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1 Knowledge Component
Философия: когнитивные способности (http://www.learnlab.org/research/wiki/index.php/Knowledge_component) -
2 knowledge component
Англо-русский словарь по исследованиям и ноу-хау > knowledge component
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3 Knowledge
It is indeed an opinion strangely prevailing amongst men, that houses, mountains, rivers, and, in a word, all sensible objects, have an existence, natural or real, distinct from their being perceived by the understanding. But, with how great an assurance and acquiescence soever this principle may be entertained in the world, yet whoever shall find in his heart to call it into question may, if I mistake not, perceive it to involve a manifest contradiction. For, what are the forementioned objects but things we perceive by sense? and what do we perceive besides our own ideas or sensations? and is it not plainly repugnant that any one of these, or any combination of them, should exist unperceived? (Berkeley, 1996, Pt. I, No. 4, p. 25)It seems to me that the only objects of the abstract sciences or of demonstration are quantity and number, and that all attempts to extend this more perfect species of knowledge beyond these bounds are mere sophistry and illusion. As the component parts of quantity and number are entirely similar, their relations become intricate and involved; and nothing can be more curious, as well as useful, than to trace, by a variety of mediums, their equality or inequality, through their different appearances.But as all other ideas are clearly distinct and different from each other, we can never advance farther, by our utmost scrutiny, than to observe this diversity, and, by an obvious reflection, pronounce one thing not to be another. Or if there be any difficulty in these decisions, it proceeds entirely from the undeterminate meaning of words, which is corrected by juster definitions. That the square of the hypotenuse is equal to the squares of the other two sides cannot be known, let the terms be ever so exactly defined, without a train of reasoning and enquiry. But to convince us of this proposition, that where there is no property, there can be no injustice, it is only necessary to define the terms, and explain injustice to be a violation of property. This proposition is, indeed, nothing but a more imperfect definition. It is the same case with all those pretended syllogistical reasonings, which may be found in every other branch of learning, except the sciences of quantity and number; and these may safely, I think, be pronounced the only proper objects of knowledge and demonstration. (Hume, 1975, Sec. 12, Pt. 3, pp. 163-165)Our knowledge springs from two fundamental sources of the mind; the first is the capacity of receiving representations (the ability to receive impressions), the second is the power to know an object through these representations (spontaneity in the production of concepts).Through the first, an object is given to us; through the second, the object is thought in relation to that representation.... Intuition and concepts constitute, therefore, the elements of all our knowledge, so that neither concepts without intuition in some way corresponding to them, nor intuition without concepts, can yield knowledge. Both may be either pure or empirical.... Pure intuitions or pure concepts are possible only a priori; empirical intuitions and empirical concepts only a posteriori. If the receptivity of our mind, its power of receiving representations in so far as it is in any way affected, is to be called "sensibility," then the mind's power of producing representations from itself, the spontaneity of knowledge, should be called "understanding." Our nature is so constituted that our intuitions can never be other than sensible; that is, it contains only the mode in which we are affected by objects. The faculty, on the other hand, which enables us to think the object of sensible intuition is the understanding.... Without sensibility, no object would be given to us; without understanding, no object would be thought. Thoughts without content are empty; intuitions without concepts are blind. It is therefore just as necessary to make our concepts sensible, that is, to add the object to them in intuition, as to make our intuitions intelligible, that is to bring them under concepts. These two powers or capacities cannot exchange their functions. The understanding can intuit nothing, the senses can think nothing. Only through their union can knowledge arise. (Kant, 1933, Sec. 1, Pt. 2, B74-75 [p. 92])Metaphysics, as a natural disposition of Reason is real, but it is also, in itself, dialectical and deceptive.... Hence to attempt to draw our principles from it, and in their employment to follow this natural but none the less fallacious illusion can never produce science, but only an empty dialectical art, in which one school may indeed outdo the other, but none can ever attain a justifiable and lasting success. In order that, as a science, it may lay claim not merely to deceptive persuasion, but to insight and conviction, a Critique of Reason must exhibit in a complete system the whole stock of conceptions a priori, arranged according to their different sources-the Sensibility, the understanding, and the Reason; it must present a complete table of these conceptions, together with their analysis and all that can be deduced from them, but more especially the possibility of synthetic knowledge a priori by means of their deduction, the principles of its use, and finally, its boundaries....This much is certain: he who has once tried criticism will be sickened for ever of all the dogmatic trash he was compelled to content himself with before, because his Reason, requiring something, could find nothing better for its occupation. Criticism stands to the ordinary school metaphysics exactly in the same relation as chemistry to alchemy, or as astron omy to fortune-telling