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Conductivity detection method
Conductivity detection method, Total:17 items.
In the international standard classification, Conductivity detection method involves: Analytical chemistry, Geology. Meteorology. Hydrology, Nuclear energy engineering.
Japanese Industrial Standards Committee (JISC), Conductivity detection method
- JIS K 0552:1994 Testing methods for electric conductivity in highly purified water
Professional Standard - Ocean, Conductivity detection method
- HY/T 267-2018 Testing method of seawater conductivity measuring instrument
CEN - European Committee for Standardization, Conductivity detection method
- EN ISO 12799:2019 Nuclear energy - Determination of nitrogen content in UO2@ (U@Gd)O2 and (U@Pu)O2 sintered pellets - Inert gas extraction and conductivity detection method
- EN ISO 15651:2017 Nuclear energy - Determination of total hydrogen content in PuO2 and UO2 powders and UO2@ (U@Gd)O2 and (U@Pu)O2 sintered pellets - Inert gas extraction and conductivity detection method
Association Francaise de Normalisation, Conductivity detection method
- NF M60-471*NF EN ISO 12799:2019 Nuclear energy - Determination of nitrogen content in UO2, (U,Gd)O2 and (U,Pu)O2 sintered pellets - Inert gas extraction and conductivity detection method
- NF M60-472*NF EN ISO 15651:2018 Nuclear energy - Determination of total hydrogen content in PuO2 and UO2 powders and UO2, (U,Gd)O2 and (U,Pu)O2 sintered pellets - Inert gas extraction and conductivity detection method
- NF M60-472:2015 Nuclear energy - Determination of total hydrogen content in PuO2 and UO2 powders and UO2, (U,Gd)O2 and (U,Pu)O2 sintered pellets - Inert gas extraction and conductivity detection method
International Organization for Standardization (ISO), Conductivity detection method
- ISO 12799:2015 Nuclear energy - Determination of nitrogen content in UO2, (U,Gd)O2 and (U,Pu)O2 sintered pellets - Inert gas extraction and conductivity detection method
- ISO 15651:2015 "Nuclear energy - Determination of total hydrogen content in PuO2 and UO2 powders and UO2, (U,Gd)O2 and (U,Pu)O2 sintered pellets - Inert gas extraction and conductivity detection method"
ES-UNE, Conductivity detection method
- UNE-EN ISO 12799:2019 Nuclear energy - Determination of nitrogen content in UO2, (U,Gd)O2 and (U,Pu)O2 sintered pellets - Inert gas extraction and conductivity detection method (ISO 12799:2015) (Endorsed by Asociación Española de Normalización in July of 2019.)
- UNE-EN ISO 15651:2018 Nuclear energy - Determination of total hydrogen content in PuO2 and UO2 powders and UO2, (U,Gd)O2 and (U,Pu)O2 sintered pellets - Inert gas extraction and conductivity detection method (ISO 15651:2015)
British Standards Institution (BSI), Conductivity detection method
- BS ISO 15651:2015 Nuclear energy. Determination of total hydrogen content in PuO2 and UO2 powders and UO2, (U,Gd)O2 and (U,Pu)O2 sintered pellets. Inert gas extraction and conductivity detection method
- BS EN ISO 15651:2017 Nuclear energy. Determination of total hydrogen content in PuO2 and UO2 powders and UO2, (U,Gd)O2 and (U,Pu)O2 sintered pellets. Inert gas extraction and conductivity detection method
- BS EN ISO 12799:2019 Nuclear energy. Determination of nitrogen content in UO<sub>2</sub>, (U,Gd)O<sub>2</sub> and (U,Pu)O<sub>2</sub> sintered pellets. Inert gas extraction and conductivity detection method
German Institute for Standardization, Conductivity detection method
- DIN EN ISO 12799:2019-11 Nuclear energy - Determination of nitrogen content in UO<(Index)2>, (U,Gd)O<(Index)2> and (U,Pu)O<(Index)2> sintered pellets - Inert gas extraction and conductivity detection method (ISO 12799:2015); German version EN ISO 12799:2019
- DIN EN ISO 15651:2017 Nuclear energy - Determination of total hydrogen content in PuO and UO powders and UO, (U,Gd)O and (U,Pu)O sintered pellets - Inert gas extraction and conductivity detection method (ISO 15651:2015)
Professional Standard - Non-ferrous Metal, Conductivity detection method
- YS/T 478-2005 The method for electrical conductivity measurement of copper and copper alloys by use of eddy current