Relation between shape of liquid-gas interface and evolution of buoyantly unstable three-dimensional chemical fronts
Author:
Publisher
American Physical Society (APS)
Subject
Industrial and Manufacturing Engineering,Metals and Alloys,Strategy and Management,Mechanical Engineering
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevE.88.033023/fulltext
Reference24 articles.
1. Chemical waves in the acidic iodate oxidation of arsenite
2. Detailed studies of propagating fronts in the iodate oxidation of arsenous acid
3. Convective effects on chemical waves. 1. Mechanisms and stability criteria
4. Coarsening in the buoyancy-driven instability of a reaction-diffusion front
5. Influence of External Electric Fields on Reaction Fronts in the Iodate−Arsenous Acid System
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1. Acceleration of chemical reaction fronts;The European Physical Journal Special Topics;2018-09
2. Acceleration of chemical reaction fronts;The European Physical Journal Special Topics;2018-09
3. Effects of the Starch Indicator on the Buoyantly Unstable Iodate-Arsenous Acid Reaction Front;ChemistrySelect;2017-08-22
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