astrology. I guarantee that no one who has comprehended and thought out the conclusions of criticism, even in these Prolegomena, will ever return to the old sophistical pseudo-science. He will rather look forward with a kind of pleasure to a metaphysics, certainly now within his power, which requires no more preparatory discoveries, and which alone can procure for reason permanent satisfaction. (Kant, 1891, pp. 115-116)Knowledge is only real and can only be set forth fully in the form of science, in the form of system. Further, a so-called fundamental proposition or first principle of philosophy, even if it is true, it is yet none the less false, just because and in so far as it is merely a fundamental proposition, merely a first principle. It is for that reason easily refuted. The refutation consists in bringing out its defective character; and it is defective because it is merely the universal, merely a principle, the beginning. If the refutation is complete and thorough, it is derived and developed from the nature of the principle itself, and not accomplished by bringing in from elsewhere other counter-assurances and chance fancies. It would be strictly the development of the principle, and thus the completion of its deficiency, were it not that it misunderstands its own purport by taking account solely of the negative aspect of what it seeks to do, and is not conscious of the positive character of its process and result. The really positive working out of the beginning is at the same time just as much the very reverse: it is a negative attitude towards the principle we start from. Negative, that is to say, in its one-sided form, which consists in being primarily immediate, a mere purpose. It may therefore be regarded as a refutation of what constitutes the basis of the system; but more correctly it should be looked at as a demonstration that the basis or principle of the system is in point of fact merely its beginning. (Hegel, 1910, pp. 21-22)Knowledge, action, and evaluation are essentially connected. The primary and pervasive significance of knowledge lies in its guidance of action: knowing is for the sake of doing. And action, obviously, is rooted in evaluation. For a being which did not assign comparative values, deliberate action would be pointless; and for one which did not know, it would be impossible. Conversely, only an active being could have knowledge, and only such a being could assign values to anything beyond his own feelings. A creature which did not enter into the process of reality to alter in some part the future content of it, could apprehend a world only in the sense of intuitive or esthetic contemplation; and such contemplation would not possess the significance of knowledge but only that of enjoying and suffering. (Lewis, 1946, p. 1)"Evolutionary epistemology" is a branch of scholarship that applies the evolutionary perspective to an understanding of how knowledge develops. Knowledge always involves getting information. The most primitive way of acquiring it is through the sense of touch: amoebas and other simple organisms know what happens around them only if they can feel it with their "skins." The knowledge such an organism can have is strictly about what is in its immediate vicinity. After a huge jump in evolution, organisms learned to find out what was going on at a distance from them, without having to actually feel the environment. This jump involved the development of sense organs for processing information that was farther away. For a long time, the most important sources of knowledge were the nose, the eyes, and the ears. The next big advance occurred when organisms developed memory. Now information no longer needed to be present at all, and the animal could recall events and outcomes that happened in the past. Each one of these steps in the evolution of knowledge added important survival advantages to the species that was equipped to use it.Then, with the appearance in evolution of humans, an entirely new way of acquiring information developed. Up to this point, the processing of information was entirely intrasomatic.... But when speech appeared (and even more powerfully with the invention of writing), information processing became extrasomatic. After that point knowledge did not have to be stored in the genes, or in the memory traces of the brain; it could be passed on from one person to another through words, or it could be written down and stored on a permanent substance like stone, paper, or silicon chips-in any case, outside the fragile and impermanent nervous system. (Csikszentmihalyi, 1993, pp. 56-57)Historical dictionary of quotations in cognitive science > Knowledge
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4 Artificial Intelligence
In my opinion, none of [these programs] does even remote justice to the complexity of human mental processes. Unlike men, "artificially intelligent" programs tend to be single minded, undistractable, and unemotional. (Neisser, 1967, p. 9)Future progress in [artificial intelligence] will depend on the development of both practical and theoretical knowledge.... As regards theoretical knowledge, some have sought a unified theory of artificial intelligence. My view is that artificial intelligence is (or soon will be) an engineering discipline since its primary goal is to build things. (Nilsson, 1971, pp. vii-viii)Most workers in AI [artificial intelligence] research and in related fields confess to a pronounced feeling of disappointment in what has been achieved in the last 25 years. Workers entered the field around 1950, and even around 1960, with high hopes that are very far from being realized in 1972. In no part of the field have the discoveries made so far produced the major impact that was then promised.... In the meantime, claims and predictions regarding the potential results of AI research had been publicized which went even farther than the expectations of the majority of workers in the field, whose embarrassments have been