programming languages - meaning and definition. What is programming languages
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What (who) is programming languages - definition

LANGUAGE FOR COMMUNICATING INSTRUCTIONS TO A MACHINE
ProgrammingLanguages; ProgrammingLanguage; Computer programming language; Programming languages; Programming Languages; Typed and untyped languages; Programming Language; Dialect (computing); Pattern directed invocation programming language; Programming language design; Dialecting; Computer-oriented language; Untyped language; Programming language dialect; Static semantics; Execution semantics; Proprietary programming language; Proprietary scripting language; Proglang; Research programming language; Untyped programming language
  • A small selection of programming language textbooks
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Programming language         
A programming language is any set of rules that converts strings, or graphical program elements in the case of visual programming languages, to various kinds of machine code output. Programming languages are one kind of computer language, and are used in computer programming to implement algorithms.
programming language         
<language> A formal language in which computer programs are written. The definition of a particular language consists of both syntax (how the various symbols of the language may be combined) and semantics (the meaning of the language constructs). Languages are classified as low level if they are close to machine code and high level if each language statement corresponds to many machine code instructions (though this could also apply to a low level language with extensive use of macros, in which case it would be debatable whether it still counted as low level). A roughly parallel classification is the description as first generation language through to fifth generation language. The other major classification of languages distinguishes between imperative languages, procedural language and declarative languages. {Programming languages time-line/family tree (http://levenez.com/lang/history.html)}. (2004-05-17)
Programming language theory         
BRANCH OF COMPUTER SCIENCE THAT DEALS WITH THE DESIGN, IMPLEMENTATION, ANALYSIS, CHARACTERIZATION, AND CLASSIFICATION OF PROGRAMMING LANGUAGES AND THEIR INDIVIDUAL FEATURES
Programming language research; Theory of programming languages; Theory of programming; History of programming language theory
Programming language theory (PLT) is a branch of computer science that deals with the design, implementation, analysis, characterization, and classification of formal languages known as programming languages. Programming language theory is closely related to other fields including mathematics, software engineering, and linguistics.

Wikipedia

Programming language

A programming language is a system of notation for writing computer programs. Most programming languages are text-based formal languages, but they may also be graphical. They are a kind of computer language.

The description of a programming language is usually split into the two components of syntax (form) and semantics (meaning), which are usually defined by a formal language. Some languages are defined by a specification document (for example, the C programming language is specified by an ISO Standard) while other languages (such as Perl) have a dominant implementation that is treated as a reference. Some languages have both, with the basic language defined by a standard and extensions taken from the dominant implementation being common.

Programming language theory is the subfield of computer science that studies the design, implementation, analysis, characterization, and classification of programming languages.

Examples of use of programming languages
1. The two–day competition, which included timed algorithmic problem solving using programming languages such as Java, C# and C++, ended on May 5.
2. Also spurring the attacks is the growing power and flexibility of web programming languages that allow web browsers to look and act more like word processors, spreadsheets and other computer programmes.
3. A formal college education and faster computers with more powerful programming languages like Java have certainly made the job easier, but I still look back fondly on that time when I was first learning how to create something entirely from scratch.