This document specifies requirements and provides guidelines for establishing, developing, implementing, evaluating, maintaining and improving an effective compliance management system within an organization.
This document is applicable to all types of organizations regardless of the type, size and nature of the activity, as well as whether the organization is from the public, private or non-profit sector.
All requirements specified in this document that refer to a governing body apply to top management in cases where an organization does not have a governing body as a separate function.

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This document describes a method for determining the abrasiveness of hard coal.

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This document specifies requirements for the qualification of welders and welding operators for the fusion welding of metallic materials for aerospace applications.
NOTE Success in the test is an essential precondition for the qualification of welders (3.2) and welding operators (3.3) in new production and repair work in aerospace. However, welding equipment operators (3.4) do not need to be qualified according to this document.

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This International Standard provides practical guidance to suppliers on consumer product recalls and
other corrective actions after the product has left the manufacturing facility. Other corrective actions
include, but are not limited to, refunds, retrofit, repair, replacement, disposal and public notification.
This International Standard is intended to apply to consumer products, but might also be applicable to
other sectors.

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This document specifies the requirements and parameters for the specification and design of a
reciprocating internal combustion (RIC) engine driven generating set, with reference to the definitions
given in ISO 8528-1 to ISO 8528-6.
It applies to alternating current (a.c.) generating sets driven by RIC engines for land and marine use,
excluding generating sets used on aircraft or to propel land vehicles and locomotives.
For some specific applications (for example, essential hospital supplies, high-rise buildings, etc.)
supplementary requirements may be necessary. The provisions of this document are intended to be
regarded as a basis.
For other reciprocating-type prime movers (e.g. sewage gas engines, steam engines), the provisions of
this document are intended to be used as a basis.

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This document describes a procedure for measuring and evaluating the external mechanical vibration
behaviour of generating sets at the measuring points stated in this document.
It applies to RIC engine driven a.c. generating sets for fixed and mobile installations with rigid and/or
resilient mountings. It is applicable for land and marine use, excluding generating sets used on aircraft
or those used to propel land vehicles and locomotives.
For some specific applications (essential hospital supplies, high rise buildings, etc.) supplementary
requirements may be necessary. The provisions of this document are intended to be regarded as a basis
for such applications.
For generating sets driven by other reciprocating-type prime movers (e.g. sewage gas engines, steam
engines), the provisions of this document are intended to be regarded as a basis for such applications.

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This document specifies two titrimetric methods for the determination of the copper content of copper
sulfide concentrates in the range 15 % (m/m) to 50 % (m/m), using sodium thiosulfate after separation
(method 1) or without separation (method 2) of copper from interfering elements.

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This International Standard specifies minimum requirements for information to be provided to
participants before, during and after adventure tourism activities.
This International Standard can be used by all types and sizes of providers operating in different
geographic, cultural and social environments.

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This Technical Report indicates what the market normally considers as desirable competencies and
the related expected results of competencies for adventure tourism activity leaders common to any
adventure tourism activity.
This Technical Report does not apply to adventure tourism activity leaders involved in underwater
activities for which there are other specific International Standards.

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This International Standard outlines the requirements of a safety management system for adventure
tourism activity providers.
A provider can use this International Standard for the following:
a) to enhance safety performance;
b) to meet expectations for participant and staff safety;
c) to demonstrate safe practice;
d) to support compliance with applicable legal requirements.
This International Standard can be used by all types and sizes of providers, operating in different
geographic, cultural and social environments.

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This International Standard specifies the dimensions of centre drills for centre holes with protecting
chamfer — Type B.
It covers only metric dimensions, regarded as the only recommended dimensions in the future for this
type of drills.
The flutes can be straight or spiral at the option of manufacturer.
Unless otherwise stated, these drills are right-hand cutting.
Annex A gives the recommended dimensions for the centre holes, Type B, which can be obtained by a
rational use of the centre drills listed in this International Standard.

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This International Standard specifies the dimensions of centre drills for centre holes without protecting
chamfers (Type A).
It covers only metric dimensions, which are regarded as the only recommended dimensions in the
future for this type of drill.
The flutes may be straight or spiral, depending on the manufacturer’s discretion.
Unless otherwise indicated, these drills will be right-hand cutting.
Recommended dimensions for Type A centre holes, which can be obtained by a rational use of the centre
drills listed in this International Standard, are given in Annex A.

