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is the London coefficient in the particle–particle pair interaction. The magnitude of this constant reflects the strength of the vdW-force between two particles, or between a particle and a
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Seung-woo Lee and
Wolfgang M. Sigmund (23 May 2002). "AFM study of repulsive Van der Waals forces between Teflon AF thin film and silica or alumina".
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Hamaker's method and the associated
Hamaker constant ignores the influence of an intervening medium between the two particles of interaction. In 1956
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Hamaker, H. C. (1937). "The London – van der Waals attraction between spherical particles".
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Lifshitz, E.M. (1956). "The Theory of
Molecular Attractive Forces between Solids".
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The
Hamaker constant provides the means to determine the interaction parameter
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developed a description of the vdW energy but with consideration of the
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Colloids and
Surfaces A: Physicochemical and Engineering Aspects
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of this intervening medium (often a continuous phase).
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Physical constant related to Van der Waals interactions
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Soviet
Journal of Experimental and Theoretical Physics
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337:10.1016/S0031-8914(37)80203-7
45:(vdW) body–body interaction:
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269:regime, and the result is a
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446:List of inorganic compounds
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856:Enantioselective synthesis
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41:that can be defined for a
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1229:Nobel Prize in Chemistry
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258:{\displaystyle 1/r^{6};}
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1391:–related article is a
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329:1937Phy.....4.1058H
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461:Analytical
299:References
1258:Catalysis
766:Inorganic
560:Titration
425:chemistry
225:angstroms
174:−
136:substrate
86:ρ
76:ρ
63:π
29:(denoted
1324:Category
1280:Molecule
1217:See also
642:Physical
385:: 73–83.
277:See also
267:retarded
210:Lifshitz
126:are the
1336:Commons
1300:Alchemy
816:Organic
325:Bibcode
317:Physica
37:) is a
1348:Portal
494:UV-Vis
110:where
25:, the
1387:This
521:MALDI
489:Raman
1393:stub
1275:Atom
543:HPLC
219:The
1285:Ion
516:ICP
499:NMR
360:doi
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21:In
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159:(
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132:C
123:2
120:ρ
116:1
113:ρ
95:,
90:2
80:1
72:C
67:2
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56:A
31:A
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