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Mathematical and physical development of the basic assump
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According to eq at-particle belonging boundary conditions calculated central potential centre of mass circularly polarized classical mechanics co-ordinates commute components constant corresponding decay deﬁned deﬁnition deuteron discussed eﬂect eigen eigenstate electron energy eigenfunctions energy eigenvalues example expectation value exponential fact factor fermions ﬁnal ﬁnd ﬁnite ﬁrst ﬁrst order ﬁrst term ﬁt ﬁxed ﬂux free particles Hamiltonian harmonic oscillator Hermitian operator hydrogen atom identiﬁed inﬁnite integral interaction involved kinetic energy magnetic ﬁeld magnetic quantum magnetic quantum number matrix elements momenta multiplicative negative neutron normalized nuclear observables Obviously orbital angular momentum orthogonal parity perturbation phase space photons position probability density potential energy quantization quantum mechanics radial radius represented result satisﬁed scalar product scattering Schrodinger equation Schrodinger’s second term shift operators simpliﬁed solution speciﬁed spherical spin angular stationary state wave total energy transition rate Uncertainty Principle vector velocity W.K.B. approximation wave function Zeeman zero