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This part of ISO 8528 defines design requirements, minimum performances and type tests for lowpower
generating sets driven by reciprocating internal combustion engines for land and marine use
(domestic, recreational and industrial application), excluding generating sets used on aircraft.
It concerns mainly low-power generating sets driven by reciprocating internal combustion engines for
the generation of single or multiphase alternating current or direct current up to 500 V. The generating
sets are standard manufactured sets.
In this part of ISO 8528, “low-power” is taken to mean rated power of a magnitude up to approximately
10 kW/50 Hz, 12 kW/60 Hz. Low-power generating sets, for the purpose of this International Standard,
are determined by the following special features:
— the users normally are laymen (for further details, see 3.1);
— the complete generating set is usually transportable or mobile;
— the electrical output is connected by means of plugs, sockets and screwed terminal except for extra
low voltages;
— the generating set is ready for use without any additional installation work by the user.
Generating sets for special applications or of higher rated power conforming to the above special
features may, by agreement between manufacturer and customer, be tested in accordance with this
part of ISO 8528. If supplementary stipulations are required for certain applications, this is to be done
taking this part of ISO 8528 as a basis.
This part of ISO 8528 deals with the special requirements of design and test which are observed
in addition to the definitions and requirements laid down in ISO 8528-1, ISO 8528-2, ISO 8528-3,
ISO 8528-4, ISO 8528-5 and ISO 8528-6, where applicable.
This part of ISO 8528 does not deal with safety requirements in order to protect the user from dangers
which are laid down in ISO 8528-13.
NOTE This International Standard does not apply to arc welding equipment (IEC 60974 series).
2 Normative

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This document specifies a combustion/titration method for the determination of the sulfur content of
iron ores.
This method is applicable to sulfur contents between 0,002 % (mass fraction) and 0,25 % (mass
fraction) in natural iron ores, iron ore concentrates, and agglomerates, including sinter products. The
results are not affected by the presence of fluoride.

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This document specifies a combustion/infrared method, using a high-frequency induction furnace, for
the determination of the sulfur content of iron ores.
This method is applicable to sulfur contents between 0,002 % (mass fraction) and 0,25 % (mass
fraction) in natural iron ores, iron ore concentrates and agglomerates, including sinter products. The
method is not applicable to iron ores containing more than 1,0 % (mass fraction) of combined water.
The apparatus, of which the metal filter is equipped with a heating device, can be applied to iron ores
containing less than 3,0 % (mass fraction) of combined water.

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This International Standard specifies the dimensions of centre drills for centre holes with radius —
Type R.
It covers only metric dimensions, regarded as the only recommended dimensions in the future for this
type of drills.
The flutes can be straight or spiral at the option of manufacturer.
Unless otherwise stated, these drills are right-hand cutting.
Annex A gives the recommended dimensions for the centre holes, Type R, which can be obtained by a
rational use of the centre drills listed in this International Standard.

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This International Standard defines terms related to gas analysis, with the main focus on terms related
to calibration gas mixtures for use in gas analysis and gas measurements. It does not cover terms which
relate only to specific applications.

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Specifies three atmospheres approximated to the natural environmental conditions. However, it is desirable to use only one of these.

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This International Standard specifies a gravimetric loss-in-mass method for the determination of the
hygroscopic moisture content in analysis samples of copper, lead, zinc, and nickel sulfide concentrates.
The method is applicable to copper, lead, zinc, and nickel sulfide concentrates free from volatile organic
flotation reagents, for example kerosene, and with hygroscopic moisture contents between 0,05 %
(m/m) and 2 % (m/m). The hygroscopic moisture content is used to correct the analysis results from
the equilibrated moisture level to the dry basis.
NOTE The result of the determination of hygroscopic moisture content using this International Standard should
not be reported as part of the analysis of a concentrate sample. Whenever the bulk moisture content of a commercial
shipment of concentrate is required, ISO 10251 should be used. The determination of hygroscopic moisture content
and the determination of bulk moisture content are connected with each other. In both determinations, the same
state of dryness has to be achieved, in order to ascertain the correct metal content of a lot.
This method is not applicable to sulfide concentrates that are susceptible to oxidation (see 6.3, note 2).
Annex A sets out a modified procedure, which can be used for sulfide concentrates that are susceptible
to oxidation.

