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The Journal of Nuclear Science and Technology (JNST) publishes internationally peer-reviewed papers that contribute to the exchange of research, ideas and developments in the field of nuclear science and technology, to contribute peaceful and sustainable development of the World.First established by the Atomic Energy Society of Japan (AESJ) in 1964, JNST is published bimonthly in print and monthly online. JNST is continued to be organized by, and an official publication of AESJ. The journal is listed in Thomson Scientific’s Science Citation Index (SCI).JNST aims to serve its academic community, industry professionals, research institutions, government agencies and policy-makers concerned with the research, technological development and application of nuclear science and technology by:Providing authoritative and up-to-date information on the field of nuclear science and technologyPromoting the exchange of ideas and research within the nuclear/atomic science communityIdentifying areas of growth by assessing the conditions and constraints affecting the peaceful use of nuclear energySupporting the development of nuclear technology and applications in various markets for peaceful purposesResponding to global energy and environmental needs and objectives through the study of nuclear science, technology and resourcesJNST ’s broad scope covers a wide range of topics within its subject category, including but are not limited to:General Issues related to Nuclear Power Utilization: Philosophy and Ethics, Justice and Policy, International Relation, Economical and Sociological Aspects, Environmental Aspects, Education, Documentation and Database, Nuclear Non-Proliferation, Safeguard Radiation, Accelerator and Beam Technologies: Nuclear Physics, Nuclear Reaction for Engineering, Nuclear Data Measurement and Evaluation, Integral Verification/Validation and Benchmark on Nuclear Data, Radiation Behaviors and Shielding, Radiation Physics, Radiation Detection and Measurement, Accelerator and Beam Technology, Synchrotron Radiation, Medical Reactor and Accelerator, Neutron Source, Neutron TechnologyNuclear Reactor Physics: Reactor Physics Experiments, Reactor Neutronics Design and Evaluation, Reactor Analysis, Neutron Transport Calculation, Reactor Dynamics Experiment, Nuclear Criticality Safety, Fuel Burnup and Nuclear Transmutation,Reactor Instrumentation and Control, Human-Machine System: Reactor Instrumentation and Control System, Human Factor, Control Room and Operator Interface Design, Remote Control, Robotics, Image ProcessingThermal Hydraulics: Thermal Hydraulic Experiment and Analysis, Thermal Hydraulic Design, Thermal Hydraulics of Single/Two/Multi Phase Flow, Interactive Phenomena with Fluid, Measurement TechnologyOperational Management of Reactor, Nuclear Safety Engineering: Operational Management, Inspection and Maintenance, Design of Nuclear Power Station and Component, Aseismatic Design, Construction and Examination of Nuclear Power Station, Nuclear Safety Engineering, Nuclear Installation Safety, PSANuclear Materials and Nuclear Fuels: Fabrication/Development and Properties of Nuclear Materials and Fuels, Corrosion and Environmentally Assisted Cracking, Solid State Chemistry of Actinide Compounds as Fuels, Thermodynamics and High Temperature Chemistry of Fuels, Irradiation Behavior and Characteristics of Materials and Fuels, Irradiation Technique and Post-Irradiation ExperimentsReactor Chemistry, Radiochemistry, Fuel Reprocessing, Safeguards Technology: Reactor Chemistry, Radiation Chemistry, Corrosion, Decontamination, Isotope Separation, Application of Isotopes, Uranium Enrichment, Nuclear Chemistry, Radiochemistry, Chemistry of Actinides, Fuel Reprocessing, Group Partitioning, Nuclear Transmutation and Partitioning Process, Accountancy, Safeguards TechnologyRadioactive Waste Management: Radioactive Waste Treatment, Radioactive Waste Disposal and Environment, Decommissioning and Dismantling, Design and Manufacturing of Transportation Vessel and Storage Facility Fusion Energy Engineering : Plasma Engineering including Inertial Confinement Fusion, Fusion Reactor Materials and Fuels, Breeding Materials, Reactor Component Technology, Fusion Neutronics, Fusion Reactor Safety, Fusion Reactor SystemHealth Physics and Environmental Science: Medical and Biological Application of Radiation, Nuclear Medicine, Biological Effects, Radiation and Radioactivity Measurement, Radiation Dosimetry, Radiation Control, Environmental Radioactivity, Radiation Dose and Environmental Safety Assessments, Philosophy and Standards for Radiation Protection
《核科學與技術雜志》(JNST)發表國際同行評議論文,促進核科學與技術領域的研究、想法和發展交流,促進世界和平與可持續發展。日本原子能學會(AESJ)于1964年首次成立JNST,每月出版一次,每月出版一次,每月在線出版一次。JNST繼續由AESJ組織,并正式出版。該期刊被列在湯姆森科學公司的科學引文索引(SCI)中。JNST旨在通過以下方式為其學術界、行業專業人士、研究機構、政府機構和與核科學技術的研究、技術開發和應用有關的決策者提供服務:提供有關核科學和技術領域的權威和最新信息促進核/原子科學界的思想和研究交流通過評估影響和平利用核能的條件和限制來確定增長領域為和平目的支持核技術的發展和在各個市場的應用通過核科學、技術和資源研究,響應全球能源和環境需求和目標JNST的廣泛范圍涵蓋其主題類別內的廣泛主題,包括但不限于:與核電利用有關的一般問題:哲學與倫理學、正義與政策、國際關系、經濟與社會學、環境、教育、文件與數據庫、核不擴散、保障輻射、加速器和束技術:核物理、工程核反應、核數據測量和評估、核數據的整體驗證/驗證和基準、輻射行為和屏蔽、輻射物理、輻射探測和測量、加速器和束技術、同步輻射,醫療反應堆和加速器、中子源、中子技術核反應堆物理:反應堆物理實驗、反應堆中子學設計和評估、反應堆分析、中子輸運計算、反應堆動力學實驗、核臨界安全、燃料燃耗和核蛻變,反應堆儀表和控制、人機系統:反應堆儀表和控制系統、人為因素、控制室和操作員界面設計、遠程控制、機器人、圖像處理熱工水力學:熱工水力學實驗與分析、熱工水力學設計、單相/兩相/多相流的熱工水力學、與流體的相互作用現象、測量技術反應堆運行管理、核安全工程:運行管理、檢查和維護、核電站和部件設計、抗震設計、核電站建設和檢查、核安全工程、核設施安全、變壓吸附核材料和核燃料:核材料和燃料的制造/開發和特性、腐蝕和環境輔助裂解、作為燃料的錒系化合物的固態化學、燃料的熱力學和高溫化學、材料和燃料的輻照行為和特性、輻照技術ique和輻照后實驗反應堆化學、放射化學、燃料后處理、安全保障技術:反應堆化學、輻射化學、腐蝕、去污、同位素分離、同位素應用、鈾濃縮、核化學、放射化學、錒系元素化學、燃料后處理、分組、核蛻變和分配流程、會計、保障技術放射性廢物管理:放射性廢物處理、放射性廢物處置和環境、退役和拆卸、運輸船和儲存設施的設計和制造聚變能工程:包括慣性約束聚變的等離子體工程、聚變反應堆材料和燃料、育種材料、反應堆部件技術、聚變中子學、聚變反應堆安全、聚變反應堆系統健康物理學和環境科學:輻射的醫學和生物學應用、核醫學、生物效應、輻射和放射性測量、輻射劑量測定、輻射控制、環境放射性、輻射劑量和環境安全評估、輻射防護的原理和標準
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