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ISO-8859-8
ISO/IEC 8859-8, ''Information technology — 8-bit single-byte coded graphic character sets — Part 8: Latin/Hebrew alphabet'', is part of the ISO/IEC 8859 series of ASCII-based standard character encodings. ISO/IEC 8859-8:1999 from 1999 represents its second and current revision, preceded by the first edition ISO/IEC 8859-8:1988 in 1988. It is informally referred to as Latin/Hebrew. ''ISO/IEC 8859-8'' covers all the Hebrew letters, but no Hebrew vowel signs. IBM assigned code page 916 (CCSIDs 916 and 5012) to it. This character set was also adopted by Israeli Standard SI1311:2002, with some extensions. ISO-8859-8 is the IANA preferred charset name for this standard when supplemented with the C0 and C1 control codes from ISO/IEC 6429. The text is (usually) in logical order, so bidi processing is required for display. Nominally ''ISO-8859-8'' (code page 28598) is for “visual order”, and ISO-8859-8- (code page 38598) is for logical order. But usually in practice, and required ...
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ISO-8859-8-I
ISO-8859-8- is the IANA charset name for the character encoding ISO/IEC 8859-8 used together with the control codes from ISO/IEC 6429 for the C0 (00–1F hex) and C1 (80–9F) parts. The characters are in logical order. Escape sequences (from ISO/IEC 6429 or ISO/IEC 2022) are not to be interpreted. Most applications only interpret the control codes for LF, CR, and HT. A few applications also interpret VT, FF, and NEL (in C1). Very few applications interpret the other C0 and C1 control codes. ISO-8859-8 is sometimes in logical order (HTML, XML), and sometimes in visual (left-to-right) order (plain text without any markup). The WHATWG Encoding Standard used by HTML5 treats ISO-8859-8 and ISO-8859-8- as distinct encodings with the same mapping due to influence on the layout direction, but notes that this no longer applies to ISO-8859-6 (Arabic), only to ISO-8859-8. Logical order for this charset requires bidi processing for display. The Microsoft Windows code page for Hebrew, ...
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Windows-1255
Windows-1255 is a code page used under Microsoft Windows to write Hebrew. It is an almost compatible superset of ISO-8859-8 most of the symbols are in the same positions (except for A4, which is 'sheqel sign' in Windows-1255 but 'generic currency sign' in ISO 8859-8 and except for DF, which is undefined in Windows-1255 but 'double low line' in ISO 8859-8), but Windows-1255 adds vowel-points and other signs in lower positions. IBM uses code page 1255 (CCSID 1255, euro sign extended CCSID 5351, and the further extended CCSID 9447) for Windows-1255. Modern applications prefer Unicode to Windows-1255, especially on the Internet; meaning UTF-8, the dominant encoding for web pages (or UTF-16, while not on the Internet for security reasons). Windows-1255 is used by less that 0.1% of websites. Character set The following table shows Windows-1255. Each character is shown with its Unicode equivalent. Usage Windows-1255 Hebrew is always in logical order (as opposed to visual). Microsof ...
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Code Page
In computing, a code page is a character encoding and as such it is a specific association of a set of printable characters and control characters with unique numbers. Typically each number represents the binary value in a single byte. (In some contexts these terms are used more precisely; see .) The term "code page" originated from IBM's EBCDIC-based mainframe systems, but Microsoft, SAP, and Oracle Corporation are among the vendors that use this term. The majority of vendors identify their own character sets by a name. In the case when there is a plethora of character sets (like in IBM), identifying character sets through a number is a convenient way to distinguish them. Originally, the code page numbers referred to the ''page'' numbers in the IBM standard character set manual, a condition which has not held for a long time. Vendors that use a code page system allocate their own code page number to a character encoding, even if it is better known by another name; for example, U ...