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This International Standard specifies a method of determining the amount of mineral matter in all types
of coal, including brown coals and lignites.

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This International Standard specifies the method for determining the grindability index of hard coal
using the Hardgrove machine. It also specifies the procedure for calibrating the test machine and for
preparing the standard reference coal samples.
NOTE In this International Standard, the term “hard coal” is used as an indication of maturity or rank in the
coalification sequence and is not related to the physical properties of the coal.

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This International Standard specifies a method of assessing the caking power of coal under standard
conditions.

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This International Standard specifies a method of determining the apparent density and water
absorption of direct reduced iron by immersion in water.
This International Standard is applicable to hot briquetted iron (HBI).

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This International Standard specifies an acid dissolution and flame atomic absorption spectrometric
method for the determination of silver content of zinc sulfide concentrates.
The method is applicable to the determination of silver in zinc sulfide concentrates containing up to
60 % (m/m) zinc in the form of zinc blende and related materials.
The method is applicable to silver contents from 10 g/t to 500 g/t.

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This International Standard specifies reference methods for the size analysis of coal by manual sieving
(wet or dry), using test sieves of aperture sizes between 125 mm and 45 μm. A guide to sampling is
given in Annex A.
This International Standard is applicable to all hard coals. It is not applicable to coke or other
manufactured fuels.
In the case of pulverized coal which has been ground so that a high proportion passes through the test
sieve of smallest aperture size, the methods described in this International Standard will determine
only the percentage oversize.

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This International Standard specifies a fire assay gravimetric and flame atomic absorption
spectrometric method for the determination of the mass fraction of gold and silver in copper, lead, and
zinc sulfide concentrates as follows.
— Copper concentrates
The method is applicable to the determination of mass fractions of gold from 0,5 g/t to 300 g/t and
of mass fractions of silver from 25 g/t to 1 500 g/t in copper sulfide concentrates containing mass
fractions of copper from 15 % to 60 %.
— Lead concentrates
The method is applicable to the determination of mass fractions of gold from 0,1 g/t to 25 g/t and
of mass fractions of silver from 200 g/t to 3 500 g/t in lead sulfide concentrates containing mass
fractions of lead from 10 % to 80 %.
— Zinc concentrates
The method is applicable to the determination of mass fractions of gold from 0,1 g/t to 12 g/t and
of mass fractions of silver from 10 g/t to 800 g/t in zinc sulfide concentrates containing mass
fractions of zinc up to 60 %.

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This International Standard specifies a reference method for determining the total sulfur content of
hard coal, brown coals and lignites, and coke by the Eschka method.

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This part of ISO 9276 provides relevant equations and coherent nomenclatures for the calculation of
moments, mean particle sizes and standard deviations from a given particle size distribution. Two
notation systems in common use are described. One is the method of moments while the second
describes the moment-ratio method. The size distribution may be available as a histogram or as an
analytical function.
The equivalent diameter of a particle of any shape is taken as the size of that particle. Particle shape
factors are not taken into account. It is essential that the measurement technique is stated in the report
in view of the dependency of sizing results of measurement principle. Samples of particles measured are
intended to be representative of the population of particles.
For both notation systems, numerical examples of the calculation of mean particle sizes and standard
deviation from histogram data are presented in an annex.
The accuracy of the mean particle size may be reduced if an incomplete distribution is evaluated. The
accuracy may also be reduced when very limited numbers of size classes are employed.

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This International Standard specifies lengths and thread lengths for bolts, screws and studs for use in
appropriate product standards and other relevant documents, e.g. for parts per drawing.
It applies to bolts, screws and studs with ISO metric screw thread according to ISO 68-1.
2

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This part of ISO 3310 specifies the technical requirements and corresponding test methods for test
sieves of perforated metal plate.
It applies to test sieves having
— round holes, with sizes from 125 mm down to 1 mm, or
— square holes, with sizes from 125 mm down to 4 mm,
in accordance with ISO 565.

