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for deconvolution. The analysis of electron and relaxation time spectra obtained from the results of appropriate physical experiments;
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This book is devoted to experimental and theoretical investigations on intimate interrelations between morphology, intra-gap and near-band;
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electron mobility. It presents numerical calculations of scattering rate, relaxation time, and mobility for typical semiconductors with bulk;
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) is studied. In addition, experimental aspects relevant to the applications are discussed. Mathematical background material is given in appendices.;
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experimental implementation. The authors carefully explain and relate for the reader how measurements are connected to the core physical principles;
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experimental implementation. The authors carefully explain and relate for the reader how measurements are connected to the core physical principles;
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Experimental and theoretical aspects of crystal growth and its applications, e.g. in devices, are within the scope of these new books;
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This book presents a systematic, comprehensive and up-to-date description of the physical basis of the balance equation transport theory;
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tunnelling spectra of electron-doped cuprates, identification of the bulk pairing symmetry in high-temperature superconductors.Students and;
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Experimental and theoretical aspects of crystal growth and its applications, e.g. in devices, are within the scope of these new books;
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Experimental and theoretical aspects of crystal growth and its applications, e.g. in devices, are within the scope of these new books;
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As the first comprehensive introduction into the rapidly evolving field of spintronics, this textbook covers ferromagnetism in nano;
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physical parameters, called relaxation times, tend to zero. The main concern of this volume is the mathematical justification of the relaxation;
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field: bulk semiconductors, two-dimensional semiconductor structures, quantum dots, optical and electric effects, spin-related effects, electron;
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, such as cryo-electron microscopy, atomic force microscopy and mass spectrometry with the latest results on the biophysical and mathematical;
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), that focus on micronano-electronics and optoelectronicsNano-photonics, to cover not only the technologies, but also the applications ranging;
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engineering. It also covers the tunneling electron microscope (TEM), experimental aspects of data collection, data processing, and examples from;
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engineering. It also covers the tunneling electron microscope (TEM), experimental aspects of data collection, data processing, and examples from;
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electron liquid in a broad variety of systems, including metals, semiconductors, artificial nano-structures, atoms and molecules. One, two and;
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knowledge of atomic spectra because of their significance to their own work.Treatment throughout is physical rather than mathematical, with;
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The book is devoted to theoretical investigations of interrelations in between morphology, single-electron spectrum, and optical properties;
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due to the relevance in modern high technology. Yet there exist hardly any books on the subject which try to give a comprehensive overview on;
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under magnetic quantization and on the basis of carrier energy spectra. The influences of magnetic field, magneto inversion, and magneto nipi;
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Insulators provides researchers and graduate students with the physical understanding and mathematical tools needed to embark on research in this;
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discuss experimental and theoretical methods for interpreting vibrational spectra. It is shown how vibrational spectroscopy provides information;
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through the modern experimental techniques and results. The classic independent-electrons approach for describing the electronic structure;
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food sector. The book brings science and applications together on the nano-scale into nano-structured food materials, with an emphasis on their;
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