world-readable file - translation to russian
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world-readable file - translation to russian

REPRESENTATION OF DATA OR INFORMATION THAT CAN BE NATURALLY READ BY HUMANS
Human readable; Human-readable; Human-readable interpretation; Human Readable Interpretation; Human readable interpretation; Human―readable medium; Human—readable medium; Human-readable format; Human-readable data; Human-readable medium

world-readable file      
файл с неограниченным доступом по считыванию
file format         
  • wav-file: 2.1 Megabytes.
  • ogg-file: 154 kilobytes.
FORMALIZED STRUCTURE OF INFORMATION STORED ON A COMPUTER
File Formats; Filetype; File type; Bytestream format; File formats; Computer file formats; Computer file format; Binary signature; File format identification

общая лексика

формат файла

структура хранения данных в файле. Существует множество стандартных форматов, особенно графических файлов. На формат файла обычно указывает расширение имени файла

file type         
  • wav-file: 2.1 Megabytes.
  • ogg-file: 154 kilobytes.
FORMALIZED STRUCTURE OF INFORMATION STORED ON A COMPUTER
File Formats; Filetype; File type; Bytestream format; File formats; Computer file formats; Computer file format; Binary signature; File format identification

общая лексика

тип файла

определяется типом хранящихся в файле данных. К основным типам файлов относятся текстовые, двоичные, графические, файлы баз данных. Указанием на конкретный тип файла служит расширение имени файла

Definition

ВСЕМИРНАЯ МЕТЕОРОЛОГИЧЕСКАЯ ОРГАНИЗАЦИЯ
(ВМО) , международная межправительственная организация, специализированное учреждение ООН (с 1947); начала деятельность с 1951 (в 1873-1951 - Международная метеорологическая организация) для сотрудничества в области метеорологических наблюдений и исследований, обмена информацией и др. Местопребывание - Женева. На 1 января 1992 членами ВМО состояли 159 государств (в т. ч. Россия).

Wikipedia

Human-readable medium and data

In computing, a human-readable medium or human-readable format is any encoding of data or information that can be naturally read by humans, resulting in human-readable data. It is often encoded as ASCII or Unicode text, rather than as binary data.

In most contexts, the alternative to a human-readable representation is a machine-readable format or medium of data primarily designed for reading by electronic, mechanical or optical devices, or computers. For example, Universal Product Code (UPC) barcodes are very difficult to read for humans, but very effective and reliable with the proper equipment, whereas the strings of numerals that commonly accompany the label are the human-readable form of the barcode information. Since any type of data encoding can be parsed by a suitably programmed computer, the decision to use binary encoding rather than text encoding is usually made to conserve storage space. Encoding data in a binary format typically requires fewer bytes of storage and increases efficiency of access (input and output) by eliminating format parsing or conversion.

With the advent of standardized, highly structured markup languages, such as Extensible Markup Language (XML), the decreasing costs of data storage, and faster and cheaper data communication networks, compromises between human-readability and machine-readability are now more common-place than they were in the past. This has led to humane markup languages and modern configuration file formats that are far easier for humans to read. In addition, these structured representations can be compressed very effectively for transmission or storage.

Human-readable protocols greatly reduce the cost of debugging.

Various organizations have standardized the definition of human-readable and machine-readable data and how they are applied in their respective fields of application, e.g., the Universal Postal Union.

Often the term human-readable is also used to describe shorter names or strings, that are easier to comprehend or to remember than long, complex syntax notations, such as some Uniform Resource Locator strings.

Occasionally "human-readable" is used to describe ways of encoding an arbitrary integer into a long series of English words. Compared to decimal or other compact binary-to-text encoding systems, English words are easier for humans to read, remember, and type in.

What is the Russian for world-readable file? Translation of &#39world-readable file&#39 to Russian