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This part of ISO 13322 is applicable to the analysis of images for the purpose of determining particle
size distributions where the velocity of the particles against the axis of the optical system of the imaging
device is zero. The particles are appropriately dispersed and fixed in the object plane of the instrument.
The field of view may sample the object plane dynamically either by moving the sample support or the
camera provided this can be accomplished without any motion effects on the image. Captured images
can be analysed subsequently.
This part of ISO 13322 concentrates upon the analysis of digital images created from either light or
electron detection systems. It does not address the method of creating the image although the detection
settings chosen together with its calibration are important to particle sizing accuracy. This part of
ISO 13322 considers only image evaluation methods using complete pixel counts.
Both the type of distribution, (by number or by volume) together with the width of the particle size
distribution has a very material influence upon the number of particles to be measured to secure the
desired accuracy within the specified confidence limits. An example is shown in Annex A.
Automation of the analysis is possible in order to measure sufficient particle numbers for a required
degree of precision.
This part of ISO 13322 does not address the sample preparation. However, the sub sampling, dispersion
and presentation of particles to be measured are a vital part of the operational chain of actions necessary
to ensure accuracy and precision of any final result.

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This International Standard specifies requirements to filter flasks with conical or cylindrical shape for general laboratory purposes.

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Specifies requirements and dimensions for glass filter funnels suitable for general laboratory purposes, fitting together with other general-use glassware such as boiling flasks and volumetric flasks.

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ISO 20905:2004 sets out a laboratory procedure for the dust testing of higher rank coals. The procedure defines a means of evaluating the dust/moisture relationship characteristic of a coal and a dust extinction moisture (DEM).

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Applies to coal pick shanks, chisel shanks, rivet snap shanks (parallel or tapered), breaker and spade shanks, concrete breaker shanks and rock drill shanks. These types relate to the machine for which they are mainly designed, but this does not prevent the use of the shanks for other applications. ISO 1180 does not apply to pneumatic hammer and their chuck bushings but those features of chuck bushings (dimensions and tolerances) which ensure interchangeability are specified.

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Describes, together with basic noise emission International Standards, the mechanical and acoustical specifications necessary for a reproducible test method for the airborne noise emitted by woodworking machines. Specifies standard operating conditions and microphone positions for the measurement on 19 types of woodworking machines. The existence of special-purpose machines, for which such standard operating conditions cannot be specified, is acknowledged. Additional types will be covered in future editions.

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This part of IS0 8528 applies to generating sets driven by reciprocating internal-combustion (WC) engines for
emergency power supply to safety services.
It applies, for example, to safety equipments in hospitals, high-rise buildings, public gathering places etc. This part
of IS0 8528 establishes the special requirements for the performance, design and maintenance of power
generators used in the applications referred to above and taking into account the provisions of IS0 8528-l to
IS0 8528-6 and IS0 8528-10.

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This part of ISO 8528 defines measurement methods for the determination of airborne noise emitted by
reciprocating internal combustion engine driven generating sets in such a way that the total of relevant noise
emissions, e.g. exhaust and cooling system noise, together with all other sources of engine noise, are evaluated on
a similar basis to yield comparable results. However, when the exhaust and cooling systems are ducted to a remote
site their noise contribution is not to be included in this part of ISO 8528.
The essential noise emission characteristic value is the sound power level.
The results of measurement taken in accordance with this part of ISO 8528 are classified as either accuracy grade
2 or grade 3 depending on which acoustic measurement conditions are complied with. Accuracy grade 2 (i. e.,
engineering method in accordance with ISO 3744) requires the measuring area to be a substantially acoustic-free
field over a reflecting plane (with an environmental correction K2A < 2 dB) and with negligible background noise
level (background noise correction K1A < 1,3 dB). Accuracy grade 3 (i. e. survey method in accordance with
ISO 3746) requires the environmental correction K2A to be less or equal than 7 dB, and the background noise
correction K1A to be less or equal than 3 dB.
For the operation of a generating set under steady conditions this part of ISO 8528 allows for the calculation of the
A-weighted sound power level as well as appropriate octave or one third octave sound power level for the
appropriate accuracy grade.
This part of ISO 8528 applies to RIC engine driven AC generating sets for fixed and mobile applications with rigid or
flexible mountings. It is applicable for land and marine use, excluding generating sets used on aircraft or to propel
land vehicles and locomotives.
NOTE 1 This part of ISO 8528 has been developed for RIC engine driven AC generating sets, but it can also be applied to RIC
engine driven DC generating sets.
NOTE 2 For some specific applications (e. g. essential hospital supplies, high rise buildings, etc.) supplementary requirements
may be necessary. The provisions of this part of ISO 8528 should be regarded as a basis.
NOTE 3 True comparisons can only be made between generating sets when the measurement are classified in the same
accuracy grade.

