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1 software technology for adaptable reliable systems
Вычислительная техника: методика разработки программ для адаптируемых надёжных систем, технология создания программного обеспечения для адаптируемых надёжных системУниверсальный англо-русский словарь > software technology for adaptable reliable systems
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2 software technology for adaptable reliable systems
технология создания программного обеспечения для адаптируемых надежных систем; методика разработки программ для адаптируемых надежных системEnglish-Russian information technology > software technology for adaptable reliable systems
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3 for small systems, WF methods are more reliable and accurate; DFT practical usefulness lies in its ability to deal with systems of O(1000) atoms
Общая лексика: для малых систем (порядка 10-100 атомов) методы волновых функций Шредингера более разумны и точны; полезУниверсальный англо-русский словарь > for small systems, WF methods are more reliable and accurate; DFT practical usefulness lies in its ability to deal with systems of O(1000) atoms
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4 for small systems, WF methods are more reliable and accurate; DFT practical usefulness lies in its ability to deal with systems of O atoms
Общая лексика: (1000) для малых систем (порядка 10-100 атомов) методы волновых функций Шредингера более разумны и точны; полезУниверсальный англо-русский словарь > for small systems, WF methods are more reliable and accurate; DFT practical usefulness lies in its ability to deal with systems of O atoms
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5 STARS
1) Военный термин: Software Technology Adaptable Reliable Systems, Stinger target acquisition and ranging system, Strategic Target System, Surveillance, Target Acquisition & Reporting System, Systematic Tracking Of Applicants And Requisitions System, seaborne tracking and ranging station, silent tactical attack reconnaissance system, simulation and training advanced research system, small tethered aerostat relocatable system, surface-to-air recovery system, surveillance and target attack radar system, surveillance, target acquisition, and reporting system, synchronized-time, automated reporting system2) Техника: satellite telemetry automatic reduction system, stellar tracking attitude reference system3) Юридический термин: Safety Training Assisting Responding And Serving, Special Tactics And Rescue Service4) Сокращение: Small Tethered / Transportable Aerostat Relocatable System, Software Technology for Adaptable Reliable Systems, Software Technology for Adaptable, Reliable Systems, Standard Terminal Automation Replacement System, Stored Terrain & Access Retrieval System, Strategic Target and Attack Radar System (e.g., J-STARS), Surveillance Target Attack Radar System5) Университет: Student Telephone Access Registration System, Student Tuition Assistance Reward Scholarship, Students Taking A Right Stand, Students That Are Recognized For Service6) Электроника: Satellite Telemetry Automatic Reduction Systems7) Иммунология: Substance Treatment And Research Service8) Транспорт: Ship Tracking and Retrieval System, Singapore Titles Automated Registration System, Statewide Transfer Articulation Reporting System -
6 StARS
1) Военный термин: Software Technology Adaptable Reliable Systems, Stinger target acquisition and ranging system, Strategic Target System, Surveillance, Target Acquisition & Reporting System, Systematic Tracking Of Applicants And Requisitions System, seaborne tracking and ranging station, silent tactical attack reconnaissance system, simulation and training advanced research system, small tethered aerostat relocatable system, surface-to-air recovery system, surveillance and target attack radar system, surveillance, target acquisition, and reporting system, synchronized-time, automated reporting system2) Техника: satellite telemetry automatic reduction system, stellar tracking attitude reference system3) Юридический термин: Safety Training Assisting Responding And Serving, Special Tactics And Rescue Service4) Сокращение: Small Tethered / Transportable Aerostat Relocatable System, Software Technology for Adaptable Reliable Systems, Software Technology for Adaptable, Reliable Systems, Standard Terminal Automation Replacement System, Stored Terrain & Access Retrieval System, Strategic Target and Attack Radar System (e.g., J-STARS), Surveillance Target Attack Radar System5) Университет: Student Telephone Access Registration System, Student Tuition Assistance Reward Scholarship, Students Taking A Right Stand, Students That Are Recognized For Service6) Электроника: Satellite Telemetry Automatic Reduction Systems7) Иммунология: Substance Treatment And Research Service8) Транспорт: Ship Tracking and Retrieval System, Singapore Titles Automated Registration System, Statewide Transfer Articulation Reporting System -
7 stars