added to by the lamentable failure of such inflated predictions....When able and respected scientists write in letters to the present author that AI, the major goal of computing science, represents "another step in the general process of evolution"; that possibilities in the 1980s include an all-purpose intelligence on a human-scale knowledge base; that awe-inspiring possibilities suggest themselves based on machine intelligence exceeding human intelligence by the year 2000 [one has the right to be skeptical]. (Lighthill, 1972, p. 17)4) Just as Astronomy Succeeded Astrology, the Discovery of Intellectual Processes in Machines Should Lead to a Science, EventuallyJust as astronomy succeeded astrology, following Kepler's discovery of planetary regularities, the discoveries of these many principles in empirical explorations on intellectual processes in machines should lead to a science, eventually. (Minsky & Papert, 1973, p. 11)5) Problems in Machine Intelligence Arise Because Things Obvious to Any Person Are Not Represented in the ProgramMany problems arise in experiments on machine intelligence because things obvious to any person are not represented in any program. One can pull with a string, but one cannot push with one.... Simple facts like these caused serious problems when Charniak attempted to extend Bobrow's "Student" program to more realistic applications, and they have not been faced up to until now. (Minsky & Papert, 1973, p. 77)What do we mean by [a symbolic] "description"? We do not mean to suggest that our descriptions must be made of strings of ordinary language words (although they might be). The simplest kind of description is a structure in which some features of a situation are represented by single ("primitive") symbols, and relations between those features are represented by other symbols-or by other features of the way the description is put together. (Minsky & Papert, 1973, p. 11)[AI is] the use of computer programs and programming techniques to cast light on the principles of intelligence in general and human thought in particular. (Boden, 1977, p. 5)The word you look for and hardly ever see in the early AI literature is the word knowledge. They didn't believe you have to know anything, you could always rework it all.... In fact 1967 is the turning point in my mind when there was enough feeling that the old ideas of general principles had to go.... I came up with an argument for what I called the primacy of expertise, and at the time I called the other guys the generalists. (Moses, quoted in McCorduck, 1979, pp. 228-229)9) Artificial Intelligence Is Psychology in a Particularly Pure and Abstract FormThe basic idea of cognitive science is that intelligent beings are semantic engines-in other words, automatic formal systems with interpretations under which they consistently make sense. We can now see why this includes psychology and artificial intelligence on a more or less equal footing: people and intelligent computers (if and when there are any) turn out to be merely different manifestations of the same underlying phenomenon. Moreover, with universal hardware, any semantic engine can in principle be formally imitated by a computer if only the right program can be found. And that will guarantee semantic imitation as well, since (given the appropriate formal behavior) the semantics is "taking care of itself" anyway. Thus we also see why, from this perspective, artificial intelligence can be regarded as psychology in a particularly pure and abstract form. The same fundamental structures are under investigation, but in AI, all the relevant parameters are under direct experimental control (in the programming), without any messy physiology or ethics to get in the way. (Haugeland, 1981b, p. 31)There are many different kinds of reasoning one might imagine:Formal reasoning involves the syntactic manipulation of data structures to deduce new ones following prespecified rules of inference. Mathematical logic is the archetypical formal representation. Procedural reasoning uses simulation to answer questions and solve problems. When we use a program to answer What is the sum of 3 and 4? it uses, or "runs," a procedural model of arithmetic. Reasoning by analogy seems to be a very natural mode of thought for humans but, so far, difficult to accomplish in AI programs. The idea is that when you ask the question Can robins fly? the system might reason that "robins are like sparrows, and I know that sparrows can fly, so robins probably can fly."Generalization and abstraction are also natural reasoning process for humans that are difficult to pin down well enough to implement in a program. If one knows that Robins have wings, that Sparrows have wings, and that Blue jays have wings, eventually one will believe that All birds have wings. This capability may be at the core of most human learning, but it has not yet become a useful technique in AI.... Meta- level reasoning is demonstrated by the way one answers the question What is Paul Newman's telephone number? You might reason that "if I knew Paul Newman's number, I would know that I knew it, because it is a notable fact." This involves using "knowledge about what you know," in particular, about the extent of your knowledge and about the importance of certain facts. Recent research in psychology and AI indicates that meta-level reasoning may play a central role in human cognitive processing. (Barr & Feigenbaum, 1981, pp. 146-147)Suffice it to say that programs already exist that can do things-or, at the very least, appear to be beginning to do things-which ill-informed critics have asserted a priori to be impossible. Examples include: perceiving in a holistic as opposed to an atomistic way; using language creatively; translating sensibly from one language to another by way of a language-neutral semantic representation; planning acts in a broad and sketchy fashion, the details being decided only in execution; distinguishing between different species of emotional