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This International Standard specifies details of an internationally acceptable series of glass separating funnels and dropping funnels suitable for general use in laboratories.

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This Technical Report outlines simple procedures to check the performance and calibration status of static scales.
The test sequence is intended for routine applications, generating results which can be used to calculate explicit
scale performance parameters (precision, bias and linearity) in accordance with the relevant equations shown in
ISO 12745, Copper, lead and zinc ores and concentrates — Precision and bias of mass measurement techniques.
It is stressed that the basic procedures described below do not replace comprehensive technical manuals
published by National Weights and Measures authorities to comply with legal and other specific requirements.

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Recommends procedures for iron ore dissolution using either acid digestion or alkali fusion. Deals with the assessment of the advantages and disadvantages of the two procedures.

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This part of ISO 10097 specifies the nomenclature and the leading dimensions necessary for the interchangeability
of the following wireline drilling equipment for drilling holes of diameter 1,890 in to 3,790 in, yielding cores of
diameter 1,063 in to 2,500 in.
The equipment is illustrated in Figure 1 and comprises the following:
a) core bit;
b) reaming shell;
c) core lifter;
d) core lifter case;
e) outer tube;
f) inner tube;
g) drill rod (smooth pipe only).

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This part of ISO 10097 specifies the nomenclature and the leading dimensions necessary for the interchangeability
of the following wireline drilling equipment for drilling holes 48 mm to 96 mm in diameter, yielding cores of 27 mm to
63 mm in diameter.
The equipment is illustrated in Figure 1 and comprises the following:
a) core bit;
b) reaming shell;
c) core lifter;
d) core lifter case;
e) outer tube;
f) inner tube;
g) drill rod (smooth pipe only).

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Defines terms relating to some types of road vehicles designated according to certain design and technical characteristics. Applies to all vehicles designated for road circulation, except for agricultural tractors which are only incidentally used for the carriage of persons or goods by road. This second edition cancels and replaces the first edition (1976).

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Specifies the requirements for the location and marking of the vehicle identification number (VIN) on motor vehicles, trailers, motorcycles and mopeds as defined in ISO 3833. The VIN is a structured combination of characters assigned to a vehicle by the manufacturer for identification purposes. This second edition cancels and replaces the first edition (1977).

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Defines the distribution of the transportable mass and specifies a conventional average mass for passengers and a conventional mass for luggage. The total of the masses thus defined represents nominal design pay mass for a given vehicle. Applies to passenger cars as defined in ISO 3833.

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This edition cancels and replaces the ISO Recommendation R 612-1967. Defines terms relating to dimensions of motor vehicles and towed vehicles but does not deal with methods of measurement, the units used in reporting the results, or the accuracy required, or the order of magnitude of the dimensions defined.

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Specifies the content and structure of an identifier in order to establish, on a world-wide basis, the identification of the manufacturers of parts for road vehicles; this identifier may serve, at the manufacturer's option, as a substitute or an addition for various national or international systems which already exist. Applies only to manufacturers of parts to be used on road vehicles as defined in ISO 3833.

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This International Standard specifies requirements for a series of pyknometers for general laboratory use for the
determination of the densities of liquids.
Specialized pyknometers for use with particular products, or otherwise not in common use, are excluded. Sufficient
details to define such pyknometers should be included in International Standards which specify or describe their
use.
A device suitable for adjustment of the liquid level in the neck of the Reischauer pyknometer is shown in annex A.

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