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Titlebook: Neutron Transmutation Doping in Semiconductors; Jon M. Meese Book 1979 Plenum Press, New York 1979 Potential.circuit.computer.energy.indus

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J. L. Bourdon,G. Restelliortzeiten zurückzuführen sind, gebildet. Die Messung von Transportkosten bzw. ihre Umrechnung in Allokationskosten ist allerdings problematisch, wenn die „lokale“ Distribution einen unabdingbaren Bestandteil des Lokations-Allokations-Modells darstellt und die Güterauslieferung innerhalb von Fahrzeug
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The NTD Process—A New Reactor Technologyhave taken place. In particular, we would like to thank John Cleland and Dick Wood of Oak Ridge National Laboratory for hosting the first NTD Conference and for suggesting that a second conference be held at the University of Missouri. Our sincere appreciation extends also to the Monsanto Corporatio
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Detection and Identification of Potential Impurities Activated by Neutron Irradiation of Czochralskidioactive isotopes that might result from activation of impurities initially present in the crystals. A computer study was used to predict the nuclides most likely to occur. Results from the two methods of analysis—radioactivity decay rate and gamma spectroscopy—were consistent with each other. Meth
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Nuclear Transmutation Doping from the Viewpoint of Radioactivity Formationn, Si-31 activity, surface contamination and P-32 activity stemming from the silicon are of significance. While the Si-31 activity will have decayed to zero after about 4 days, the surface contamination can be removed by an etching treatment applied to the silicon. The P-32 activity produced by furt
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Application of NTD Silicon for Power Deviceswidened drastically in concordance with the usual price pattern of semiconductor products..The yield impact in the device industry has completely changed the projected float zone silicon consumption for at least the next five years..A survey of these phenomena is presented.
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NTD Silicon on High Power Devicesoduce non-uniform electrical characteristics from device to device, especially in blocking voltage, forward voltage drop, and switching characteristics. Large area NTD (neutron transmutation doped) silicon. has become available from different suppliers since 1975. This type of silicon has a narrow r
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Role of Neutron Transmutation in the Development of High Sensitivity Extrinsic Silicon IR Detector Mindium or gallium doped silicon substrates. Considerations of detector operating temperature and sensitivity require that residual shallow acceptor impurities, such as boron, in these highly doped silicon substrates be compensated as closely as possible by donor impurities. Highly uniform and accura
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