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21 символьное вычисление
1. symbolic computation2. symbolic computingРусско-английский большой базовый словарь > символьное вычисление
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22 теория вычислений
Русско-английский большой базовый словарь > теория вычислений
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23 метод приближенных вычислений
[lang name="Russian"]техника вычислений; методы вычислений — computer technique
Русско-английский научный словарь > метод приближенных вычислений
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24 аналоговая вычислительная техника
Engineering: analog computing technique, analogue computing techniqueУниверсальный русско-английский словарь > аналоговая вычислительная техника
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25 вычислительный метод
1. computation procedure2. computing techniqueРусско-английский большой базовый словарь > вычислительный метод
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26 методика вычислений
1) General subject: calculation technique (AD)2) Engineering: computational procedure, computing technique3) Mathematics: calculation procedure4) Economy: computational techniqueУниверсальный русско-английский словарь > методика вычислений
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27 метод вычислений
1) Mathematics: computing method2) Robots: computational procedure, computing technique -
28 вычислительная техника
computer engineering, numerical engineering, computing machinery, computer science, machine-computing techniqueРусско-английский исловарь по машиностроению и автоматизации производства > вычислительная техника
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29 техника вычислений
1) Computers: computer technique2) Engineering: computing techniqueУниверсальный русско-английский словарь > техника вычислений
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30 аналого-цифровая вычислительная техника
Engineering: hybrid computing techniqueУниверсальный русско-английский словарь > аналого-цифровая вычислительная техника
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31 полностью автоматическое вычислительное устройство
Military: fully automatic computing techniqueУниверсальный русско-английский словарь > полностью автоматическое вычислительное устройство
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32 аналого-цифровой ВТ
Русско-английский политехнический словарь > аналого-цифровой ВТ
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33 аналоговый ВТ
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34 аналого-цифровая вычислительная техника
Русско-английский исловарь по машиностроению и автоматизации производства > аналого-цифровая вычислительная техника
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35 аналоговая вычислительная техника
Русско-английский исловарь по машиностроению и автоматизации производства > аналоговая вычислительная техника
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36 методика вычислений
computational procedure, computing techniqueРусско-английский политехнический словарь > методика вычислений
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37 informatique
informatique [ɛ̃fɔʀmatik]1. feminine nouncomputing ; ( = sujet d'études) computer studies2. adjective* * *ɛ̃fɔʀmatik
1.
adjectif [système, équipement] computer
2.
* * *ɛ̃fɔʀmatik1. nf1) (= technique) data processing2) (= science) computer science2. adjcomputer modif* * *A adj [système, équipement] computer; [presse] computing.[ɛ̃fɔrmatik] adjectifcomputer (modificateur)————————[ɛ̃fɔrmatik] nom féminin[traitement des données] data processingfaire de l'informatique to work ou to be in computinginformatique familiale home ou domestic computinga. [dans une administration] administrative data processingb. [dans une entreprise] business data processing, business applications -
38 Forrester, Jay Wright
SUBJECT AREA: Electronics and information technology[br]b. 14 July 1918 Anselmo, Nebraska, USA[br]American electrical engineer and management expert who invented the magnetic-core random access memory used in most early digital computers.[br]Born on a cattle ranch, Forrester obtained a BSc in electrical engineering at the University of Nebraska in 1939 and his MSc at the Massachusetts Institute of Technology (MIT) in Cambridge, Massachusetts, where he remained to teach and carry out research. Becoming interested in computing, he established the Digital Computer Laboratory at MIT in 1945 and became involved in the construction of Whirlwind I, an early general-purpose computer completed in March 1951 and used for flight-simulation by the US Army Air Force. Finding the linear memories then available for storing data a major limiting factor in the speed at which computers were able to operate, he developed a three-dimensional store based on the binary switching of the state of small magnetic cores that could be addressed and switched by a matrix of wires carrying pulses of current. The machine used parallel synchronous fixed-point computing, with fifteen binary digits and a plus sign, i.e. 16 bits in all, and contained 5,000 vacuum tubes, eleven semiconductors and a 2 MHz clock for the arithmetic logic unit. It occupied a two-storey building and consumed 150kW of electricity. From his experience with the development and use of computers, he came to realize their great potential for the simulation and modelling of real situations and hence for the solution of a variety of management problems, using data communications and the technique now known as interactive graphics. His later career was therefore in this field, first at the MIT Lincoln Laboratory in Lexington, Massachusetts (1951) and subsequently (from 1956) as Professor at the Sloan School of Management at the Massachusetts Institute of Technology.[br]Principal Honours and DistinctionsNational Academy of Engineering 1967. George Washington University Inventor of the Year 1968. Danish Academy of Science Valdemar Poulsen Gold Medal 1969. Systems, Man and Cybernetics Society Award for Outstanding Accomplishments 1972. Computer Society Pioneer Award 1972. Institution of Electrical Engineers Medal of Honour 1972. National Inventors Hall of Fame 1979. Magnetics Society Information Storage Award 1988. Honorary DEng Nebraska 1954, Newark College of Engineering 1971, Notre Dame University 1974. Honorary DSc Boston 1969, Union College 1973. Honorary DPolSci Mannheim University, Germany. Honorary DHumLett, State University of New York 1988.Bibliography1951, "Data storage in three dimensions using magnetic cores", Journal of Applied Physics 20: 44 (his first description of the core store).Publications on management include: 1961, Industrial Dynamics, Cambridge, Mass.: MIT Press; 1968, Principles of Systems, 1971, Urban Dynamics, 1980, with A.A.Legasto \& J.M.Lyneis, System Dynamics, North Holland. 1975, Collected Papers, Cambridge, Mass.: MIT.Further ReadingK.C.Redmond \& T.M.Smith, Project Whirlwind, the History of a Pioneer Computer (provides details of the Whirlwind computer).H.H.Goldstine, 1993, The Computer from Pascal to von Neumann, Princeton University Press (for more general background to the development of computers).Serrell et al., 1962, "Evolution of computing machines", Proceedings of the Institute ofRadio Engineers 1,047.M.R.Williams, 1975, History of Computing Technology, London: Prentice-Hall.See also: Burks, Arthur Walter; Goldstine, Herman H.; Wilkes, Maurice Vincent; Williams, Sir Frederic CallandKF -
39 Notación Lineal de Wiswesser
Ex. A technique for computing a quantitative measure of similarity between chemical structures encoded in Wiswesser Line Notation is described.* * *Ex: A technique for computing a quantitative measure of similarity between chemical structures encoded in Wiswesser Line Notation is described.
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40 a través de operador
(adj.) = operator-assistedEx. The development and use of 3-party telecommunications (also known as operator-assisted computing) as a technique of delivering on-line services to remote users is described.* * *(adj.) = operator-assistedEx: The development and use of 3-party telecommunications (also known as operator-assisted computing) as a technique of delivering on-line services to remote users is described.
См. также в других словарях:
computing technique — skaičiavimo technika statusas T sritis radioelektronika atitikmenys: angl. computing technique vok. Rechentechnik, f rus. вычислительная техника, f pranc. technique de calcul, f … Radioelektronikos terminų žodynas
technique de calcul — skaičiavimo technika statusas T sritis radioelektronika atitikmenys: angl. computing technique vok. Rechentechnik, f rus. вычислительная техника, f pranc. technique de calcul, f … Radioelektronikos terminų žodynas
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