1) Военный термин: Software Technology Adaptable Reliable Systems, Stinger target acquisition and ranging system, Strategic Target System, Surveillance, Target Acquisition & Reporting System, Systematic Tracking Of Applicants And Requisitions System, seaborne tracking and ranging station, silent tactical attack reconnaissance system, simulation and training advanced research system, small tethered aerostat relocatable system, surface-to-air recovery system, surveillance and target attack radar system, surveillance, target acquisition, and reporting system, synchronized-time, automated reporting system2) Техника: satellite telemetry automatic reduction system, stellar tracking attitude reference system3) Юридический термин: Safety Training Assisting Responding And Serving, Special Tactics And Rescue Service4) Сокращение: Small Tethered / Transportable Aerostat Relocatable System, Software Technology for Adaptable Reliable Systems, Software Technology for Adaptable, Reliable Systems, Standard Terminal Automation Replacement System, Stored Terrain & Access Retrieval System, Strategic Target and Attack Radar System (e.g., J-STARS), Surveillance Target Attack Radar System5) Университет: Student Telephone Access Registration System, Student Tuition Assistance Reward Scholarship, Students Taking A Right Stand, Students That Are Recognized For Service6) Электроника: Satellite Telemetry Automatic Reduction Systems7) Иммунология: Substance Treatment And Research Service8) Транспорт: Ship Tracking and Retrieval System, Singapore Titles Automated Registration System, Statewide Transfer Articulation Reporting System -
8 STARS
сокр. от Software Technology for Adaptable Reliable Systems -
9 Windows 7 Logo Program
"A program designed to identify compatible and reliable systems, software, and hardware products that have passed Microsoft-designed tests for compatibility and reliability on Windows 7." -
10 Sprague, Frank Julian
[br]b. 25 July 1857 Milford, Connecticut, USAd. 25 October 1934 New York, USA[br]American electrical engineer and inventor, a leading innovator in electric propulsion systems for urban transport.[br]Graduating from the United States Naval Academy, Annapolis, in 1878, Sprague served at sea and with various shore establishments. In 1883 he resigned from the Navy and obtained employment with the Edison Company; but being convinced that the use of electricity for motive power was as important as that for illumination, in 1884 he founded the Sprague Electric Railway and Motor Company. Sprague began to develop reliable and efficient motors in large sizes, marketing 15 hp (11 kW) examples by 1885. He devised the method of collecting current by using a wooden, spring-loaded rod to press a roller against the underside of an overhead wire. The installation by Sprague in 1888 of a street tramway on a large scale in Richmond, Virginia, was to become the prototype of the universally adopted trolley system with overhead conductor and the beginning of commercial electric traction. Following the success of the Richmond tramway the company equipped sixty-seven other railways before its merger with Edison General Electric in 1890. The Sprague traction motor supported on the axle of electric streetcars and flexibly mounted to the bogie set a pattern that was widely adopted for many years.Encouraged by successful experiments with multiple-sheave electric elevators, the Sprague Elevator Company was formed and installed the first set of high-speed passenger cars in 1893–4. These effectively displaced hydraulic elevators in larger buildings. From experience with control systems for these, he developed his system of multiple-unit control for electric trains, which other engineers had considered impracticable. In Sprague's system, a master controller situated in the driver's cab operated electrically at a distance the contactors and reversers which controlled the motors distributed down the train. After years of experiment, Sprague's multiple-unit control was put into use for the first time in 1898 by the Chicago South Side Elevated Railway: within fifteen years multiple-unit operation was used worldwide.[br]Principal Honours and DistinctionsPresident, American Institute of Electrical Engineers 1892–3. Franklin Institute Elliot Cresson Medal 1904, Franklin Medal 1921. American Institute of Electrical Engineers Edison Medal 1910.Bibliography1888, "The solution of municipal rapid transit", Trans. AIEE 5:352–98. See "The multiple unit system for electric railways", Cassiers Magazine, (1899) London, repub. 1960, 439–460.1934, "Digging in “The Mines of the Motor”", Electrical Engineering 53, New York: 695–706 (a short autobiography).Further ReadingLionel Calisch, 1913, Electric Traction, London: The Locomotive Publishing Co., Ch. 6 (for a near-contemporary view of Sprague's multiple-unit control).D.C.Jackson, 1934, "Frank Julian Sprague", Scientific Monthly 57:431–41.H.C.Passer, 1952, "Frank Julian Sprague: father of electric traction", in Men of Business, ed. W. Miller, Cambridge, Mass., pp. 212–37 (a reliable account).——1953, The Electrical Manufacturers: 1875–1900, Cambridge, Mass. P.Ransome-Wallis (ed.), 1959, The Concise Encyclopaedia of World RailwayLocomotives, London: Hutchinson, p. 143..John Marshall, 1978, A Biographical Dictionary of Railway Engineers, Newton Abbot: David \& Charles.GW / PJGR -
11 RTS
