Gell Mann Okubo Mass Formula. In physics the GellMann–Okubo mass formula provides a sum rule for the masses of hadrons within a specific multiplet determined by their isospin (I) and strangeness (or alternatively hypercharge) where a0 a1 and a2 are free parameters 40 relations.
GellMannOkubo mass formula [′gel¦män ‚ōku̇bō ¦mas ¦fȯrmyələ] (particle physics) A formula based on SU(3) symmetry giving the masses of the members of a unitary multiplet of mesons or baryons in terms of their total isotopic spin hypercharge and coefficients characteristic of the multiplet considered.
(PDF) GellMannOkubo Mass Formula Revisited Leonid
PDF fileA q deformation of GellMannOkubo mass formula B BAGCHI and S N BISWAS* Department of Applied Mathematics University of Calcutta 92 APC Road Calcutta 700 009 India Emailbbagchi@cubmbernetin *Department of Physics University of Delhi Delhi 110007 India MS received 2 November 1995 revised 13 February 1996 Abstract.
GellMann–Okubo mass formula. In physics, the GellMann–Okub
In physics the GellMann–Okubo mass formula provides a sum rule for the masses of hadrons within a specific multiplet determined by their isospin (I) and strangeness (or alternatively hypercharge) = + + [(+)] where a 0 a 1 and a 2 are free parameters.
(PDF) GellMannOkubo Mass Formula Revisited
GellMann–Okubo mass formula In physics the GellMann–Okubo mass formulaprovides a sum rulefor the masses of hadronswithin a specific multiplet determined by their isospin(I) and strangeness(or alternatively hypercharge) M = a 0 + a 1 Y + a 2 [.
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To explain the variation of masses of particles belonging to the same multiplet a mass formula was suggested by GellMann and S Okubo $ m _ {f} = ( Tff ) $ where $ f $ is the normalized weight vector representing a particle and $$ T = m _ {0} 1 + aY + b \left [ I ( I + 1 ) { \frac{1}{4} } Y ^ {2} \right ] $$.