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Electron cyclotron resonance sources. --- Plasma (Ionized gases) --- Heavy ions.
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The editors have pleasure in presenting this volume of our review series. We have specialised in three areas: perturbation Monte Carlo, non-linear kinetics and the transfer of radioactive fluids in rocks. These contributions are linked, however, in the demands for optimising complex systems that are a feature of the scale of nuclear power production. Kuniharu Kishida’s account of Japanese thinking in the application of modern non-linear theory to reactor kinetics and control comes at a time when the community of control scholars is seeking how to apply the new ideas that have led to the prominence of chaos theory to our field. Pr- lems of maintenance in power reactors are as severe as ever and must be solved for credibility to characterise any new program. As much as 30% of unanticipated down-time, for example, is due to the failure of motor op- ated valves. We need a theory to provide for preventive maintenance. This in turn depends heavily on on-line monitoring to anticipate failure as well as expert systems to schedule preventive treatment. Noise theory with its promise of on-line interpretation of information from inchoate breakdown is the key. It is all too likely that the need to deal with major departures makes a non-linear theory of noise essential. We can be grateful that P- fessor Kishida has provided us with such a consistent account.
Nuclear engineering. --- Nuclear physics. --- Nuclear Physics, Heavy Ions, Hadrons. --- Nuclear Energy. --- Heavy ions. --- Nuclear energy. --- Neutron transport theory.
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The 1995 conference was organized around two closely related themes and focused on the two pivotal aspects of energy, that is, economics and politics, both of which are decisive in providing long-term national and international strategies for the next century. Originally the program was going to include the participants from the new oil powers in Central Asia and Caucasus, newly independent from the former U.S.S.R. However, probably both economics and politics prevented their participation. Global energy projections, technological changes such as nuclear power and the fuel geopolitics of the coming century will be the basis for political and strategic planning. Based on the scenarios of likely global economic and population growth and of new energy technologies, what are foreseeable scenarios for the geopolitics of energy a half century ahead? What fresh worldwide systems should we start now? The political problems with profound economic impact could include, for example, the significance of the continuing worldwide growth of nuclear power, with such issues as the use of Highly Enriched Uranium (HEU) and Plutonium obtained from the dismantling of U.S. and former U.S.S.R. nuclear weapons; the urgency of nonproliferation; the disposal of civilian and military nuclear waste; and, nuclear power alternatives. In spite of U.S. reluctance, the increasing role of nuclear power is becoming apparent in several countries, and its potential has become an important political factor today.
Power resources --- Energy policy --- Environmental sciences. --- Nuclear physics. --- Environment, general. --- Nuclear Physics, Heavy Ions, Hadrons. --- Environment. --- Heavy ions.
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Chemistry of complexes --- fysicochemie --- Metal ions --- Nucleic acid probes --- Oligosondes --- Physiological effect
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Complex ions --- Ion bombardment --- Ion implantation --- Ion plating --- Protective coatings --- Congresses --- Congresses --- Congresses --- Congresses --- Congresses
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Carbocations --- Congresses --- 547-128.4 <063> --- -Onium ions --- Organic chemistry--?-128.4--Congressen --- -Organic chemistry--?-128.4--Congressen --- 547-128.4 <063> Organic chemistry--?-128.4--Congressen --- -547-128.4 <063> Organic chemistry--?-128.4--Congressen --- Onium ions --- Carbocations - Congresses
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Spectrometry, X-Ray Emission. --- Electrons. --- Ions. --- Radiometry. --- Cross sections (Nuclear physics) --- Electrons --- Secondary electron emission --- Sections efficaces (Physique nucléaire) --- Spectra --- Secondary electron emission. --- Cross sections (Nuclear physics). --- Spectra.
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Proteins --- Nucleic acids --- Biotechnology. --- Analysis. --- Mass spectrometry. --- Mass spectrometry --- methods --- Ions --- Biotechnology --- peptides --- proteins --- Carbohydrates --- Nucleotides --- 57.08 --- #WDIR:vfm2 --- 543.51 --- Massaspectrometrie --- 57.08 Biological techniques. Experimental methods. Equipment --- Biological techniques. Experimental methods. Equipment --- Mass spectra --- Mass spectrograph --- Mass spectroscopy --- Mass spectrum analysis --- Mass (Physics) --- Nuclear spectroscopy --- Spectrum analysis --- Chemical engineering --- Genetic engineering --- Analysis --- Proteins - Analysis. --- Nucleic acids - Analysis.
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