Impact parameter: Difference between revisions
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| |acronym= | |||
| |def=Distance of closest approach of two particles if they had continued in their original directions of motion at their original speeds without the influence of intermolecular forces. | |||
| |rel= | |||
| = | |ref={{obgb}} | ||
| }} | |||
| <!-- Orange Book --> | |||
| {{orange| | |||
| The distance of closest approach of two particles if they had continued in their original direction of motion at their original speed. | The distance of closest approach of two particles if they had continued in their original direction of motion at their original speed. | ||
| }} | |||
| ==External links == | |||
| *[[Wikipedia:Scattering]] | |||
| [[Category:Reactions]] | [[Category:Reactions]] | ||
Latest revision as of 20:14, 5 January 2014
| IUPAC RECOMMENDATIONS 2013 | 
| Impact parameter | 
|---|
| Distance of closest approach of two particles if they had continued in their original directions of motion at their original speeds without the influence of intermolecular forces. | 
| Related Term(s): | 
| Reference(s): IUPAC. Analytical Division. Compendium of Analytical Nomenclature (the Orange Book). Definitive Rules, 1979. Compiled by J. Inczdy, T. Lengyel, A. M. Ure. Blackwell Scientific Publications, Oxford (1997). On-line corrected version: http://www.iupac.org /publications/analytical compendium (2000). IUPAC. Compendium of Chemical Terminology, 2nd ed. (the Gold Book). Compiled by A. D. McNaught and A.Wilkinson. Blackwell Scientific Publications, Oxford (1997). XML on-line corrected version: http://goldbook.iupac.org (2006-) created by M. Nic, J. Jirat, B. Kosata; updates compiled by A. Jenkins. | 
| From Definitions of Terms Relating to Mass Spectrometry (IUPAC Recommendations 2013); DOI: 10.1351/PAC-REC-06-04-06 © IUPAC 2013. | 
Orange Book
| ORANGE BOOK DEFINITION IUPAC. Analytical Division. Compendium of Analytical Nomenclature (the Orange Book). Definitive Rules, 1979 (see also Orange Book 2023) | 
| Impact parameter | 
|---|
| The distance of closest approach of two particles if they had continued in their original direction of motion at their original speed. | 
| IUPAC 1997 Orange Book Chapter 12 | 
| Index of Orange Book Terms | 
