Absolute quantum yield and
Absolute quantum yield and, Total:44 items.
The international standard classification for "Absolute quantum yield and" includes: Other standards related to optics and optical measurements , Other insulating materials .
The Chinese standard classification for "Absolute quantum yield and" includes: Physics and Mechanics , Electrical insulating material and its products , Insulator .
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 44454-2024 General test method of absolutely measuring the quantum efficiency of phosphor for photoluminescence
- GB/T 5654-2007 Insulating liquids - Measurement of relative permittivity dielectric dissipation factor(tanδ)and d.c. resistivity
Group Standards of the People's Republic of China
- T/CSTM 00197-2021 Graphene quantum dots — Determination of relative fluorescence quantum efficiency for the blue emission — Molecular fluorescence spectroscopy
Professional Standard - Machinery
- JB/T 9673-1999 Packet of insulators
American Society for Testing and Materials (ASTM)
- ASTM E820-81 A practical method for determining the absolute absorbed dose rate of electron beams
- ASTM E306-71(1976)e1 Method for Absolute Calibration of Reflectance Standards
Japanese Industrial Standards Committee (JISC)
- JIS R 1697:2015 Absolute measurement of internal quantum efficiency of phosphors for white light emitting diodes using an integrating sphere
British Standards Institution (BSI)
- BS ISO 5660-1:2015+A1:2019 Reaction-to-fire tests. Heat release, smoke production and mass loss rate - Heat release rate (cone calorimeter method) and smoke production rate (dynamic measurement)
- BS EN 60247:2004 Insulating liquids - Measurement of relative permittivity, dielectric dissipation factor (tan
) and d.c. resistivity - BS PD ISO/TS 5660-3:2012 Reaction-to-fire tests. Heat release, smoke production and mass loss rate-Guidance on measurement
- PD ISO/TS 5660-3:2012 Reaction-to-fire tests. Heat release, smoke production and mass loss rate. Guidance on measurement
- PD ISO/TS 5660-5:2020 Reaction-to-fire tests. Heat release, smoke production and mass loss rate. Heat release rate (cone calorimeter method) and smoke production rate (dynamic measurement) under reduced oxygen atmospheres
- BS ISO 4037-1:1996 X and gamma reference radiation for calibrating dosemeters and doserate meters and for determining their response as a function of photon energy-Radiation characteristics and production methods
Association Francaise de Normalisation
- NF C27-210:1979 Measurement of relative permittivity dielectric dissipation factor and D.C. Resistivity of insulating liquids.
- NF P92-190-1*NF ISO 5660-1:2015 Reaction-to-fire tests - Heat release, smoke production and mass loss rate - Part 1: heat release rate (cone calorimeter method) and smoke production rate (dynamic measurement)
- NF C27-210*NF EN 60247:2004 Insulating liquids - Measurement of relative permittivity, dielectric dissipation factor (tan delta) and d.c.resistivity
- NF P92-190-1/A1*NF ISO 5660-1/A1:2020 Reaction-to-fire tests - Heat release, smoke production and mass loss rate - Part 1 : heat release rate (cone calorimeter method) and smoke production rate (dynamic measurement) - Amendment 1
- NF X45-304:2000 Filter cartridges - Test methods - Absolute filtration rating.
Finnish Standards Institute
- SFS 5355-1987 Insulating tubes, insulating grooves and insulating equipment. Use a pipe alignment instrument to measure the thermal conductivity of insulating pipes
American National Standards Institute (ANSI)
- ANSI/TIA/EIA 455-95A-2000 Absolute Optical Power Test for Optical Fibers and Cables
- ANSI/TIA-455-95A-2000 Absolute Optical Power Test for Optical Fibers and Cables
- ANSI/TIA-455-95-B-2019 FOTP-95 Absolute Optical Power Test for Optical Fibers and Cables
- ANSI/TIA/EIA-455-95-A-2000(2005) FOTP-95 Absolute Optical Power Test for Optical Fibers and Cables
International Electrotechnical Commission (IEC)
- IEC 60247:1978 Measurement of relative permittivity, dielectric dissipation factor and d.c. resistivity of insulating liquids
- IEC 60247:2004 Insulating liquids - Measurement of relative permittivity, dielectric dissipation factor (tan
) and d.c. resistivity
Gosstandart of Russia
- GOST R IEC 60247-2013 Insulating liquids. Measurement of relative permittivity, dielectric dissipation factor (tan d) and d.c. resistivity
- GOST 13873-1981 Ceramic insulators. Requirements for surface quality
- GOST R 8.623-2006 State system for ensuring the uniformity of measurements. Relative dielectric permittivity and the loss tangent of solid dielectrics. Procedures of measurements at microwave frequencies
German Institute for Standardization
- DIN EN 60247:2005 Insulating liquids - Measurement of relative permittivity, dielectric dissipation factor (tan
) and d.c. resistivity (IEC 60247:2004); German version EN 60247:2004
Spanish Association for Standardization (UNE)
- UNE 21317:1989 MEASUREMENT OF RELATIVE PERMITIVITY, DIELECTRIC DISSIPATION FACTOR ON D.C. RESISTIVITY OF INSULATING LIQUIDS.
