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Found: 31
Overview ISO 9058:2008 is an international standard that specifies standard tolerances for glass bottles with circular cross-sections. It covers glass containers ranging in nominal capacity from 50 m…
Overview ISO 9057:1991 - Glass containers: 28 mm tamper-evident finish for pressurized liquids - Dimensions specifies the dimensional requirements for a 28 mm tamper‑evident glass container finish in…
Overview EN ISO 9053-1:2026, published by CEN and based on ISO/FDIS 9053-1:2026, establishes a standardized static method for determining the airflow resistance of porous materials used in acoustical…
1 Scope This document specifies the measurement of the determination of the static airflow resistance (see also References [1] and [2]) in a laminar flow regime, of porous materials for acoustical ap…
1 Scope This document specifies methods for calibration of pyrheliometers using reference pyrheliometers and specifies the calibration procedures for the transfer of the calibration. This document is…
Overview EN ISO 9054:1999 - Cellular Plastics, Rigid - Test Methods for Self-Skinned, High-Density Materials defines standard test procedures for evaluating the key physical properties of self-skinne…
Overview SIST EN ISO 9054:2000 - Cellular Plastics, Rigid - Test Methods for Self-Skinned, High-Density Materials defines standard test procedures for evaluating the key physical properties of self-s…
Overview EN ISO 9053-2:2020 - Acoustics: Determination of airflow resistance (Part 2: Alternating airflow method) specifies an alternating airflow method for measuring the airflow resistance of porou…
Overview ISO 9053-1:2026 is an international standard developed by ISO that outlines the static method for determining airflow resistance in porous materials used for acoustical applications. Accurat…
Overview ISO 9050:2003 - "Glass in building - Determination of light transmittance, solar direct transmittance, total solar energy transmittance, ultraviolet transmittance and related glazing factors…
Overview ISO 9050:2026 – Glass in building - Determination of luminous and solar characteristics of glazing is an international standard developed by ISO for the building and construction sector. Thi…
Overview ISO 9055:1988 specifies a laboratory method for determining sulfur in pitch for electrodes (carbonaceous materials used in aluminium production) using the bomb combustion (general bomb) meth…
Overview ISO 9059:1990 - Solar energy: Calibration of field pyrheliometers by comparison to a reference pyrheliometer specifies procedures and a calibration hierarchy for transferring accurate calibr…
Overview ISO 9053-2:2020 - Acoustics: Determination of airflow resistance - Part 2: Alternating airflow method specifies an alternating‑airflow test technique for measuring the airflow resistance of…
Overview ISO 9053-1:2018 - "Acoustics - Determination of airflow resistance - Part 1: Static airflow method" specifies a laboratory method to measure the static airflow resistance of porous materials…
Overview ISO 9054:1990 - “Cellular plastics, rigid - Test methods for self‑skinned, high‑density materials” specifies basic, standardized test procedures for determining the physical properties of ri…
What is this standard about? This document specifies the measurement of the determination of the static airflow resistance, in a laminar flow regime, of porous materials for acoustical applications.
1 Scope This document specifies an alternating airflow method for the determination of the airflow resistance [ 5 ], [ 6 ] of porous materials for acoustical applications. Determination of the airflo…
Overview ISO 9052-1:1989 is an international standard developed by ISO Technical Committee ISO/TC 43 focused on acoustics and specifically on the determination of dynamic stiffness of materials used…
Overview ISO 9059:2025 - "Solar energy - Calibration of pyrheliometers by comparison to a reference pyrheliometer" specifies standardized methods for calibrating pyrheliometers (instruments that meas…
1 Scope This International Standard specifies tolerances for glass bottles of circular cross-section and nominal capacity from 50 ml to 5 000 ml. NOTE This International Standard is based on CE.T.I.E…