Book contents
- Frontmatter
- PREFACE
- Contents
- ERRATA
- NOTES OF LECTURES ON MOLECULAR DYNAMICS AND THE WAVE THEORY OF LIGHT
- ADVERTISEMENT
- LECTURE I
- LECTURE II
- LECTURE III
- LECTURE IV
- LECTURE V
- LECTURE VI
- LECTURE VII
- LECTURE VIII
- LECTURE IX
- LECTURE X
- LECTURE XI
- LECTURE XII
- LECTURE XIII
- LECTURE XIV
- LECTURE XV
- LECTURE XVI
- LECTURE XVII
- LECTURE XVIII
- LECTURE XIX
- LECTURE XX
- APPENDIX A ON THE MOTION PRODUCED IN AN INFINITE ELASTIC SOLID BY THE MOTION THROUGH THE SPACE OCCUPIED BY IT OF A BODY ACTING ON IT ONLY BY ATTRACTION OR REPULSION
- APPENDIX B NINETEENTH CENTURY CLOUDS OVER THE DYNAMICAL THEORY OF HEAT AND LIGHT
- APPENDIX C ON THE DISTURBANCE PRODUCED BY TWO PARTICULAR FORMS OF INITIAL DISPLACEMENT IN AN INFINITELY LONG MATERIAL SYSTEM FOR WHICH THE VELOCITY OF PERIODIC WAVES DEPENDS ON THE WAVE-LENGTH
- APPENDIX D ON THE CLUSTERING OF GRAVITATIONAL MATTER IN ANY PART OF THE UNIVERSE
- APPENDIX E AEPINUS ATOMIZED
- APPENDIX F
- APPENDIX G HYDROKINETIC SOLUTIONS AND OBSERVATIONS
- APPENDIX H ON THE MOLECULAR TACTICS OF A CRYSTAL
- APPENDIX I ON THE ELASTICITY OF A CRYSTAL ACCORDING TO BOSCOVICH
- APPENDIX J MOLECULAR DYNAMICS OF A CRYSTAL
- APPENDIX K ON VARIATIONAL ELECTRIC AND MAGNETIC SCREENING
- APPENDIX L ELECTRIC WAVES AND VIBRATIONS IN A SUBMARINE TELEGRAPH WIRE
- INDEX
APPENDIX J - MOLECULAR DYNAMICS OF A CRYSTAL
Published online by Cambridge University Press: 05 March 2012
- Frontmatter
- PREFACE
- Contents
- ERRATA
- NOTES OF LECTURES ON MOLECULAR DYNAMICS AND THE WAVE THEORY OF LIGHT
- ADVERTISEMENT
- LECTURE I
- LECTURE II
- LECTURE III
- LECTURE IV
- LECTURE V
- LECTURE VI
- LECTURE VII
- LECTURE VIII
- LECTURE IX
- LECTURE X
- LECTURE XI
- LECTURE XII
- LECTURE XIII
- LECTURE XIV
- LECTURE XV
- LECTURE XVI
- LECTURE XVII
- LECTURE XVIII
- LECTURE XIX
- LECTURE XX
- APPENDIX A ON THE MOTION PRODUCED IN AN INFINITE ELASTIC SOLID BY THE MOTION THROUGH THE SPACE OCCUPIED BY IT OF A BODY ACTING ON IT ONLY BY ATTRACTION OR REPULSION
- APPENDIX B NINETEENTH CENTURY CLOUDS OVER THE DYNAMICAL THEORY OF HEAT AND LIGHT
- APPENDIX C ON THE DISTURBANCE PRODUCED BY TWO PARTICULAR FORMS OF INITIAL DISPLACEMENT IN AN INFINITELY LONG MATERIAL SYSTEM FOR WHICH THE VELOCITY OF PERIODIC WAVES DEPENDS ON THE WAVE-LENGTH
- APPENDIX D ON THE CLUSTERING OF GRAVITATIONAL MATTER IN ANY PART OF THE UNIVERSE
- APPENDIX E AEPINUS ATOMIZED
- APPENDIX F
- APPENDIX G HYDROKINETIC SOLUTIONS AND OBSERVATIONS
- APPENDIX H ON THE MOLECULAR TACTICS OF A CRYSTAL
- APPENDIX I ON THE ELASTICITY OF A CRYSTAL ACCORDING TO BOSCOVICH
- APPENDIX J MOLECULAR DYNAMICS OF A CRYSTAL
- APPENDIX K ON VARIATIONAL ELECTRIC AND MAGNETIC SCREENING
- APPENDIX L ELECTRIC WAVES AND VIBRATIONS IN A SUBMARINE TELEGRAPH WIRE
- INDEX
Summary
§ 1. The object of this communication is to partially realise the hope expressed at the end of my paper of July 1 and July 15, 1889, on the Molecular Constitution of Matter:—“The mathematical investigation must be deferred for a future communication, when I hope to give it with some further developments.” The italics are of present date.
Following the ideas and principles suggested in §§ 14—20 of that paper (referred to henceforth for brevity as “M. C. M.”), let us first find the work required to separate all the atoms of a homogeneous assemblage of a great number n of molecules to infinite distances from one another. Each molecule may be a single atom, or it may be a group of i atoms (similar to one another or dissimilar, as the case may be) which makes the whole assemblage a group of i assemblages, each of n single atoms.
§ 2. Remove now one molecule from its place in the assemblage to an infinite distance, keeping unchanged the configuration of its constituent atoms, and keeping unmoved every atom remaining in the assemblage. Let W be the work required to do so. This is the same for all the molecules within the assemblage, except the negligible number of those (§ 30 below) which are within influential distance of the surface. Hence ½nW is the total work required to separate all the n molecules of the assemblage to infinite distances from one another.
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- Publisher: Cambridge University PressPrint publication year: 2010First published in: 1904