reaction according to the psychological context of the subject. (Boden, 1981, p. 33)Can the synthesis of Man and Machine ever be stable, or will the purely organic component become such a hindrance that it has to be discarded? If this eventually happens-and I have... good reasons for thinking that it must-we have nothing to regret and certainly nothing to fear. (Clarke, 1984, p. 243)The thesis of GOFAI... is not that the processes underlying intelligence can be described symbolically... but that they are symbolic. (Haugeland, 1985, p. 113)14) Artificial Intelligence Provides a Useful Approach to Psychological and Psychiatric Theory FormationIt is all very well formulating psychological and psychiatric theories verbally but, when using natural language (even technical jargon), it is difficult to recognise when a theory is complete; oversights are all too easily made, gaps too readily left. This is a point which is generally recognised to be true and it is for precisely this reason that the behavioural sciences attempt to follow the natural sciences in using "classical" mathematics as a more rigorous descriptive language. However, it is an unfortunate fact that, with a few notable exceptions, there has been a marked lack of success in this application. It is my belief that a different approach-a different mathematics-is needed, and that AI provides just this approach. (Hand, quoted in Hand, 1985, pp. 6-7)We might distinguish among four kinds of AI.Research of this kind involves building and programming computers to perform tasks which, to paraphrase Marvin Minsky, would require intelligence if they were done by us. Researchers in nonpsychological AI make no claims whatsoever about the psychological realism of their programs or the devices they build, that is, about whether or not computers perform tasks as humans do.Research here is guided by the view that the computer is a useful tool in the study of mind. In particular, we can write computer programs or build devices that simulate alleged psychological processes in humans and then test our predictions about how the alleged processes work. We can weave these programs and devices together with other programs and devices that simulate different alleged mental processes and thereby test the degree to which the AI system as a whole simulates human mentality. According to weak psychological AI, working with computer models is a way of refining and testing hypotheses about processes that are allegedly realized in human minds.... According to this view, our minds are computers and therefore can be duplicated by other computers. Sherry Turkle writes that the "real ambition is of mythic proportions, making a general purpose intelligence, a mind." (Turkle, 1984, p. 240) The authors of a major text announce that "the ultimate goal of AI research is to build a person or, more humbly, an animal." (Charniak & McDermott, 1985, p. 7)Research in this field, like strong psychological AI, takes seriously the functionalist view that mentality can be realized in many different types of physical devices. Suprapsychological AI, however, accuses strong psychological AI of being chauvinisticof being only interested in human intelligence! Suprapsychological AI claims to be interested in all the conceivable ways intelligence can be realized. (Flanagan, 1991, pp. 241-242)16) Determination of Relevance of Rules in Particular ContextsEven if the [rules] were stored in a context-free form the computer still couldn't use them. To do that the computer requires rules enabling it to draw on just those [ rules] which are relevant in each particular context. Determination of relevance will have to be based on further facts and rules, but the question will again arise as to which facts and rules are relevant for making each particular determination. One could always invoke further facts and rules to answer this question, but of course these must be only the relevant ones. And so it goes. It seems that AI workers will never be able to get started here unless they can settle the problem of relevance beforehand by cataloguing types of context and listing just those facts which are relevant in each. (Dreyfus & Dreyfus, 1986, p. 80)Perhaps the single most important idea to artificial intelligence is that there is no fundamental difference between form and content, that meaning can be captured in a set of symbols such as a semantic net. (G. Johnson, 1986, p. 250)Artificial intelligence is based on the assumption that the mind can be described as some kind of formal system manipulating symbols that stand for things in the world. Thus it doesn't matter what the brain is made of, or what it uses for tokens in the great game of thinking. Using an equivalent set of tokens and rules, we can do thinking with a digital computer, just as we can play chess using cups, salt and pepper shakers, knives, forks, and spoons. Using the right software, one system (the mind) can be mapped into the other (the computer). (G. Johnson, 1986, p. 250)19) A Statement of the Primary and Secondary Purposes of Artificial IntelligenceThe primary goal of Artificial Intelligence is to make machines smarter.The secondary goals of Artificial Intelligence are to understand what intelligence is (the Nobel laureate purpose) and to make machines more useful (the entrepreneurial purpose). (Winston, 1987, p. 1)The theoretical ideas of older branches of engineering are captured in the language of mathematics. We contend that mathematical logic provides the basis for theory in AI. Although many computer scientists already count logic as fundamental to computer science in general, we put forward an even stronger form of the logic-is-important argument....AI deals mainly with the problem of representing and using declarative (as opposed to procedural) knowledge. Declarative knowledge is the kind that is expressed as sentences, and AI needs a language in which to state these sentences. Because the languages in which this knowledge usually is originally