1) Общая лексика: РТС - Российская торговая система (Russian Trading System (stock exchange))2) Компьютерная техника: Real-Time Strategy, стратегия в реальном времени3) Авиация: Return To Service4) Американизм: Required To Save5) Спорт: Ready To Start, Ready To Swim, Really Tough Slope6) Военный термин: Random Telegraph Signal, Ranger Transit System, Real-Time Simulator, Really Tough Stuff, Requirements Tracking System, radar target simulator, radar test set, radar tracking station, radar tracking system, radio terminal set, radiotelemetry subsystem, radioteletypewriter set, range timing system, range tracking system, readiness training squadron, real-time simulation, real-time system, reconnaissance technical squadron, regional technical support, regional training site, remote targeting system, remote testing system, remote tracking site, remote tracking station, replacement training squadron, research and technical services, research test site, return to stores7) Техника: radar technology satellite, radio telescope satellite, real-time software, refueling water transfer and storage, relay telemetry subsystem, номинальная прочность на разрыв (один из основных параметров неизолированного сталеалюминиевого провода)8) Железнодорожный термин: Rail Technical Services, Rapid Transit System9) Юридический термин: Reclaim The Streets10) Ветеринария: Red Tummy Snake11) Металлургия: (radiant tubes section) секция радиантных труб12) Телекоммуникации: Request To Send (EIA-232-E)13) Сокращение: Radar Test Station, Range Threat System, Rapid Targeting System, Request to Send (communications protocol signal), Return to Sender (see "Return To Sender codes" for code list), Robot Target System, returned to service, Request To Send (EIA RS-232-C), Run-Time System14) Университет: Reformed Theological Seminary, Research Training Scheme, Rice Transliteration Scheme, Row Title Space15) Физиология: Rubinstein Taybi Syndrome16) Электроника: Real Time Spectrogram, Return To Sender, Rural Telephone System, request to send17) Вычислительная техника: Request To Send (EIA RS-232-C), Reliable Transfer Service (OSI)18) Транспорт: Rapid Transit Series, Remote Terminal Site19) Фирменный знак: Reliable Transfer Services, Rockford Tooling Systems20) Экология: reactor trip system21) СМИ: Royal Television Society22) Деловая лексика: Rapid Tooling System, Residual Time Stamp, Russian Trading System23) Образование: Radio Television Service24) Сетевые технологии: Ready To Send, Resolve Through Sharing, Routing Table Size, reliable transfer service, запрос на передачу, служба надёжной пересылки, служба реального времени25) Полупроводники: resonant tunnelling structure26) Химическое оружие: Requisition tracking system27) Обогащение: вращательная трибоэлектростатическая сепарация, rotary tribo-electrostatic separation, rotary triboelectrostatic separation28) Расширение файла: CA- Realizer Runtime Library, Real Time Subroutines, Remote Takeover System29) Энергосистемы: РТС30) Электротехника: reaction turbine stage31) Компьютерные игры: ( real time strategy) стратегия в реальном времени32) Должность: Resistance Training Specialist -
12 Bibliography
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Dennett (Eds.), The mind's I (pp. 353-373). New York: Basic Books.■ Searle, J. R. (1983). Intentionality. New York: Cambridge University Press.■ Serres, M. (1982). The origin of language: Biology, information theory, and thermodynamics. M. Anderson (Trans.). In J. V. Harari & D. F. Bell (Eds.), Hermes: Literature, science, philosophy (pp. 71-83). Baltimore: Johns Hopkins University Press.■ Simon, H. A. (1966). Scientific discovery and the psychology of problem solving. In R. G. Colodny (Ed.), Mind and cosmos: Essays in contemporary science and philosophy (pp. 22-40). Pittsburgh: University of Pittsburgh Press.■ Simon, H. A. (1979). Models of thought. New Haven, CT: Yale University Press.■ Simon, H. A. (1989). The scientist as a problem solver. In D. Klahr & K. Kotovsky (Eds.), Complex information processing: The impact of Herbert Simon. Hillsdale, N.J.: Lawrence Erlbaum Associates.■ Simon, H. A., & C. Kaplan (1989). Foundations of cognitive science. In M. Posner (Ed.), Foundations of cognitive science (pp. 1-47). Cambridge, MA: MIT Press.■ Simonton, D. K. (1988). Creativity, leadership and chance. In R. J. Sternberg (Ed.), The nature of creativity. Cambridge: Cambridge University Press.■ Skinner, B. F. (1974). About behaviorism. New York: Knopf.■ Smith, E. E. (1988). Concepts and thought. In J. Sternberg & E. E. Smith (Eds.), The psychology of human thought (pp. 19-49). Cambridge: Cambridge University Press.■ Smith, E. E. (1990). Thinking: Introduction. In D. N. Osherson & E. E. Smith (Eds.), Thinking. An invitation to cognitive science. (Vol. 3, pp. 1-2). Cambridge, MA: MIT Press.■ Socrates. (1958). Meno. In E. H. Warmington & P. O. Rouse (Eds.), Great dialogues of Plato W.H.D. Rouse (Trans.). New York: New American Library. (Original publication date unknown.)■ Solso, R. L. (1974). Theories of retrieval. In R. L. Solso (Ed.), Theories in cognitive psychology. Potomac, MD: Lawrence Erlbaum Associates.■ Spencer, H. (1896). The principles of psychology. New York: Appleton-CenturyCrofts.■ Steiner, G. (1975). After Babel: Aspects of language and translation. New York: Oxford University Press.■ Sternberg, R. J. (1977). Intelligence, information processing, and analogical reasoning. Hillsdale, NJ: Lawrence Erlbaum Associates.■ Sternberg, R. J. (1994). Intelligence. In R. J. Sternberg, Thinking and problem solving. San Diego: Academic Press.■ Sternberg, R. J., & J. E. Davidson (1985). Cognitive development in gifted and talented. In F. D. Horowitz & M. O'Brien (Eds.), The gifted and talented (pp. 103-135). Washington, DC: American Psychological Association.■ Storr, A. (1993). The dynamics of creation. New York: Ballantine Books. (Originally published in 1972.)■ Stumpf, S. E. (1994). Philosophy: History and problems (5th ed.). New York: McGraw-Hill.