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### Contents

July 1963 | 1 |

G F J GARLICK M SPRINGFORD and H CHECINSKA The infrared emission | 16 |

A BOSE and R CHATTERJEE Orthorhombic crystalline field theory of Ni2+ 6H2O | 23 |

13 other sections not shown

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absorption alloys angle angular approximation argon assumed atoms axis band Bloch Bloch wall calculated Chem coefficients collision component conduction band constant corresponding cross section crystal cubic curve density dependence derived detector determined direction discussed distribution effect electric field electron energy electron paramagnetic resonance emission equation estimate evaluated excited experimental expression factor ferromagnetic fluorine frequency given Hamiltonian Hartree-Fock increase integral interaction ionization ions lattice liquid magnetic field magnitude matrix measurements method mmHg molecules negative resistance neighbours neutron nuclear observed obtained optical orbitals paramagnetic parameters particle peak perturbation phonon Phys Physics plasma population density potential pressure Proc quantum radiation range ratio region resonance s-wave scattering showers shown in figure shows solution spectra spectrum spin surface temperature theoretical theory threshold transitions valence band values variation vector velocity voltage wave functions wavelength width zero