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Titlebook: RFID - Leitfaden für die Logistik; Anwendungsgebiete, E Werner Franke,Wilhelm Dangelmaier Book 2006 Gabler Verlag | Springer Fachmedien Wie

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lymers to the conditions encountered during manufacture or the operation of the devices. It has been shown that photoelectron spectroscopy, in combination with quantum mechanical calculations, is well suited for characterisation of conjugated polymers, which in many cases behave as nearly one-dimens
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lymers to the conditions encountered during manufacture or the operation of the devices. It has been shown that photoelectron spectroscopy, in combination with quantum mechanical calculations, is well suited for characterisation of conjugated polymers, which in many cases behave as nearly one-dimens
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be dramatic, leading to structural and electronic instabilities—including supercond- tivity at high temperatures, charge density waves, and localisation—which continue to attract widespread interest. The layered transition metal dichalcogenides have engaged attention for many years, partly arising f
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ectron in-electron out” but, where appropriate, also those according to “electron in-photon out” or vice versa. The former group comprises .uger .lectron .pectroscopy (AES), .onization .oss .pectroscopy (ILS), .is.ppearance .otential .pectroscopy (DAPS), .uger .lectron .ppearance .otential .pectrosc
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ectron in-electron out” but, where appropriate, also those according to “electron in-photon out” or vice versa. The former group comprises .uger .lectron .pectroscopy (AES), .onization .oss .pectroscopy (ILS), .is.ppearance .otential .pectroscopy (DAPS), .uger .lectron .ppearance .otential .pectrosc
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nd thin- film microelectronics. The electronic processes that take place at solid surfaces are of vital importance in such phenomena as chemisorption and heterogeneous catalysis. At present, solid surfaces may be characterized not only by vacuum ultraviolet spectroscopy, but also by means of X-ray p
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phenomena are briefly considered. The first aspect is the structure and action mechanism of the system of conversion of light energy into chemical energy in the primary charge photoseparation in bacterial and plant photosynthesis. This system is an unique device which almost ideally organized for c
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