■ Sulloway, F. J. (1996). Born to rebel: Birth order, family dynamics, and creative lives. New York: Random House/Vintage Books.■ Thorndike, E. L. (1906). Principles of teaching. New York: A. G. Seiler.■ Thorndike, E. L. (1970). Animal intelligence: Experimental studies. Darien, CT: Hafner Publishing Co. (Originally published in 1911.)■ Titchener, E. B. (1910). A textbook of psychology. New York: Macmillan.■ Titchener, E. B. (1914). A primer of psychology. New York: Macmillan.■ Toulmin, S. (1957). The philosophy of science. London: Hutchinson.■ Tulving, E. (1972). Episodic and semantic memory. In E. Tulving & W. Donaldson (Eds.), Organisation of memory. London: Academic Press.■ Turing, A. (1946). In B. E. Carpenter & R. W. Doran (Eds.), ACE reports of 1946 and other papers. Cambridge, MA: MIT Press.■ Turkle, S. (1984). Computers and the second self: Computers and the human spirit. New York: Simon & Schuster.■ Tyler, S. A. (1978). The said and the unsaid: Mind, meaning, and culture. New York: Academic Press.■ van Heijenoort (Ed.) (1967). From Frege to Goedel. Cambridge: Harvard University Press.■ Varela, F. J. (1984). The creative circle: Sketches on the natural history of circularity. In P. Watzlawick (Ed.), The invented reality (pp. 309-324). New York: W. W. Norton.■ Voltaire (1961). On the Penseґs of M. Pascal. In Philosophical letters (pp. 119-146). E. Dilworth (Trans.). Indianapolis: Bobbs-Merrill.■ Wagman, M. (1991a). Artificial intelligence and human cognition: A theoretical inter comparison of two realms of intellect. Westport, CT: Praeger.■ Wagman, M. (1991b). Cognitive science and concepts of mind: Toward a general theory of human and artificial intelligence. Westport, CT: Praeger.■ Wagman, M. (1993). Cognitive psychology and artificial intelligence: Theory and re search in cognitive science. Westport, CT: Praeger.■ Wagman, M. (1995). The sciences of cognition: Theory and research in psychology and artificial intelligence. Westport, CT: Praeger.■ Wagman, M. (1996). Human intellect and cognitive science: Toward a general unified theory of intelligence. Westport, CT: Praeger.■ Wagman, M. (1997a). Cognitive science and the symbolic operations of human and artificial intelligence: Theory and research into the intellective processes. Westport, CT: Praeger.■ Wagman, M. (1997b). The general unified theory of intelligence: Central conceptions and specific application to domains of cognitive science. Westport, CT: Praeger.■ Wagman, M. (1998a). Cognitive science and the mind- body problem: From philosophy to psychology to artificial intelligence to imaging of the brain. Westport, CT: Praeger.■ Wagman, M. (1998b). Language and thought in humans and computers: Theory and research in psychology, artificial intelligence, and neural science. Westport, CT: Praeger.■ Wagman, M. (1998c). The ultimate objectives of artificial intelligence: Theoretical and research foundations, philosophical and psychological implications. Westport, CT: Praeger.■ Wagman, M. (1999). The human mind according to artificial intelligence: Theory, re search, and implications. Westport, CT: Praeger.■ Wagman, M. (2000). Scientific discovery processes in humans and computers: Theory and research in psychology and artificial intelligence. Westport, CT: Praeger.■ Wall, R. (1972). Introduction to mathematical linguistics. Englewood Cliffs, NJ: Prentice-Hall.■ Wallas, G. (1926). The Art of Thought. New York: Harcourt, Brace & Co.■ Wason, P. (1977). Self contradictions. In P. Johnson-Laird & P. Wason (Eds.), Thinking: Readings in cognitive science. Cambridge: Cambridge University Press.■ Wason, P. C., & P. N. Johnson-Laird. (1972). Psychology of reasoning: Structure and content. Cambridge, MA: Harvard University Press.■ Watson, J. (1930). Behaviorism. New York: W. W. Norton.■ Watzlawick, P. (1984). Epilogue. In P. Watzlawick (Ed.), The invented reality. New York: W. W. Norton, 1984.■ Weinberg, S. (1977). The first three minutes: A modern view of the origin of the uni verse. New York: Basic Books.■ Weisberg, R. W. (1986). Creativity: Genius and other myths. New York: W. H. Freeman.■ Weizenbaum, J. (1976). Computer power and human reason: From judgment to cal culation. San Francisco: W. H. Freeman.■ Wertheimer, M. (1945). Productive thinking. New York: Harper & Bros.■ Whitehead, A. N. (1925). Science and the modern world. New York: Macmillan.■ Whorf, B. L. (1956). In J. B. Carroll (Ed.), Language, thought and reality: Selected writings of Benjamin Lee Whorf. Cambridge, MA: MIT Press.■ Whyte, L. L. (1962). The unconscious before Freud. New York: Anchor Books.■ Wiener, N. (1954). The human use of human beings. Boston: Houghton Mifflin.■ Wiener, N. (1964). God & Golem, Inc.: A comment on certain points where cybernetics impinges on religion. Cambridge, MA: MIT Press.■ Winograd, T. (1972). Understanding natural language. New York: Academic Press.■ Winston, P. H. (1987). Artificial intelligence: A perspective. In E. L. Grimson & R. S. Patil (Eds.), AI in the 1980s and beyond (pp. 1-12). Cambridge, MA: MIT Press.■ Winston, P. H. (Ed.) (1975). The psychology of computer vision. New York: McGrawHill.■ Wittgenstein, L. (1953). Philosophical investigations. Oxford: Basil Blackwell.■ Wittgenstein, L. (1958). The blue and brown books. New York: Harper Colophon.■ Woods, W. A. (1975). What's in a link: Foundations for semantic networks. In D. G. Bobrow & A. Collins (Eds.), Representations and understanding: Studies in cognitive science (pp. 35-84). New York: Academic Press.■ Woodworth, R. S. (1938). Experimental psychology. New York: Holt; London: Methuen (1939).■ Wundt, W. (1904). Principles of physiological psychology (Vol. 1). E. B. Titchener (Trans.). New York: Macmillan.■ Wundt, W. (1907). Lectures on human and animal psychology. J. E. Creighton & E. B. Titchener (Trans.). New York: Macmillan.■ Young, J. Z. (1978). Programs of the brain. New York: Oxford University Press.■ Ziman, J. (1978). Reliable knowledge: An exploration of the grounds for belief in science. Cambridge: Cambridge University Press.Historical dictionary of quotations in cognitive science > Bibliography
