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1 системная константа
Information technology: system constant, system-defined constantУниверсальный русско-английский словарь > системная константа
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2 задачи МОК
задачи МОК
МОК предпринимает все возможные действия в рамках своих ролей и обязанностей, чтобы обеспечить выполнение каждыми Олимпийскими играми задач и видения всех организаций, входящих в Олимпийское движение, и каждого города-организатора. В этом контексте, основные задачи МОК состоят в следующем:
• обучать и помогать городам-кандидатам;
• выбрать город-организатор Олимпийских игр, учитывая существующую инфраструктуру, ресурсы и достоинства проекта, а также потенциал для позитивного наследия;
• четко определить задачи, обязанности и права всех сторон, задействованных в планировании и проведении Игр;
• определить и обеспечить должный уровень услуг для всех клиентов;
• осуществлять эффективный мониторинг подготовки Игр посредством определенных инструментов и процессов управления, а также обеспечить минимизацию рисков и материализацию возможностей;
• обеспечить финансовую и оперативную помощь для проведения Олимпийских игр;
• обеспечить долгосрочную жизнеспособность Игр посредством системы постоянной оценки и непрекращающихся усовершенствований.
[Департамент лингвистических услуг Оргкомитета «Сочи 2014». Глоссарий терминов]EN
IOC objectives
IOC undertakes every possible action within its framework of roles and responsibilities to ensure an Olympic Games meets the objectives and vision of all Olympic Movement entities and each host city. In this context, the IOC's main objectives are to:
• educate and assist bid cities
• select the host city for the Olympic Games, giving consideration to the existing infrastructure, resources and project merits and the potential for a positive legacy
• define clearly the objectives, obligations and rights of all parties involved in planning and delivering a Games
• establish and ensure delivery of the appropriate levels of services to all clients
• effectively monitor the preparation of the Games through defined management tools and processes, and ensure that risks are minimized and opportunities are materialized
• provide financial and operational assistance for the operations of the Olympic Games
• ensure the long-term viability of the Games through a system of constant evaluation and ongoing improvements.
[Департамент лингвистических услуг Оргкомитета «Сочи 2014». Глоссарий терминов]Тематики
EN
Русско-английский словарь нормативно-технической терминологии > задачи МОК
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3 точка
point
- бортовая заправочная — external servicing point
- верхняя мертвая (вмт, поршня пд) — top dead center (tdc
положение поршня и соответствующего кривошипа копенвапа в точке, наиболее удаленной от оси коленвапа, т.е. положение поршня в самой верхней точке хода (рис. 64). — the position of а piston and its crankshaft arm when the piston is at its farthest removed position from the center line of the crankshaft, i.e., it is at the top of stroke.
- весеннего равноденствия весны — vernal equinox
- выброски, беспосадочного десантирования (парашютистов, грузов) — (para) drop point /area/
- выхода из района (зоны) — exit fix
-, десятичная (на пульте управнения и индикации) — decimal point. all decimal points are illuminated.
- заземления (эл.) — ground connection
на схеме должны быть указаны внутренние перемычки и точки заземления, — internal jumpers and ground connections be shown in the wiring diagram.
- замера — measuring point
- замерзания — freezing point
- заправки водой (маслом, топливом) — water (oil, fuel) servicing point
- измерения — measuring point
-, исходная — origin, initial point
- касания — contact point
- касания самолета при посадке (рис. 116) — touchdown point
- кипения — boiling point (bp)
- кислородного питания (штуцер) — oxygen outlet
-, конечная — terminal point
-, контрольная (контрольный вывод в аппаратуре) (кг) — test point (тр). a number of strategically placed тр provides simple and rapid trouble-shooting.
- крепления — attachment /attach /point
- крепления страховочных строп — afety harness attach(ment) point /receptacle/
-, критическая (точка нулевой скорости в потоке, обтекающам тело) (рис. 142) — stagnation point. a point in а field of flow about а body where the air particles have zero velocity with respect to the body.
-, критическая (отказа двигателя при взлете) — critical point, critical engine failure point
точка, в которой при разбеге самолета предполагается отказ критического двигателя с цепью опредепения дистанции прерванного взлета и траектории взлета, — critical point is а selected point at which, for the purpose of determining the accelerate-stop distance and take-off path, failure of the critical power unit is assumed to occur.
