Oredox-electrochemistryReviewed

Oxidation

Notation: —

Loss of electrons; increase in oxidation number.

FULL EXPLANATION

Loss of electrons; increase in oxidation number.

Oxidation

Loss of electrons; increase in oxidation number.

Short definition

Loss of electrons; increase in oxidation number.

Full explanation

Oxidation in the context of redox electrochemistry: Loss of electrons; increase in oxidation number. In practice this means relating macroscopic observation (mass, pressure, color), particle-level picture (atoms, electrons, ions moving and rearranging), and symbolic representation (formulas, equations, units). For Oxidation, students connect the definition to linked lessons: do not just memorize the phrase — predict what changes when conditions change and check with dimensional analysis.

Notation and units

  • Notation:
  • Common units: SI or derived, temperature in kelvins when in gas/energy contexts.
  • Symbolic hint: See related formula if applicable.

Example

Example for oxidation: In a worked problem where this term appears, substitute measured values with correct units and check that the dimensional result matches the intended quantity. For instance, calculating a oxidation often uses the form n=m/Mn=m/M or c=n/Vc=n/V or PV=nRTPV=nRT with TT in kelvins — illustrating how oxidation leads to a numerically different but dimensionally correct result when units are handled.

Confused with

  • Reduction — distinction: Oxidation is loss of electrons; increase in oxidation number. while Reduction has a different defining property. See cross-link in glossary.

Sources

Last reviewed: 2026-08-21 — Review due: 2027-08-21 — Author: Chemistry Fundamentals Editorial Team — Reviewer: Editorial Review Board (transparent placeholder).

Correction? See Corrections Policy and Contact.

Confused with

Reduction

Do not confuse Oxidation with Reduction. See glossary cross-links.

C
Chemistry Fundamentals Editorial TeamAuthor
E
Editorial Review BoardReviewer

Editorial Team — transparent review placeholder

Reviewed August 21, 2026

SOURCES

  1. [nist-2022]NIST Reference (2022). NISThttps://physics.nist.gov/constants
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Last reviewed: 21/8/2026 · Sources · Corrections

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