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13 DC
- цифровая вычислительная машина
- центр обработки данных
- система цифрового управления
- символ управления устройством
- сбросной конденсатор
- разработчик проекта
- работающий на постоянном токе
- пульт диспетчера
- прямое включение
- постоянный ток
- охладитель дренажей на ТЭС
- отстойник (осветлитель)
- осаждённая угольная частица
- описание (функциональная связь)
- контроль документооборота
- конденсатор выпара
- компенсация дисперсии
- канал дренажей
- канал (передачи) данных
- изменение конструкции или проекта
- завершение проекта
- дрейфовая камера
- двойной контакт
двойной контакт
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
изменение конструкции или проекта
—
[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
канал (передачи) данных
—
[Е.С.Алексеев, А.А.Мячев. Англо-русский толковый словарь по системотехнике ЭВМ. Москва 1993]Тематики
EN
компенсация дисперсии
(МСЭ-Т G.959.1).
[ http://www.iks-media.ru/glossary/index.html?glossid=2400324]Тематики
- электросвязь, основные понятия
EN
контроль документооборота
—
[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
осаждённая угольная частица
—
[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
отстойник (осветлитель)
—
[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
- decanter
- DC
охладитель дренажей на ТЭС
—
[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
постоянный ток
Электрический ток, не изменяющийся во времени.
Примечание — Аналогично определяют постоянные электрическое напряжение, электродвижущую силу, магнитный поток и т. д.
[ ГОСТ Р 52002-2003]Параллельные тексты EN-RU For definition, the electric current called “direct” has a unidirectional trend constant in time.
As a matter of fact, by analyzing the motion of the charges at a point crossed by a direct current, it results that the quantity of charge (Q) flowing through that point (or better, through that cross section) in each instant is always the same.
[ABB]Постоянным током называется электрический ток, значение и направление которого, не изменяются во времени.
Если рассматривать постоянный ток как прохождение элементарных электрических зарядов через определенную точку, то значение заряда (Q), протекающего через эту точку (а вернее через это поперечное сечение проводника) за единицу времени будет постоянным.
[Перевод Интент]Direct current, which was once the main means of distributing electric power, is still widespread today in the electrical plants supplying particular industrial applications.
The advantages in terms of settings, offered by the employ of d.c. motors and by supply through a single line, make direct current supply a good solution for railway and underground systems, trams, lifts and other transport means.
In addition, direct current is used in conversion plants (installations where different types of energy are converted into electrical direct energy, e.g. photovoltaic plants) and, above all, in those emergency applications where an auxiliary energy source is required to supply essential services, such as protection systems, emergency lighting, wards and factories, alarm systems, computer centers, etc..
Accumulators - for example – constitute the most reliable energy source for these services, both directly in direct current as well as by means of uninterruptible power supply units (UPS), when loads are supplied in alternating current.
[ABB]Когда-то электрическая энергия передавалась и распределялась только на постоянном токе. Но и в настоящее время в отдельных отраслях промышленности постоянный ток применяется достаточно широко.
Возможности использования двигателей постоянного тока и передачи электроэнергии по линии с меньшим числом проводников дают неоспоримые преимущества при электроснабжении железных дорог, подземного транспорта, трамваев, лифтов и т. д.
Кроме того, существуют источники постоянного тока, являющиеся преобразователями различных видов энергии непосредственно в электрическую энергию, например, фотоэлектрические станции. Дополнительные источники постоянного тока применяют в аварийных ситуациях для питания систем защиты, аварийного освещения жилых районов и на производстве, систем сигнализации, компьютерных центров и т. д.
Для решения указанных задач наиболее подходящим источником электроэнергии является аккумулятор. Нагрузки постоянного тока получают электропитание непосредственно от аккумулятора. Нагрузки переменного тока – от источника бесперебойного питания (ИБП), частью которого является аккумулятор.
[Перевод Интент]Direct current can be generated:
- by using batteries or accumulators where the current is generated directly through chemical processes;
- by the rectification of alternating current through rectifiers (static conversion);
- by the conversion of mechanical work into electrical energy using dynamos (production through rotating machines).
