Lactic fermentation/Related Articles: Difference between revisions

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==Articles related by keyphrases (Bot populated)==
{{r|Fermentation (biochemistry)}}
{{r|Human heart}}
{{r|Mutation}}
{{r|Oxidation state}}
{{r|Reduction potential}}

Latest revision as of 11:00, 9 September 2024

This article is developing and not approved.
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A list of Citizendium articles, and planned articles, about Lactic fermentation.
See also changes related to Lactic fermentation, or pages that link to Lactic fermentation or to this page or whose text contains "Lactic fermentation".

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Auto-populated based on Special:WhatLinksHere/Lactic fermentation. Needs checking by a human.

  • Acidosis [r]: Condition noted for accumulation of acid (e.g., lactate ion) or depletion of alkaline reserves (bicarbonate ion) in blood and tissues. [e]
  • Adenosine triphosphate [r]: A molecule sometimes called the "energy currency" of a cell [e]
  • Alanine cycle [r]: A way for muscle cells to use amino acids as energy sources, while transferring to the liver the expensive task of dealing with the ammonium released from those amino acids. [e]
  • Fermentation (biochemistry) [r]: The process of deriving energy from the oxidation of organic compounds, such as carbohydrates, using an endogenous electron acceptor, which is usually an organic compound. [e]
  • PH [r]: A scale that measures the acidity or alkalinity of a solution, ranging from 0 (strongly acidic) to 14 (strongly alkaline). [e]

Articles related by keyphrases (Bot populated)

  • Fermentation (biochemistry) [r]: The process of deriving energy from the oxidation of organic compounds, such as carbohydrates, using an endogenous electron acceptor, which is usually an organic compound. [e]
  • Human heart [r]: The hollow, muscular organ that maintains the circulation of the blood. [e]
  • Mutation [r]: Changes to the DNA sequence that cause new genetic variation. [e]
  • Oxidation state [r]: A measure of the degree of oxidation of an atom in a substance. [e]
  • Reduction potential [r]: The tendency of a chemical species to acquire electrons and thereby be reduced. [e]