Magnetic deflection: Difference between revisions
From Mass Spec Terms
(→[[Orange Book]] Entry: clean up using AWB) |
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{{DefName|The deflection of charged particles in a magnetic field due to a force equal to q'''v''' × '''B''' where q is the particle charge, '''v''' its velocity and '''B''' the [[magnetic field]]. Magnetic deflection of an ion beam is used for ''[[m/z]]'' separation in a [[magnetic sector]] [[mass spectrometer]].}} | {{DefName|The deflection of charged particles in a magnetic field due to a force equal to q'''v''' × '''B''' where q is the particle charge, '''v''' its velocity and '''B''' the [[magnetic field]]. Magnetic deflection of an ion beam is used for ''[[m/z]]'' separation in a [[magnetic sector]] [[mass spectrometer]].}} | ||
== Orange Book | == Orange Book entry == | ||
{{orange| | {{orange| | ||
The deflection of an ion beam as a result of the motion of the ions in a magnetic field (the [[magnetic sector]]). Motion is generally at right angles to the direction of the magnetic field. | The deflection of an ion beam as a result of the motion of the ions in a magnetic field (the [[magnetic sector]]). Motion is generally at right angles to the direction of the magnetic field. |
Revision as of 23:11, 13 July 2009
DRAFT DEFINITION |
Magnetic deflection |
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The deflection of charged particles in a magnetic field due to a force equal to qv × B where q is the particle charge, v its velocity and B the magnetic field. Magnetic deflection of an ion beam is used for m/z separation in a magnetic sector mass spectrometer. |
Considered between 2004 and 2006 but not included in the 2006 PAC submission |
This is an unofficial draft definition presented for information and comment. |
Orange Book entry
Orange Book
ORANGE BOOK DEFINITION
IUPAC. Analytical Division. Compendium of Analytical Nomenclature (the Orange Book). Definitive Rules, 1979 (see also Orange Book 2023) |
Magnetic deflection |
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The deflection of an ion beam as a result of the motion of the ions in a magnetic field (the magnetic sector). Motion is generally at right angles to the direction of the magnetic field. |
IUPAC 1997 Orange Book Chapter 12 |
Index of Orange Book Terms |