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Titlebook: Science and Application of Nanotubes; M. F. Thorpe (Series Editor),D. Tománek,R. J. Enbo Book 2002 Springer Science+Business Media New Yor

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Jean-Christophe Charlier,Xavier Blase,Alessandro DeVita,Roberto Car number of entries. It is hoped that enough entries are now given to represent most structural groups and environments. Infrared spectroscopy as a tool for the identification of compounds can be used in conjunction with other methods, such as NMR and UV spectros­ copy, or alone to quickly establish
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Pavel N. D’yachkov,Oleg M. Keppon of this radiation has been followed into the centimetre and higher millimetre wavelength regions by a number of observers [2, 3, 4] confirming that it appeared to comprise the spectrum of thermal equilibrium radiation from a black body at a temperature close to 3 K. Indirect evidence setting uppe
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C.A. Cooper,R.J. Young this subject is the result of improved detection techniques, particularly the use of detectors at liquid helium temperatures. Unfortunately, the terrestrial atmosphere greatly restricts Infrared astronomers by allowing them to detect radiation only in narrow transmission win­ dows and by presenting
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Yongqiang Xue,Supriyo Dattasuch as indium antimonide or mercury cadmium telluride (MCT), whose bandgaps match the photon energy of the radiation to be detected. The MCT alloy system is the most versatile such system and can be used in detectors with cut-off wavelengths varying between at least 20 µm and 2 µm. The special purp
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M. P. Anantram,T. R. Govindannductor device research. In particular, the achievement of controlled .- and .-type doping of respective device constituents resulted in the development of short-wavelength light-emitting diodes, laser diodes, and high-temperature, high-power, high-frequency electronic devices [1, 2, 3, 4, 5, 6, 7]
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