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FORMAL THEORY OF SCATTERING
INTEGRAL EQUATION FORMULATION
6 other sections not shown
asymptotic form Boltzmann equation Boltzmann statistics boundary condition calculation center of mass chapter classical conservation theorem considered convenient coordinates cross section coefficients Curtiss defined denote derived diametrically opposite diatomic molecules differential cross section differential equation elastic energy Eulerian angles evaluated expansion coefficients factor Fermi-Dirac final formal theory Green's function H-theorem Hankel functions impact parameter indices inelastic initial wave integral equation interaction internal parameters internal wave internal wave functions inverse collisions irreducible representations kinetic theory method motion needed notation noted occur one-dimensional orthogonality perturbation Phys potential function problem properties quantum mechanics quantum numbers relation representation coefficients result rigid bodies rotation group satisfy section for scattering seen similarly solid angle solution solved sphere spherical harmonics Substitution summation theorems theory of gases tion transition cross sections unpolarized beams valid values variables vector velocity vibrational wave function Wave packet Wigner coefficients written yields zero unless