liquid peak time
liquid peak time, Total:99 items.
The international standard classification for "liquid peak time" includes: Chemical reagents , Photographic equipment. Projectors , Leisure. Tourism .
The Chinese standard classification for "liquid peak time" includes: Electrochemical, thermochemistry and optical profile type analyzer , Camera and photograph instrument , Supply and Use Relation .
国家市场监督管理总局、中国国家标准化管理委员会
- GB/T 37849-2019 Method of performance testing for liquid chromatography tandem time of flight mass spectrometry
Taiwan Provincial Standard of the People's Republic of China
- CNS 5143-1980 Still Cameras-Shutter Exposure-Time Markings
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 42887-2023 Digital still cameras—Measuring shooting timing lag, shutter release time lag, shooting rate, and start-up time
- GB/T 8338-2023 Camera shutters—Time measurement
Professional Standard - Machinery
- JB/T 8250.1-1999 Test methods for time of camera shutters
国家旅游局
- LB/T 068-2017 Standards of responding to tourist scenic area during peak hours
Professional Standard - Agriculture
- SN/T 5493-2023 Determination of 29 fentanyl analogs in solid and liquid samplesLiquid chromatography-quadrupole time of flight mass spectrometry
Sichuan Provincial Standard of the People's Republic of China
- DB51/T 2141-2016 Response requirements for tourist attractions during peak tourist hours
Guangdong Provincial Standard of the People's Republic of China
- DB44/T 1832-2016 Measurement of shooting time lag, shutter time lag, shooting speed and start-up time of digital cameras in photography
Anhui Provincial Standard of the People's Republic of China
- DB34/T 2820-2017 Determination of 330 pesticide residues in Chinese herbal medicines by liquid chromatography quadrupole time-of-flight tandem mass spectrometry
PL-PKN
- PN T01504-60-1987 Diodes Measuring methods Instant and peak forward recovery voltages Ufr, Ufrm and forward recovery time tfr
- PN N84509-1992 Photography. Camera shutters. Timing
German Institute for Standardization
- DIN 5483-1:1983 Time-dependent quantities; terms for the time-dependency
- DIN 12697:1975 Laboratory glassware; graduated pipettes, short delivery time, waiting time 15 s, class AS
- DIN 12691:1975 Laboratory glassware; one-mark pipettes, short delivery time, waiting time 15 s, class AS
- DIN V 32879-1:1995 Optoelectronic measurement of distance using time-of-flight principle - Part 1: Incoherent time-of-flight principle
- DIN 12699:1975-04 Laboratory glassware; graduated pipettes for enzymatic analyses, short delivery time, waiting time 15 s, class AS
- DIN 12699:1975 Laboratory glassware; graduated pipettes for enzymatic analyses, short delivery time, waiting time 15 s, class AS
International Telecommunication Union (ITU)
- ITU-T G.8273/Y.1368-2013 Framework of phase and time clocks
- ITU-T G.8273/Y.1368 AMD 2-2015 Framework of phase and time clocks; Amendment 2
- ITU-T G.8273/Y.1368 AMD 1-2015 Framework of phase and time clocks; Amendment 1
- ITU-T Y.1368-2013 Framework of phase and time clocks (Study Group 15)
- ITU-R REPORT BT.1081-1-1990 The relative timing of sound and picture signals
- ITU-T G.8275.1-2014 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network (Study Group 15)
- ITU-T G.8271/Y.1366-2017 Time and phase synchronization aspects of telecommunication networks
- ITU-T G.8275.1/Y.1369.1-2016 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network
- ITU-T G.8275.2/Y.1369.2-2016 Precision time protocol telecom profile for time/phase synchronization with partial timing support from the network
- ITU-R TF.1010-1 FRENCH-1997 Relativistic effects in a coordinate time system in the vicinity of the Earth
- ITU-R TF.1010-1 SPANISH-1997 Relativistic effects in a coordinate time system in the vicinity of the Earth
