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Thermal Noise in the Radial Flow of Current in
Relativistic Corrections to Charge Transfer Scattering
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Acta Physica approximation assumed atoms Budapest calculated coefficients compared condition considered constant contains contribution correction correlation corresponding curve decay density dependence derived described determined direction discussed distribution effect electron elements energy equations exchange exchange potential excited experimental expression fact factor field fireball formula frequency given gives Hartree–Fock increase integral intensity interaction ionization lattice leads light limit magnetic field mass mean measured mechanisms metals method mobility momentum obtained orbitals oscillator parameter particle phonon Phys physical possible potential present probability problem production properties quantum REFERENCES relations relative relaxation respectively scattering shown shows signal single solids solutions space statistical structure Table taken taking temperature theoretical theory tion transition UNIVERSITY variation volume wave function