middle quantum
middle quantum, Total:37 items.
The international standard classification for "middle quantum" includes: Reactor engineering .
The Chinese standard classification for "middle quantum" includes: Radiation protection detection and evaluation .
Professional Standard - Chemical Industry
- HG/T 4787-2014 Middle molecular polyisobutylene
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 14959-1994 Requirements of characteristics and calibration for personal neutron dosimeters(neutron energies less than 20MeV)
Professional Standard - Energy
- NB/T 20235-2013 Measurement of Wide-range Neutron Fluence Rate by Voltage Mean Square
未注明发布机构
- DIN EN ISO 19226 E:2019-09 Neutron fluence and per-atom displacement in nuclear reactor vessels and internals (draft)
- ANSI/ANS 6.1.1-2020 Photon and Neutron Fluence-to-Dose Conversion Coefficients
Professional Standard - Nuclear Industry
- EJ/T 20139-2016 Design criteria of neutron measurement method for Plutonium inventory monitoring instrument for processes in reprocessing plant
江西省市场监督管理局
- DB36/Z 001-2022 Detection of Carbofuran in Vegetables and Fruits Quantum Dot Microsphere Fluorescence Immunochromatography
- DB36/Z 002-2022 Quantum dot microsphere fluorescence immunochromatography for detection of amantadine in animal-derived foods
工业和信息化部
- YD/T 3907.3-2021 Key components and modules for Quantum Key Distribution (QKD) based on BB84 protocol - part 3 : Quantum Random Number Generator (QRNG)
German Institute for Standardization
- DIN 6802-3:2007 Neutron dosimetry - Part 3: Methods for neutron measurement in radiation protection
- DIN 6802-3:2007-06 Neutron dosimetry - Part 3: Methods for neutron measurement in radiation protection
- DIN 25456-2:1999 Neutron fluence measurement - Part 2: Fast-neutron fluence determination with iron activation detectors
- DIN 25456-6:1999 Neutron fluence measurement - Part 6: Fast-neutron fluence determination with thorium fission detectors
- DIN 25456-4:1999 Neutron fluence measurement - Part 4: Fast-neutron fluence determination with niob activation detectors
- DIN 25456-5:1999 Neutron fluence measurement - Part 5: Fast-neutron fluence determination with copper activation detectors
- DIN 25456-3:1999 Neutron fluence measurement - Part 3: Fast-neutron fluence determination with nickel activation detectors
- DIN 25456-6:1999-10 Neutron fluence measurement - Part 6: Fast-neutron fluence determination with thorium fission detectors
- DIN 25456-5:1999-10 Neutron fluence measurement - Part 5: Fast-neutron fluence determination with copper activation detectors
- DIN 25456-3:1999-10 Neutron fluence measurement - Part 3: Fast-neutron fluence determination with nickel activation detectors
- DIN 25456-2:1999-10 Neutron fluence measurement - Part 2: Fast-neutron fluence determination with iron activation detectors
- DIN 25456-4:1999-10 Neutron fluence measurement - Part 4: Fast-neutron fluence determination with niob activation detectors
- DIN 25456-1:1999 Neutron fluence measurement - Part 1: Fast-neutron fluence determination with activation and fission detectors
American Society for Testing and Materials (ASTM)
- ASTM E722-14 Standard Practice for Characterizing Neutron Fluence Spectra in Terms of an Equivalent Monoenergetic Neutron Fluence for Radiation-Hardness Testing of Electronics
- ASTM E722-09 Standard Practice for Characterizing Neutron Fluence Spectra in Terms of an Equivalent Monoenergetic Neutron Fluence for Radiation-Hardness Testing of Electronics
- ASTM E722-04e2 Standard Practice for Characterizing Neutron Energy Fluence Spectra in Terms of an Equivalent Monoenergetic Neutron Fluence for Radiation-Hardness Testing of Electronics
- ASTM E722-94(2002) Standard Practice for Characterizing Neutron Energy Fluence Spectra in Terms of an Equivalent Monoenergetic Neutron Fluence for Radiation-Hardness Testing of Electronics
- ASTM E722-04e1 Standard Practice for Characterizing Neutron Energy Fluence Spectra in Terms of an Equivalent Monoenergetic Neutron Fluence for Radiation-Hardness Testing of Electronics
- ASTM E722-04 Standard Practice for Characterizing Neutron Energy Fluence Spectra in Terms of an Equivalent Monoenergetic Neutron Fluence for Radiation-Hardness Testing of Electronics
- ASTM E496-96 Standard Test Method for Measuring Neutron Fluence Rate and Average Energy From Neutron Generators by Radioactivation Techniques
- ASTM E722-09e1 Standard Practice for Characterizing Neutron Fluence Spectra in Terms of an Equivalent Monoenergetic Neutron Fluence for Radiation-Hardness Testing of Electronics
- ASTM E481-15 Standard Test Method for Measuring Neutron Fluence Rates by Radioactivation of Cobalt and Silver
RU-GOST R
- GOST 22751-1977 Neutron generators. Method of fast neutron flux measurement
SCC
- ANS 6.1.1-2020 Photon and Neutron Fluence-to-Dose Conversion Coefficients
- BS PD ISO/TS 80004-12:2016 Nanotechnologies. Vocabulary. Quantum phenomena in nanotechnology
British Standards Institution (BSI)
- PD CEN ISO/TS 80004-12:2017 Nanotechnologies. Vocabulary. Quantum phenomena in nanotechnology
GSO
- OS GSO IEC 61501:2014 Nuclear reactor instrumentation - Wide range neutron fluence rate meter - Mean square voltage method
- BH GSO IEC 61501:2016 Nuclear reactor instrumentation - Wide range neutron fluence rate meter - Mean square voltage method
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