- ITU-R QUESTION 2387-2001 Trusted time source for time stamp authority
- ITU-R QUESTION 238/7-2001 Trusted time source for time stamp authority
- ITU-R TF.1010-1-1997 Relativistic Effects in a Coordinate Time System in the Vicinity of the Earth
- ITU-T G.8275.2/Y.1369.2 AMD 1-2020 Precision time protocol telecom profile for time/phase synchronization with partial timing support from the network; Amendment 1
- ITU-T G.8275.1/Y.1369.1 AMD 1-2020 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network; Amendment 1
- ITU-T G.8275.1/Y.1369.1 AMD 2-2021 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network; Amendment 2
- ITU-T G.8275.2/Y.1369.2 AMD 2-2021 Precision time protocol telecom profile for time/phase synchronization with partial timing support from the network; Amendment 2
ITU-R - International Telecommunication Union/ITU Radiocommunication Sector
- ITU-R TF.2118-0-2018 Transfert de temps relativiste
- ITU-R BT.1359-1998 Relative Timing of Sound and Vision for Broadcasting
- ITU-R TF.538-2-1992 Frequency and Time (Phase) Instability Measures Section 7D - Characterization of Sources and Time Scales Formation
- QUESTION 238/7-2001 Trusted time source for time stamp authority
- ITU-R TF.583-4-1997 Time Codes
SCC
- ITU-T G.8273 AMD 1-2020 Framework of phase and time clocks Amendment 1
- AWWA QTC97003 Correlations Between Travel Time and Water Quality in a Deadend Loop
- ITU-T G.8275.1-2020 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network
- ITU-T G.8275.1 AMD 3-2020 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network
- ITU-T Y.1369.1-2020 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network
- ITU-T G.8275.2-2020 Precision time protocol telecom profile for phase/time synchronization with partial timing support from the network
- AENOR UNE 52003:1958 Determination of work times. Normal time and standard time.
- ITU-T Y.1369.2-2020 Precision time protocol telecom profile for phase/time synchronization with partial timing support from the network
- ITU-T G.8275.2 AMD 3-2020 Precision time protocol telecom profile for phase/time synchronization with partial timing support from the network
- ITU-T Y.1369.2 AMD 3-2020 Precision time protocol telecom profile for phase/time synchronization with partial timing support from the network
- ITU-T Y.1369.1 AMD 3-2020 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network
- ITU-T G.8271-2020 Time and phase synchronization aspects of telecommunication networks
- ITU-T Y.1366-2020 Time and phase synchronization aspects of telecommunication networks
IETF - Internet Engineering Task Force
- RFC 5484-2009 Associating Time-Codes with RTP Streams
- RFC 3339-2002 Date and Time on the Internet: Timestamps
International Organization for Standardization (ISO)
- ISO 15781:2013 Photography - Digital still cameras - Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
- ISO 15781:2015 Photography - Digital still cameras - Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
- ISO 516:1999 Photography - Camera shutters - Timing
- ISO 15781:2019 Photography — Digital still cameras — Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time lag
- ISO 516:1973 Photography — Still cameras — Shutter exposure-time markings
Korean Agency for Technology and Standards (KATS)
- KS A ISO 516:2003 Photography-Camera shutters-Timing
- KS B ISO 6416:2021 Hydrometry — Measurement of discharge by the ultrasonic transit time (time of flight) method
- KS B ISO 12238-2013 Pneumatic fluid power-Directional control valves-Measurement of shifting time
RO-ASRO
- STAS 9835/2-1990 Photography STILL GAMERAS. CAMERA SHUTTERS EXPOSURE TIME MARKING
- STAS 3331/1-1986 TIME INTERVALS AND SCALES Main coneepts
- STAS 7883-1990 Hydrotechnical constructions time behaviour supervision general specifications
KR-KS