-, мертвая (в системе управпения) — dead spot
зона нечувствительности у нейтрального положения в системе управления, в котарой незначительные перемещения исполнительного мехацизма не вызывают к-л. срабатывания системы. — in а control system, а region centered about the neutral control position where small movements of the actuator do not produce any response in the system.
- места местоположения (ла) — position (fix), pos
- минимальной высоты принятия решения идти на посадку — minimum landing commit point. do not attempt а go-around after the minimum commit point (1000 ft above airport elevation).
-, наведения (при заходе на посадку) — land point. fix а land point on the runway
- из впп, не обеспечивающая безопасности выполнения посадки — nо-land point (on runway)
- на поверхности земли — point on surface of the earth, point on the earth's surface
- на траектории — point on flight path
- на траектории, указанная в графике на рис. — point(s) on flight path plotted in fig.
- начала выброски (тнв, парашютистов, грузов) — drop initiation point (dip)
- начала выравнивания (при посадке) — flare-out point
- начала выравнивания (после набора высоты) — leveling-off point
- начала координат — origin of coordinates
- начала отсчета — datum point, origin, reference point
- начала отсчета дистанций (пo продольной оси ла) — station numbering origin
- начала отсчета (траектории начального взлета) — (takeoff flight path) reference zero
начало отсчета координат различных точек на траектории начального набора высоты, расположенное в конце взлетной дистанции на уровне 35 фт (10,7 м) ниже траектории взлета. — this is а reference to which the coordinates of the various points in the takeoff flight path are referred. it is defined as the end of the takeoff distance and 35 feet below the flight path at this point.
- начала разворота — initial point of turn, roll-in point, turn point
- начала шкалы (прибора) — scale origin point
-, нейтральная — neutral point
-, неподвижная — fixed point
- нечувствительности (в системe управления) — dead spot
-, нивелировочная — leveling mark /point/
контрольные точки на определенных местах конструкции самолета, служащие для нивелировки ла. — reference marks for leveling the airplane on the ground.
-, нижняя мертвая (нмт) — bottom dead center (bdc)
положение поршня пд при его максимальном удалении от головки цилиндра (рис. 64). — the crankshaft position when the piston of an engine is at the greatest possible distance from the cylinder head.
-, нулевая (напр., электрического соединения *звездой*) — neutral point
-, нулевая заземленная — grounded neutral point
-, нулевая незаземленная — ungrounded neutral point
- нулевой подъемной силы — zero lift point
- обслуживания туалетов (заправки водой, химжидкостью, слив) — lavatory servicing point
-, опорная (отсчета, привязки) — reference point
- опоры — fulcrum
точка, относительно которой поворачивается или совершает колебательные движения рычаг. — the pivot point about which а lever oscillates or turns.
- осени, осеннего равнодействия — autumn equinox
- отказа двигателя (при взлете — engine failure point
- отрыва воздушного потока — airflow separation point
точка, в которой происходит отрыв пограничного слоя потока.
- отрыва (срыва) возд. потока, точка начала турбулизации — burble point. the point in increasing angle of attack at which burble begins.
- отрыва при взлете — lift-off point
- отсчета, нулевая — reference zero, origin
- пересечения — paint of intersection
- перехода (рис. 142) — transition point
- питания кислородом (штуцер) — oxygen outlet
- повышенного внимания (при осмотре, контроле) — thorough-inspection point /area, zone/, point subject to thorough inspection
- подъема (такелажная) — lifting /hoist/ point
- полного торможения (лотока) — stagnation point
-, посадочная (на впп) — land point fix а land-no land point on the runway.
- прибытия (прилета) — point of destination
- приземления — touchdown point
- приложения вектора — point of vector application
- приложения нагрузки — point of load application
- приложения силы — point of force application
- принятия решения — decision point
- принятия решения идти на посадку (300 м над уровнем аэродрома) — landing commit point (1000 ft above airport elevation)
- прицеливания — aim(ing) point
- прицеливания, наведения (предполагаемого касания впп при посадке) — land point
- пятиминутного взлета — five minute power point
точка, достигаемая самалетом через 5 минут после на чала взлета. режим работы двигателей (после достижения этой точки) должен быть уменьшен до макс. продолжительного. — the point at which a time of 5 minutes has elapsed after start of takeoff. the power of the operative engines must then be reduced to maximum continuous.
