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MUTUAL INTERACTION EFFECTS
THE NATURE OF FERROMAGNETISM
7 other sections not shown
accelerated action analysis angular velocity anomalous applied assumed assumption atomic nucleus axis balance basic binding energy Bohr Bohr Magneton calculate centre Chapter charge in motion component constant continuum deduced denote deuteron develop direction displacement disturbance dynamic electric field earth Einstein's theory electric charge electric field energy electromagnetic reference frame electromagnetic wave electron-positron pair electrons and positrons electrostatic energy elementary particles energy density equal equation evaluation explained ferromagnetic force frequency G frame gravitation graviton gyromagnetic ratio H particle hj2n inertial frame interaction energy intrinsic involved kinetic energy lattice particles linear magnetic energy magnetic field magnetic field energy mass density mass energy matter measured meson Michelson-Morley experiment moving mutual negative neutron nuclear nucleons observation particle form perihelion planet polarity positive positron problem quantity quantum radiation radius ratio reacting charge relative result rotating shown solar system space space-time lattice space-time system spin properties wave mechanics zero