 0.20 M hydrobromic acid will dissociate completely in water and produces 0.20 M of hydronium ions and 0.20 M of bromide ions. On the other hand, a strong base is a compound that dissociates completely in an aqueous solution and produces hydroxide ions. For example, 0.015 M KOH, a group 1 metal hydroxide, will...

Heat Exchanger Analysis

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2023

Source: Alexander S Rattner and Christopher J Greer; Department of Mechanical and Nuclear Engineering, The Pennsylvania State University, University Park, PA Heat exchangers transfer thermal energy between two fluid streams, and are ubiquitous in energy systems. Common applications include car radiators (heat transfer from hot engine coolant to surrounding air), refrigerator evaporators (air inside refrigerator compartment to evaporating refrigerant), and cooling towers in power plants...

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