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Titlebook: d-d Excitations in Transition-Metal Oxides; A Spin-Polarized Ele Bärbel Fromme Book 2001 Springer-Verlag Berlin Heidelberg 2001 Elektronen-

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Agressie: definitie en prevalentie,aratus is given in the following sections. The numbers in parentheses in the text correspond to the numbers in Fig. 4.1. The significant experimental parameters, such as energy resolution, primary polarization, and scattering angle, are summarized in Table 4.1.
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Bioconversion of hemicellulosics,d and discussed. Measurements of some transitions across the optical gap and of some dipole-allowed and dipole-forbidden excitations from upper core levels are also included. Most of the results and conclusions presented here have already been published [50, 51, 52, 53, 54, 55, 56]. References to th
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Formation of the Research Workerwide range of technical applications of these compounds. They have been used in lasers and catalysis for decades; their use in various sensors — e.g. for gases, high pressures, and magnetic fields — followed more recently. Not least a copper oxide is responsible for the occurrence of high-temperatur
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,Electron Energy-Loss Spectroscopy — Inelastic Electron Scattering,solids. In this method, advantage is taken of the possibility of .: incident electrons of fixed primary energy are inelastically scattered at the target, and the energy distribution of the scattered electrons is measured with respect to the incident electron energy. This energy distribution - the el
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Experiment,aratus is given in the following sections. The numbers in parentheses in the text correspond to the numbers in Fig. 4.1. The significant experimental parameters, such as energy resolution, primary polarization, and scattering angle, are summarized in Table 4.1.
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