Abstract

Topological particle theory is applied to the computation of elementary-hadron coupling constants. All are determined through topological supersymmetry by a single dimensionless "zero-entropy" constnat ${g}_{0}$. The predicted coupling-constant ratios encompass and justify those of Mandelstam. The universality conjecture, ${g}_{0}=e$, is supported (to 6%) by the accurately measured value of the pion-nucleon coupling constant. An explanation emerges for the experimental failure to find baryonium.

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