- равноденствия (в астронавигации) — equinoctical point, equinox
-, радионавигационная (рнт) — radio navigation station
- разворота — turn point
-, реперная (для нивелировки) — leveling point /mark/
- росы — dewpoint
температура, до которой нужно охладить воздух, чтобы содержащийся в нем водяной пар достиг состояния насыщения, — the temperature to which a given parcel of air must be cooled at constant pressure and constant water-vapor content in order for saturation to occur.
-, световая (отметка на экране катодно-лучевой трубки) — blip. a spot of light on cathoderay tube display.
-, световая (от осветителя) — spot of light
- смазки (на карте смазки) — greasing point (on lubrication chart)
- сообщения о месте (местоположении) ла — reporting point
- соррикосновения — point of contact
- срабатывания — actuation point
-, средняя (трех-фазной сети с четвертым проводом, с возможным заземлением) — neutral point (of three-phase, four-wire system). the neutral point may be grounded.
- старта (при взлете) — start of takeoff
- старта (начала полета) — point of departure
-, створная — align point
-, такелажная — lifting/hoist/point
chart showing lifting and jacking points shall be provided.
-, такелажная (надпись) — hoist point, hoist here
-, тарируемая — calibrated point
- технического обслуживания (бортовая, на борту ла) — (external) servicing point
- траектории полета — flight path point
- четверти хорды — quarter-chord point
точка на хорде аэродинамического профиля, отстоящая на 1/4 длины хорды от передней кромки (рис. 8). — quarter-chord point is on the aerofoil section chord at one quarter of the chord length behind the leading edge.
- шарнирного крепления — hinge point
элерон крепится (подвешивается) в (з-х) точках, — aileron is hinged at (three) points.
-, швартовочная (груза в отсеке) — tie-down point
-, швартовочная (ла) (рис. 150) — mooring/picketing/point
- шкалы (прибора) — scale point /mark/
- шкалы (рис. 72) — scale dot
- шкалы, оцифрованная, числовая — scale point marked with figure, figure-marked scale point
в вмт (верхней мертвой точке) — at tdc. the piston of cylinder no.1 is at tdc.
в нмт (нижней мертвой точке) — at bdc
до вмт — before tdc
замер в т. "а" — measurement at point "а"
недоход поршня до верхней мертвой т. на...град. — piston failure to reach tdc by... degrees
после вмт — after /past/ tdc
доходить до вмт (о поршне) — reach tdc
не доходить до вмт — fail to reach tdc
рассчитывать т. разворота — calculate turn pointРусско-английский сборник авиационно-технических терминов > точка
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4 Computers
The brain has been compared to a digital computer because the neuron, like a switch or valve, either does or does not complete a circuit. But at that point the similarity ends. The switch in the digital computer is constant in its effect, and its effect is large in proportion to the total output of the machine. The effect produced by the neuron varies with its recovery from [the] refractory phase and with its metabolic state. The number of neurons involved in any action runs into millions so that the influence of any one is negligible.... Any cell in the system can be dispensed with.... The brain is an analogical machine, not digital. Analysis of the integrative activities will probably have to be in statistical terms. (Lashley, quoted in Beach, Hebb, Morgan & Nissen, 1960, p. 539)It is essential to realize that a computer is not a mere "number cruncher," or supercalculating arithmetic machine, although this is how computers are commonly regarded by people having no familiarity with artificial intelligence. Computers do not crunch numbers; they manipulate symbols.... Digital computers originally developed with mathematical problems in mind, are in fact general purpose symbol manipulating machines....The terms "computer" and "computation" are themselves unfortunate, in view of their misleading arithmetical connotations. The definition of artificial intelligence previously cited-"the study of intelligence as computation"-does not imply that intelligence is really counting. Intelligence may be defined as the ability creatively to manipulate symbols, or process information, given the requirements of the task in hand. (Boden, 1981, pp. 15, 16-17)The task is to get computers to explain things to themselves, to ask questions about their experiences so as to cause those explanations to be forthcoming, and to be creative in coming up with explanations that have not been previously available. (Schank, 1986, p. 19)In What Computers Can't Do, written in 1969 (2nd edition, 1972), the main objection to AI was the impossibility of using rules to select only those facts about the real world that were relevant in a given situation. The "Introduction" to the paperback edition of the book, published by Harper & Row in 1979, pointed out further that no one had the slightest idea how to represent the common sense understanding possessed even by a four-year-old. (Dreyfus & Dreyfus, 1986, p. 102)A popular myth says that the invention of the computer diminishes our sense of ourselves, because it shows that rational thought is not special to human beings, but can be carried on by a mere machine. It is a short stop from there to the conclusion that intelligence is mechanical, which many people find to be an affront to all that is most precious and singular about their humanness.In