In today苨 world, both private and public sectors depend upon information technology systems to perform essential and mission-critical functions. In the current environment of increasingly open and interconnected systems and networks, network and data security are essential for the effective use of information technology. Privacy and regulatory requirements highlight this need. For example, systems that perform electronic commerce must protect against unauthorized access to confidential records and unauthorized modification of data. Wireless technologies are rapidly emerging as significant components of these networks. As such, data classification and risk assessments should be performed to determine the sensitivity of, and risk to, data transmitted over wireless networks. Various methods and controls should be considered for data that is sensitive, has a high value, or represents a high value if it is vulnerable to unauthorized disclosure or undetected modification during transmission over wireless networks. These methods and controls support communications security, for example by encrypting the communication prior to transmission and decrypting it at receipt. Note that data classification and risk assessments, regardless of whether data transmission is over wired or wireless environments, should be part of an organization苨 general security policy and best practices. Refer to Annex A Wireless Validation Control Objectives for further details. Part 1 of this Standard provides an overview of wireless radio frequency (RF) technologies and general requirements applicable to all wireless implementations for the financial services industry. Subsequent parts of this Standard will address specific applications to wireless technology and associated risks, as well as technologies, methods and controls that mitigate those risks. Note that other wireless non-radio frequency technologies, such as infrared and lasers are considered out of scope of this Standard. For the purposes of this Standard the use of the terms 魋hall?and 鬽ust?are requirements and therefore mandatory, whereas 魋hould?is a recommendation. Refer to Annex B Wireless Technology for examples.
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GICS provides for Personal Identity Verification (PIV), PIV-I (PIV-Interoperable) and Common Access Card (CAC) card-applications (but not limited to these applications) to be built from a single platform. GICS defines an open platform (it is not a card application) where card applications can be instantiated and deployed according to card application profiles defined through the Part 4 template. GICS is operating system (OS) agnostic and can coexist with other platforms and/or non GICS-based applications.
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Specifies requirements for the collection, management and publication of terminology in the field of geographic information. The scope of this document includes: selection of concepts, harmonization of concepts and development of concept systems, structure and content of terminological entries, term selection, definition preparation, cultural and linguistic adaptation, layout and formatting requirements in rendered documents, and establishment and management of terminology registers.
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Defines the methodology for cataloguing feature types. This document specifies how feature types can be organized into a feature catalogue and presented to the users of a set of geographic data. This document is applicable to creating catalogues of feature types in previously uncatalogued domains and to revising existing feature catalogues to comply with standard practice. This document applies to the cataloguing of feature types that are represented in digital form. Its principles can be extended to the cataloguing of other forms of geographic data. Feature catalogues are independent of feature concept dictionaries defined in ISO 19126 and can be specified without having to use or create a Feature Concept Dictionary. Is applicable to the definition of geographic features at the type level. This document is not applicable to the representation of individual instances of each type. This document excludes portrayal schemas as specified in ISO 19117.
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Defines requirements for how platform neutral and platform specific specification of services shall be created, in order to allow for one service to be specified independently of one or more underlying distributed computing platforms. Defines requirements for a further mapping from platform neutral to platform specific service specifications, in order to enable conformant and interoperable service implementations.
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5.1 The Type S pitot tube (Fig. 1) is often used to measure the velocity of flowing gas streams in industrial smokestacks and ducts. Before a Type S pitot tube is used for this purpose, its coefficients must be determined by calibration against a standard pitot tube (2).1.1 This practice covers the determination of Type S pitot tube coefficients in the gas velocity range from 305 to 1524 m/min or 5.08 to 25.4 m/s (1000 to 5000 ft/min). The method applies both to the calibration of isolated Type S pitot tubes (see 5.1), and pitobe assemblies.1.2 This practice outlines procedures for obtaining Type S pitot tube coefficients by calibration at a single-velocity setting near the midpoint of the normal working range. Type S pitot coefficients obtained by this method will generally be valid to within ±3 % over the normal working range. If a more precise correlation between Type S pitot tube coefficient and velocity is desired, multivelocity calibration technique (Annex A1) should be used. The calibration coefficients determined for the Type S pitot tube by this practice do not apply in field use when the flow is nonaxial to the face of the tube.1.3 This practice may be used for the calibration of thermal anemometers for gas velocities in excess of 3 m/s (10 ft/s).1.4 The values stated in SI units are to be regarded as standard. The values given in parentheses are mathematical conversions to inch-pound units that are provided for information only and are not considered standard.1.5 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.
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