Or charge independence implies that when mass independence and time independence are both incorporated in a physical theory the result is a theory of charge independence. Charge independence can also be called a principle for describing a theory of the strong nuclear color forces of quarks.
The experimental evidence for binding energy equivalence of mirror nuclei (e.g. helium-3 and tritium) strongly suggests that strong nuclear force is charge independence. A theory of charge independence would be able to establish a principle of equivalence for absolute local infinitesimal acceleration and local infinitesimal spatial frequency of quantized space-time. This is analogous to the equivalence of inertial mass and gravitational mass in a global perspective found in general relativity. Although the functional correspondence between inertial mass and gravitational mass is one-to-one, that of local infinitesimal acceleration and local spatial frequency is a many-to-many dysfunctional correspondence.


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