- KS B ISO 6416-2021 Hydrometry — Measurement of discharge by the ultrasonic transit time (time of flight) method
British Standards Institution (BSI)
- BS ISO 15781:2013 Photography. Digital still cameras. Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
- BS ISO 15781:2015 Photography. Digital still cameras. Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
- ISO 9073-13:2022 Nonwovens. Test methods - Repeated liquid strike-through time
Japanese Industrial Standards Committee (JISC)
- JIS B 8419:2010 Pneumatic fluid power -- Directional control valves -- Measurement of shifting time and response time
IN-BIS
- IS 9948-1981 Shutter exposure time stamp still camera
CZ-CSN
- CSN 72 1088-1983 Determination of suspension flow time by flow viscosimeter
- CSN 65 6217-1971 Determination of the relative fflux time by Engler pparatus
RU-GOST R
- GOST 25183.3-1982 Photographic gelatine. Method of determination of dissolution duration
GB-REG
- REG NASA-LLIS-0209-1992 Lessons Learned - Time Correlation Between Multiple Telemetry Systems
Spanish Association for Standardization (UNE)
- UNE 21099:1966 INDICATIVE TIMETABLE INDEX OF PHASE POSITION FOR TRIPHASIC NETWORKS CONDUCTORS
- UNE 52 003 Determination of working time, standard time and time types
Military Standards (MIL-STD)
- DOD A-A-51810-1987 TIMER, INTERVAL
Society of Motion Picture and Television Engineers (SMPTE)
- SMPTE EG 40-2002 Engineering Guideline Conversion of Time Values Between SMPTE 12M Time Code, MPEG-2 PCR Time Base and Absolute Time
- SMPTE EG 40-2012 Engineering Guideline Conversion of Time Values Between SMPTE 12-1 Time Code, MPEG-2 PCR Time Base and Absolute Time
- SMPTE RP 159-1995 Vertical Interval Time Code and Longitudinal Time Code Relationship
IEEE - The Institute of Electrical and Electronics Engineers@ Inc.
- IEEE C57.109-1993 Guide for Liquid-Immersed Transformer Through-Fault-Current Duration
HU-MSZT
- MNOSZ 19981-1955 Method for testing the softening time of liquid mineral oil cement
Lithuanian Standards Office
- LST ISO 80000-3:2006 Quantities and units - Part 3: Space and time (identical ISO 80000-3:2006)
Danish Standards Foundation
- DS/ISO 15781:2013 Photography - Digital still cameras - Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
GSO
- OS GSO ISO 15781:2015 Photography -- Digital still cameras -- Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
- BH GSO ISO 15781:2017 Photography -- Digital still cameras -- Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
- BH GSO ISO 12238:2016 Pneumatic fluid power -- Directional control valves -- Measurement of shifting time
- OS GSO ISO 12238:2015 Pneumatic fluid power -- Directional control valves -- Measurement of shifting time
- GSO ISO 12238:2015 Pneumatic fluid power -- Directional control valves -- Measurement of shifting time
American Society of Mechanical Engineers (ASME)
- ASME Y10.3M-1984 Letter symbols for mechanics and time-related phenomena
ITE - Institute of Transportation Engineers
- LP-241-1992 Stuck in Traffic—Coping With Peak-Hour Traffic Congestion
- CD-032-2005 Transit Despeje Intervals
ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc.
- ASHRAE 4845-2006 Distribution of Water between Vapor and Liquid Phases of Refrigerants ((RP-1239))
Institute of Electrical and Electronics Engineers (IEEE)
- SMPTE EG 40:2012 EG 40:2012 - SMPTE Engineering Guideline - Conversion of Time Values between SMPTE 12-1 Time Code, MPEG-2 PCR Time Base and Absolute Time
- SMPTE EG 40:2002 EG 40:2002 - SMPTE Engineering Guideline - Conversion of Time Values between SMPTE 12M Time Code, MPEG-2 PCR Time Base and Absolute Time
- EG 40:2002 EG 40:2002 - SMPTE Engineering Guideline - Conversion of Time Values between SMPTE 12M Time Code, MPEG-2 PCR Time Base and Absolute Time
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