fact, the computer, early in its career, was not an instrument of the philistines, but a humanizing influence. It helped to revive an idea that had fallen into disrepute: the idea that the mind is real, that it has an inner structure and a complex organization, and can be understood in scientific terms. For some three decades, until the 1940s, American psychology had lain in the grip of the ice age of behaviorism, which was antimental through and through. During these years, extreme behaviorists banished the study of thought from their agenda. Mind and consciousness, thinking, imagining, planning, solving problems, were dismissed as worthless for anything except speculation. Only the external aspects of behavior, the surface manifestations, were grist for the scientist's mill, because only they could be observed and measured....It is one of the surprising gifts of the computer in the history of ideas that it played a part in giving back to psychology what it had lost, which was nothing less than the mind itself. In particular, there was a revival of interest in how the mind represents the world internally to itself, by means of knowledge structures such as ideas, symbols, images, and inner narratives, all of which had been consigned to the realm of mysticism. (Campbell, 1989, p. 10)[Our artifacts] only have meaning because we give it to them; their intentionality, like that of smoke signals and writing, is essentially borrowed, hence derivative. To put it bluntly: computers themselves don't mean anything by their tokens (any more than books do)-they only mean what we say they do. Genuine understanding, on the other hand, is intentional "in its own right" and not derivatively from something else. (Haugeland, 1981a, pp. 32-33)he debate over the possibility of computer thought will never be won or lost; it will simply cease to be of interest, like the previous debate over man as a clockwork mechanism. (Bolter, 1984, p. 190)t takes us a long time to emotionally digest a new idea. The computer is too big a step, and too recently made, for us to quickly recover our balance and gauge its potential. It's an enormous accelerator, perhaps the greatest one since the plow, twelve thousand years ago. As an intelligence amplifier, it speeds up everything-including itself-and it continually improves because its heart is information or, more plainly, ideas. We can no more calculate its consequences than Babbage could have foreseen antibiotics, the Pill, or space stations.Further, the effects of those ideas are rapidly compounding, because a computer design is itself just a set of ideas. As we get better at manipulating ideas by building ever better computers, we get better at building even better computers-it's an ever-escalating upward spiral. The early nineteenth century, when the computer's story began, is already so far back that it may as well be the Stone Age. (Rawlins, 1997, p. 19)According to weak AI, the principle value of the computer in the study of the mind is that it gives us a very powerful tool. For example, it enables us to formulate and test hypotheses in a more rigorous and precise fashion than before. But according to strong AI the computer is not merely a tool in the study of the mind; rather the appropriately programmed computer really is a mind in the sense that computers given the right programs can be literally said to understand and have other cognitive states. And according to strong AI, because the programmed computer has cognitive states, the programs are not mere tools that enable us to test psychological explanations; rather, the programs are themselves the explanations. (Searle, 1981b, p. 353)What makes people smarter than machines? They certainly are not quicker or more precise. Yet people are far better at perceiving objects in natural scenes and noting their relations, at understanding language and retrieving contextually appropriate information from memory, at making plans and carrying out contextually appropriate actions, and at a wide range of other natural cognitive tasks. People are also far better at learning to do these things more accurately and fluently through processing experience.What is the basis for these differences? One answer, perhaps the classic one we might expect from artificial intelligence, is "software." If we only had the right computer program, the argument goes, we might be able to capture the fluidity and adaptability of human information processing. Certainly this answer is partially correct. There have been great breakthroughs in our understanding of cognition as a result of the development of expressive high-level computer languages and powerful algorithms. However, we do not think that software is the whole story.In our view, people are smarter than today's computers because the brain employs a basic computational architecture that is more suited to deal with a central aspect of the natural information processing tasks that people are so good at.... hese tasks generally require the simultaneous consideration of many pieces of information or constraints. Each constraint may be imperfectly specified and ambiguous, yet each can play a potentially decisive role in determining the outcome of processing. (McClelland, Rumelhart & Hinton, 1986, pp. 3-4)Historical dictionary of quotations in cognitive science > Computers
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