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DEC Hebrew (8-bit)
The DEC Hebrew character set is an 8-bit character set developed by Digital Equipment Corporation (DEC) to support the Hebrew alphabet. It was derived from DEC's Multinational Character Set (MCS) by removing the existing definitions from code points 192 to 223 and 224 to 250 and replacing code points 251 to 256 by the Hebrew letters. This range corresponds to the Hebrew range of its 7-bit counterpart, but with the high bit set. Since MCS is a predecessor of ISO/IEC 8859-1, DEC Hebrew is similar to ISO/IEC 8859-8 and the Windows code page 1255, that is, many characters in the range 160 to 191 are the same, and the Hebrew letters are at 192 to 250 in all three character sets. Code page layout See also * 8-bit DEC Greek ( Code page 1287) * 8-bit DEC Turkish ( Code page 1288) *8-bit DEC Cyrillic (KOI-8 Cyrillic) * 7-bit DEC Hebrew (SI 960 The Israeli Standards Institute's Standard SI 960 defines a 7-bit Hebrew code page. It is derived from, but does not conform to, ISO/IEC ...
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Hebrew Language
Hebrew (; ; ) is a Northwest Semitic language of the Afroasiatic language family. Historically, it is one of the spoken languages of the Israelites and their longest-surviving descendants, the Jews and Samaritans. It was largely preserved throughout history as the main liturgical language of Judaism (since the Second Temple period) and Samaritanism. Hebrew is the only Canaanite language still spoken today, and serves as the only truly successful example of a dead language that has been revived. It is also one of only two Northwest Semitic languages still in use, with the other being Aramaic. The earliest examples of written Paleo-Hebrew date back to the 10th century BCE. Nearly all of the Hebrew Bible is written in Biblical Hebrew, with much of its present form in the dialect that scholars believe flourished around the 6th century BCE, during the time of the Babylonian captivity. For this reason, Hebrew has been referred to by Jews as '' Lashon Hakodesh'' (, ) since an ...
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Sheqel Sign
The shekel sign (₪) is a currency sign used for the Israeli new shekel, which is the currency of Israel. Israeli new shekel (1986–present) The Israeli new shekel is denoted in he, שקל חדש (''šéqel ħadáš'', , lit. "New Shekel") or by the acronym he, ש ״ח (). The symbol was announced officially on 22 September 1985, when the first new shekel banknotes and coins were introduced. It is constructed by combining the two Hebrew letters that constitute the acronym (the first letter of each of the two words, Hebrew being written from right to left): " ש" and " ח". Sometimes the "₪" symbol (Unicode 20AA) is used following the number, other times the acronym he, ש״ח. The shekel sign, like the dollar sign ("$"), is usually placed left of the number (i.e. "₪12,000" and not "12,000₪"), but since Hebrew is written from right to left, this means that the symbol is actually written after the number. It is either not separated from the preceding number, or i ...
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ISO-8859-6
ISO/IEC 8859-6:1999, ''Information technology — 8-bit single-byte coded graphic character sets — Part 6: Latin/Arabic alphabet'', is part of the ISO/IEC 8859 series of ASCII-based standard character encodings, first edition published in 1987. It is informally referred to as Latin/Arabic. It was designed to cover Arabic. Only nominal letters are encoded, no preshaped forms of the letters, so shaping processing is required for display. It does not include the extra letters needed to write most Arabic-script languages other than Arabic itself (such as Persian, Urdu, etc.). ISO-8859-6 is the IANA preferred charset name for this standard when supplemented with the C0 and C1 control codes from ISO/IEC 6429. The text is in logical order, so BiDi processing is required for display. Nominally ISO-8859-6 (code page 28596) is for "visual order", and ISO-8859-6-I (code page 38596) is for logical order. But in practice, and required for HTML and XML documents, ISO-8859-6 also stands for l ...