[ABB]Постоянный ток можно получить следующими способами:
- от аккумуляторов, в которых электрическая энергия образуется за счет происходящих внутри аккумулятора химических реакций;
- выпрямлением переменного тока с помощью выпрямителей (статических преобразователей);
- преобразованием механической энергии в электрическую с помощью генераторов постоянного тока (вращающихся машин).
[Перевод Интент]In the low voltage field, direct current is used for different applications, which, in the following pages, have been divided into four macrofamilies including:
- conversion into other forms of electrical energy (photovoltaic plants, above all where accumulator batteries are used);
- electric traction (tram-lines, underground railways, etc.);
- supply of emergency or auxiliary services;
- particular industrial installations (electrolytic processes, etc.).
[ABB]Можно выделить четыре области применения постоянного тока в низковольтных электроустановках:
- преобразование различных видов энергии в электрическую (фотоэлектрические установки с аккумуляторными батареями);
- энергоснабжение транспорта на электрической тяге (трамваи, метро и т. д.)
- электропитание аварийных или вспомогательных служб;
- специальные промышленные установки (например, с использованием электролитических процессов и т. п.).
[Интент]Тематики
- электротехника, основные понятия
Синонимы
EN
прямое включение
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
пульт диспетчера
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
работающий на постоянном токе
—
[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
символ управления устройством
—
[Е.С.Алексеев, А.А.Мячев. Англо-русский толковый словарь по системотехнике ЭВМ. Москва 1993]Тематики
EN
система цифрового управления
—
[Е.С.Алексеев, А.А.Мячев. Англо-русский толковый словарь по системотехнике ЭВМ. Москва 1993]Тематики
EN
центр обработки данных
центр обработки и хранения данных
ЦОД
Консолидированный комплекс инженерно-технических средств, обеспечивающий безопасную централизованную обработку, хранение и предоставление данных, сервисов и приложений, а также вычислительную инфраструктуру для автоматизации бизнес-задач компании. ЦОД состоит из следующих элементов: серверного комплекса, хранилища данных, сети передачи данных, инфраструктуры, организационной структуры, системы управления.
[ http://www.dtln.ru/slovar-terminov]Тематики
Синонимы
EN
цифровая вычислительная машина
—
[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
Англо-русский словарь нормативно-технической терминологии > DC
-
14 constant current
постоянный ток
Электрический ток, не изменяющийся во времени.
Примечание — Аналогично определяют постоянные электрическое напряжение, электродвижущую силу, магнитный поток и т. д.
[ ГОСТ Р 52002-2003]Параллельные тексты EN-RU For definition, the electric current called “direct” has a unidirectional trend constant in time.
As a matter of fact, by analyzing the motion of the charges at a point crossed by a direct current, it results that the quantity of charge (Q) flowing through that point (or better, through that cross section) in each instant is always the same.
[ABB]Постоянным током называется электрический ток, значение и направление которого, не изменяются во времени.
Если рассматривать постоянный ток как прохождение элементарных электрических зарядов через определенную точку, то значение заряда (Q), протекающего через эту точку (а вернее через это поперечное сечение проводника) за единицу времени будет постоянным.
[Перевод Интент]Direct current, which was once the main means of distributing electric power, is still widespread today in the electrical plants supplying particular industrial applications.
The advantages in terms of settings, offered by the employ of d.c. motors and by supply through a single line, make direct current supply a good solution for railway and underground systems, trams, lifts and other transport means.
In addition, direct current is used in conversion plants (installations where different types of energy are converted into electrical direct energy, e.g. photovoltaic plants) and, above all, in those emergency applications where an auxiliary energy source is required to supply essential services, such as protection systems, emergency lighting, wards and factories, alarm systems, computer centers, etc..
Accumulators - for example – constitute the most reliable energy source for these services, both directly in direct current as well as by means of uninterruptible power supply units (UPS), when loads are supplied in alternating current.
[ABB]Когда-то электрическая энергия передавалась и распределялась только на постоянном токе. Но и в настоящее время в отдельных отраслях промышленности постоянный ток применяется достаточно широко.
Возможности использования двигателей постоянного тока и передачи электроэнергии по линии с меньшим числом проводников дают неоспоримые преимущества при электроснабжении железных дорог, подземного транспорта, трамваев, лифтов и т. д.
Кроме того, существуют источники постоянного тока, являющиеся преобразователями различных видов энергии непосредственно в электрическую энергию, например, фотоэлектрические станции. Дополнительные источники постоянного тока применяют в аварийных ситуациях для питания систем защиты, аварийного освещения жилых районов и на производстве, систем сигнализации, компьютерных центров и т. д.
Для решения указанных задач наиболее подходящим источником электроэнергии является аккумулятор. Нагрузки постоянного тока получают электропитание непосредственно от аккумулятора. Нагрузки переменного тока – от источника бесперебойного питания (ИБП), частью которого является аккумулятор.
[Перевод Интент]Direct current can be generated:
- by using batteries or accumulators where the current is generated directly through chemical processes;
- by the rectification of alternating current through rectifiers (static conversion);
- by the conversion of mechanical work into electrical energy using dynamos (production through rotating machines).