International Organization for Standardization (ISO)
- ISO/TR 5660-3:2003 Reaction-to-fire tests - Heat release, smoke production and mass loss rate - Part 3: Guidance on measurement
- ISO 20351:2017 Fine ceramics (advanced ceramics, advanced technical ceramics) — Absolute measurement of internal quantum efficiency of phosphors for white light emitting diodes using an integrating sphere
Danish Standards Foundation
- DS/ISO 5660-2:2003 Reaction-to-fire tests - Heat release, smoke production and mass loss rate - Part 2: Smoke production rate (dynamic measurement)
- DS/IEC 247:1979 Measurement of relative permittivity, dielectric dissipation factor and d.c. resistivity of insulating liquids
European Committee for Electrotechnical Standardization(CENELEC)
- EN 60247:2004 Insulating liquids Measurement of relative permittivity, dielectric dissipation factor (tan $) and d.c. resistivity
Czech Standards Institute (UNMZ)
- CSN 35 8757 Cast.7-1985 Transistors. Measuring method of absolute value of forward current transfer ratio and transition frequency
International Telecommunication Union (ITU)
- ITU-T G.224-1993 MAXIMUM PERMISSIBLE VALUE FOR THE ABSOLUTE POWER LEVEL (POWER REFERRED TO ONE MILLIWATT) OF A SIGNALLING PULSE
- ITU-T Q.20-1989 Maximum Permissible Value for the Absolute Power Level of a Signalling Pulse - General Recommendations on Telephone Switching and Signalling - Functions and Information Flows for Services in the ISDN - Supplements (Study Group XI) 2 pp
(U.S.) Telecommunications Industries Association
- TIA/EIA-455-95A-2000 FOTP-95 Absolute Optical Power Test for Optical Fibers and Cables
- EIA-455-95-1986 FOTP-95 Absolute Optical Power Test for Optical Fibers and Cables
- TIA-455-95-B-2019 FOTP-95 Absolute Optical Power Test for Optical Fibers and Cables
Institute of Electrical and Electronics Engineers (IEEE)
- IEEE Std 286-2024 IEEE Recommended Practice for Measurement of Power Factor Tip-Up of Electric Machinery Stator Coil Insulation
- IEEE 286-2024 IEEE Recommended Practice for Measurement of Power Factor Tip-Up of Electric Machinery Stator Coil Insulation
Indonesia Standards
- SNI 04-6542-2001 Measuremert of relative permitivity, dielectric dissipation factor and d.c. resistivity of insulating liquid
absolute quantum yield,Absolute Quantum Yield Instrument,What is the absolute quantum yield,Quantum Yield and Quantum Efficiency,Absolute Quantum Yield and Relative Quantum Yield,Quantum Efficiency and Quantum Yield,Relative Quantum Yield Absolute Quantum Yield,Internal Quantum Yield and External Quantum Yield,internal quantum yield and external quantum yield,Absolute Quantification vs. Relative Quantification,absolute size and relative size,Absolute quantum yield and,External Quantum Yield and Internal Quantum Yield,Relative Quantum Yield and Absolute Quantum Yield,Protein Absolute and Relative Quantification,pcr absolute quantification and relative quantification,Quantum Yield and Absolute Quantum Yield,absolute quantum yield,What is the absolute quantum yield,How to Calculate Absolute Quantum Yield