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Microsoft Windows
Windows is a group of several proprietary graphical operating system families developed and marketed by Microsoft. Each family caters to a certain sector of the computing industry. For example, Windows NT for consumers, Windows Server for servers, and Windows IoT for embedded systems. Defunct Windows families include Windows 9x, Windows Mobile, and Windows Phone. The first version of Windows was released on November 20, 1985, as a graphical operating system shell for MS-DOS in response to the growing interest in graphical user interfaces (GUIs). Windows is the most popular desktop operating system in the world, with 75% market share , according to StatCounter. However, Windows is not the most used operating system when including both mobile and desktop OSes, due to Android's massive growth. , the most recent version of Windows is Windows 11 for consumer PCs and tablets, Windows 11 Enterprise for corporations, and Windows Server 2022 for servers. Genealogy By marketing ...
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Currency Sign (typography)
The currency sign is a character used to denote an unspecified currency. It can be described as a circle the size of a lowercase character with four short radiating arms at 45° (NE), 135° (SE), 225° (SW) and 315° (NW). It is raised slightly above the baseline. The character is sometimes called scarab. History The symbol was first encoded for computers in 1972, as a placeholder for national currency symbols such as the dollar sign, in national variants (ISO 646) of ASCII and the International Reference Variant. It was proposed by Italy as an alternative (to the dollar sign) at 0x24. In reality, most national standards retained the dollar sign as too important. ASCII and ISO 646 were specified as 7-bit encoding, which allowed for 96 printable characters and 32 control codes. The character is used in the GSM default 7-bit encoding as specified in 3GPP TS 23.038 / GSM 03.38 at 0x24. The introduction of 8-bit encoding and the ISO/IEC 8859 code pages meant that all major na ...
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UTF-8
UTF-8 is a variable-width encoding, variable-length character encoding used for electronic communication. Defined by the Unicode Standard, the name is derived from ''Unicode'' (or ''Universal Coded Character Set'') ''Transformation Format 8-bit''. UTF-8 is capable of encoding all 1,112,064 valid character code points in Unicode using one to four one-byte (8-bit) code units. Code points with lower numerical values, which tend to occur more frequently, are encoded using fewer bytes. It was designed for backward compatibility with ASCII: the first 128 characters of Unicode, which correspond one-to-one with ASCII, are encoded using a single byte with the same binary value as ASCII, so that valid ASCII text is valid UTF-8-encoded Unicode as well. UTF-8 was designed as a superior alternative to UTF-1, a proposed variable-length encoding with partial ASCII compatibility which lacked some features including self-synchronizing code, self-synchronization and fully ASCII-compatible handling ...
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Unicode
Unicode, formally The Unicode Standard,The formal version reference is is an information technology Technical standard, standard for the consistent character encoding, encoding, representation, and handling of Character (computing), text expressed in most of the world's writing systems. The standard, which is maintained by the Unicode Consortium, defines as of the current version (15.0) 149,186 characters covering 161 modern and historic script (Unicode), scripts, as well as symbols, emoji (including in colors), and non-visual control and formatting codes. Unicode's success at unifying character sets has led to its widespread and predominant use in the internationalization and localization of computer software. The standard has been implemented in many recent technologies, including modern operating systems, XML, and most modern programming languages. The Unicode character repertoire is synchronized with Universal Coded Character Set, ISO/IEC 10646, each being code-for-code id ...
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WHATWG
The Web Hypertext Application Technology Working Group (WHATWG) is a community of people interested in evolving HTML and related technologies. The WHATWG was founded by individuals from Apple Inc., the Mozilla Foundation and Opera Software, leading Web browser vendors, in 2004. The central organizational membership and control of WHATWG today – its "Steering Group" – consists of Apple, Mozilla, Google, and Microsoft. WHATWG community members work with the editor of the specifications to ensure correct implementation. History The WHATWG was formed in response to the slow development of World Wide Web Consortium (W3C) Web standards and W3C's decision to abandon HTML in favor of XML-based technologies. The WHATWG mailing list was announced on 4 June 2004, two days after the initiatives of a joint Opera–Mozilla position paper had been voted down by the W3C members at the W3C Workshop on Web Applications and Compound Documents. On 10 April 2007, the Mozilla Foundation, Apple ...
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