[ABB]Постоянный ток можно получить следующими способами:
- от аккумуляторов, в которых электрическая энергия образуется за счет происходящих внутри аккумулятора химических реакций;
- выпрямлением переменного тока с помощью выпрямителей (статических преобразователей);
- преобразованием механической энергии в электрическую с помощью генераторов постоянного тока (вращающихся машин).
[Перевод Интент]In the low voltage field, direct current is used for different applications, which, in the following pages, have been divided into four macrofamilies including:
- conversion into other forms of electrical energy (photovoltaic plants, above all where accumulator batteries are used);
- electric traction (tram-lines, underground railways, etc.);
- supply of emergency or auxiliary services;
- particular industrial installations (electrolytic processes, etc.).
[ABB]Можно выделить четыре области применения постоянного тока в низковольтных электроустановках:
- преобразование различных видов энергии в электрическую (фотоэлектрические установки с аккумуляторными батареями);
- энергоснабжение транспорта на электрической тяге (трамваи, метро и т. д.)
- электропитание аварийных или вспомогательных служб;
- специальные промышленные установки (например, с использованием электролитических процессов и т. п.).
[Интент]Тематики
- электротехника, основные понятия
Синонимы
EN
ток постоянной величины
неизменный ток
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
Синонимы
EN
Англо-русский словарь нормативно-технической терминологии > constant current
-
15 direct current
постоянный ток
Электрический ток, не изменяющийся во времени.
Примечание — Аналогично определяют постоянные электрическое напряжение, электродвижущую силу, магнитный поток и т. д.
[ ГОСТ Р 52002-2003]Параллельные тексты EN-RU For definition, the electric current called “direct” has a unidirectional trend constant in time.
As a matter of fact, by analyzing the motion of the charges at a point crossed by a direct current, it results that the quantity of charge (Q) flowing through that point (or better, through that cross section) in each instant is always the same.
[ABB]Постоянным током называется электрический ток, значение и направление которого, не изменяются во времени.
Если рассматривать постоянный ток как прохождение элементарных электрических зарядов через определенную точку, то значение заряда (Q), протекающего через эту точку (а вернее через это поперечное сечение проводника) за единицу времени будет постоянным.
[Перевод Интент]Direct current, which was once the main means of distributing electric power, is still widespread today in the electrical plants supplying particular industrial applications.
The advantages in terms of settings, offered by the employ of d.c. motors and by supply through a single line, make direct current supply a good solution for railway and underground systems, trams, lifts and other transport means.
In addition, direct current is used in conversion plants (installations where different types of energy are converted into electrical direct energy, e.g. photovoltaic plants) and, above all, in those emergency applications where an auxiliary energy source is required to supply essential services, such as protection systems, emergency lighting, wards and factories, alarm systems, computer centers, etc..
Accumulators - for example – constitute the most reliable energy source for these services, both directly in direct current as well as by means of uninterruptible power supply units (UPS), when loads are supplied in alternating current.
[ABB]Когда-то электрическая энергия передавалась и распределялась только на постоянном токе. Но и в настоящее время в отдельных отраслях промышленности постоянный ток применяется достаточно широко.
Возможности использования двигателей постоянного тока и передачи электроэнергии по линии с меньшим числом проводников дают неоспоримые преимущества при электроснабжении железных дорог, подземного транспорта, трамваев, лифтов и т. д.
Кроме того, существуют источники постоянного тока, являющиеся преобразователями различных видов энергии непосредственно в электрическую энергию, например, фотоэлектрические станции. Дополнительные источники постоянного тока применяют в аварийных ситуациях для питания систем защиты, аварийного освещения жилых районов и на производстве, систем сигнализации, компьютерных центров и т. д.
Для решения указанных задач наиболее подходящим источником электроэнергии является аккумулятор. Нагрузки постоянного тока получают электропитание непосредственно от аккумулятора. Нагрузки переменного тока – от источника бесперебойного питания (ИБП), частью которого является аккумулятор.
[Перевод Интент]Direct current can be generated:
- by using batteries or accumulators where the current is generated directly through chemical processes;
- by the rectification of alternating current through rectifiers (static conversion);
- by the conversion of mechanical work into electrical energy using dynamos (production through rotating machines).
[ABB]Постоянный ток можно получить следующими способами:
- от аккумуляторов, в которых электрическая энергия образуется за счет происходящих внутри аккумулятора химических реакций;
- выпрямлением переменного тока с помощью выпрямителей (статических преобразователей);
- преобразованием механической энергии в электрическую с помощью генераторов постоянного тока (вращающихся машин).
[Перевод Интент]In the low voltage field, direct current is used for different applications, which, in the following pages, have been divided into four macrofamilies including:
- conversion into other forms of electrical energy (photovoltaic plants, above all where accumulator batteries are used);
- electric traction (tram-lines, underground railways, etc.);
- supply of emergency or auxiliary services;
- particular industrial installations (electrolytic processes, etc.).
[ABB]Можно выделить четыре области применения постоянного тока в низковольтных электроустановках:
- преобразование различных видов энергии в электрическую (фотоэлектрические установки с аккумуляторными батареями);
- энергоснабжение транспорта на электрической тяге (трамваи, метро и т. д.)
- электропитание аварийных или вспомогательных служб;
- специальные промышленные установки (например, с использованием электролитических процессов и т. п.).
[Интент]Тематики
- электротехника, основные понятия
Синонимы
EN
Англо-русский словарь нормативно-технической терминологии > direct current
-
16 RIS
1) Компьютерная техника: Remote Installation Server2) Авиация: infectious substances (обозначение ИАТА)3) Медицина: Radiology Information System (DICOM)4) Военный термин: RADIAC instrument system, range information system, range instrumentation station, receiving inspection segment, regulatory information system, reports identification symbol, retail inventory system, rotating image scanner5) Техника: Receipt Inspection Segment, range instrumentation ship, reporting identification symbol, reservoir-induced seismicity, resistive gate-insulator-semiconductor, resonance ionization spectroscopy6) Грубое выражение: Ricky Is Sexy7) Сокращение: Radar Information Service, Rail Interface System, Range Instrumentation System, Reconnaissance Interface System, Reparto Informazioni e Sicurezza (Italian military operational intelligence organisation), Royal Imperial Society8) Физиология: Resistance, Immunity, Susceptibility9) Нефть: reliability information system, система сбора, обработки и хранения данных о надёжности (reliability information system)10) Онкология: Radiological Information System11) Космонавтика: Regional Information Service (ESCAP)12) Фирменный знак: Radiology Information Systems, Reliable Internet Systems, Reprographic Imaging Services13) Экология: Regulatory Impact Statement14) Деловая лексика: Regional Innovation And Strategy, Relocation Information Services, Retail Information System15) Сетевые технологии: Remote Installation Service16) Телефония: Real-time information server17) Океанография: River Information Services18) Макаров: resistor-insulator-semiconductor19) Нефть и газ: refinery information system20) Майкрософт: служба RIS21) НАСА: Research Information System22) Международная торговля: Regional Innovation Strategies, Regional Innovation Strategy23) Оргтехника: Raster Input Scanner -
17 RST
1) Компьютерная техника: Ram Stress Test, Rotation Scaling And Translation2) Медицина: right sacrum transverse3) Военный термин: Recovery Support Team, Regional Survey Team, radius of safety trace, range search and track, recognition suppression technique, reentry system technology, requirements for scheduled test, research study team, rolling stock4) Техника: radiating space target, radio star trace, radiometric sun tracer, readability, signal strength, tone, remote seismic terminal5) Грубое выражение: Rude Stupid Timid6) Сокращение: Robotic Systems Technology, Royal Society of Teachers, radar start, restrict, Restart7) Университет: Run Student Tests8) Физика: Rotation, Stretch, and Translation9) Физиология: Reflex Stress Technology, Resolved Sexual Tension10) Электроника: Radio Systems Technology, Regulation Servo Tracking, Reynolds Stress11) Нефть: stock-tank producing gas/oil ratio, дистанционный сейсмологический терминал (remote seismic terminal)12) Транспорт: Road And Sea Transport13) Фирменный знак: Reliable Software Technologies14) Глоссарий компании Сахалин Энерджи: rotary steering [steerable] tools15) Химическое оружие: reagent storage tank16) Нефть и газ: Reservoir Saturation Tool (Schlumberger)17) Карачаганак: reservoir saturation tool18) Должность: Registered Seed Technologist19) NYSE. Boca Resorts, Inc.20) Аэропорты: Rochester, Minnesota USA -
18 rst
1) Компьютерная техника: Ram Stress Test, Rotation Scaling And Translation2) Медицина: right sacrum transverse3) Военный термин: Recovery Support Team, Regional Survey Team, radius of safety trace, range search and track, recognition suppression technique, reentry system technology, requirements for scheduled test, research study team, rolling stock4) Техника: radiating space target, radio star trace, radiometric sun tracer, readability, signal strength, tone, remote seismic terminal5) Грубое выражение: Rude Stupid Timid6) Сокращение: Robotic Systems Technology, Royal Society of Teachers, radar start, restrict, Restart7) Университет: Run Student Tests8) Физика: Rotation, Stretch, and Translation9) Физиология: Reflex Stress Technology, Resolved Sexual Tension10) Электроника: Radio Systems Technology, Regulation Servo Tracking, Reynolds Stress11) Нефть: stock-tank producing gas/oil ratio, дистанционный сейсмологический терминал (remote seismic terminal)12) Транспорт: Road And Sea Transport13) Фирменный знак: Reliable Software Technologies14) Глоссарий компании Сахалин Энерджи: rotary steering [steerable] tools15) Химическое оружие: reagent storage tank16) Нефть и газ: Reservoir Saturation Tool (Schlumberger)17) Карачаганак: reservoir saturation tool18) Должность: Registered Seed Technologist19) NYSE. Boca Resorts, Inc.20) Аэропорты: Rochester, Minnesota USA -
19 sophisticated
adj1. сучасний, на рівні сучасних умов2. складний, ускладнений- sophisticated armaments сучасне озброєння- sophisticated arms сучасна зброя- sophisticated delivery systems вдосконалені/ найновіші засоби- sophisticated text складний текст- sophisticated reliable methods сучасні надійні методи- sophisticated weapon systems вдосконалені/ новітні системи озброєння -
20 sophisticated
a1) сложный, усложнённый; современный2) фальсифицированный, искажённый3) изощрённый; утончённый•
- 1
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