captured (natural languages such as English) are not suitable for computer representations, some other language with the appropriate properties must be used. It turns out, we think, that the appropriate properties include at least those that have been uppermost in the minds of logicians in their development of logical languages such as the predicate calculus. Thus, we think that any language for expressing knowledge in AI systems must be at least as expressive as the first-order predicate calculus. (Genesereth & Nilsson, 1987, p. viii)21) Perceptual Structures Can Be Represented as Lists of Elementary PropositionsIn artificial intelligence studies, perceptual structures are represented as assemblages of description lists, the elementary components of which are propositions asserting that certain relations hold among elements. (Chase & Simon, 1988, p. 490)Artificial intelligence (AI) is sometimes defined as the study of how to build and/or program computers to enable them to do the sorts of things that minds can do. Some of these things are commonly regarded as requiring intelligence: offering a medical diagnosis and/or prescription, giving legal or scientific advice, proving theorems in logic or mathematics. Others are not, because they can be done by all normal adults irrespective of educational background (and sometimes by non-human animals too), and typically involve no conscious control: seeing things in sunlight and shadows, finding a path through cluttered terrain, fitting pegs into holes, speaking one's own native tongue, and using one's common sense. Because it covers AI research dealing with both these classes of mental capacity, this definition is preferable to one describing AI as making computers do "things that would require intelligence if done by people." However, it presupposes that computers could do what minds can do, that they might really diagnose, advise, infer, and understand. One could avoid this problematic assumption (and also side-step questions about whether computers do things in the same way as we do) by defining AI instead as "the development of computers whose observable performance has features which in humans we would attribute to mental processes." This bland characterization would be acceptable to some AI workers, especially amongst those focusing on the production of technological tools for commercial purposes. But many others would favour a more controversial definition, seeing AI as the science of intelligence in general-or, more accurately, as the intellectual core of cognitive science. As such, its goal is to provide a systematic theory that can explain (and perhaps enable us to replicate) both the general categories of intentionality and the diverse psychological capacities grounded in them. (Boden, 1990b, pp. 1-2)Because the ability to store data somewhat corresponds to what we call memory in human beings, and because the ability to follow logical procedures somewhat corresponds to what we call reasoning in human beings, many members of the cult have concluded that what computers do somewhat corresponds to what we call thinking. It is no great difficulty to persuade the general public of that conclusion since computers process data very fast in small spaces well below the level of visibility; they do not look like other machines when they are at work. They seem to be running along as smoothly and silently as the brain does when it remembers and reasons and thinks. On the other hand, those who design and build computers know exactly how the machines are working down in the hidden depths of their semiconductors. Computers can be taken apart, scrutinized, and put back together. Their activities can be tracked, analyzed, measured, and thus clearly understood-which is far from possible with the brain. This gives rise to the tempting assumption on the part of the builders and designers that computers can tell us something about brains, indeed, that the computer can serve as a model of the mind, which then comes to be seen as some manner of information processing machine, and possibly not as good at the job as the machine. (Roszak, 1994, pp. xiv-xv)The inner workings of the human mind are far more intricate than the most complicated systems of modern technology. Researchers in the field of artificial intelligence have been attempting to develop programs that will enable computers to display intelligent behavior. Although this field has been an active one for more than thirty-five years and has had many notable successes, AI researchers still do not know how to create a program that matches human intelligence. No existing program can recall facts, solve problems, reason, learn, and process language with human facility. This lack of success has occurred not because computers are inferior to human brains but rather because we do not yet know in sufficient detail how intelligence is organized in the brain. (Anderson, 1995, p. 2)Historical dictionary of quotations in cognitive science > Artificial Intelligence
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5 system
1) система2) установка; устройство•- 2D design system
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- coordinate system
- coprocessor board system
- copymill control system
- corporate information and office system
- coupling system
- CPS system
- CRT control system
- CRT system
- customer-oriented system
- customized FMS control system
- cut-piece transfer system
- cycloidal tooth system
- data base management system
- data communication system
- data control system
- data input management system
- data management system
- data origination system
- data processing system
- data retrieval system
- data transfer system
- datum system for geometrical tolerancing
- datum system
- DDM system
- decentralized DNC system
- decision enabling system
- decision support system
- dedicated production system
- deep-hole-drilling system
- defect-free machining system
- delivery system
- demand pull flexible system
- demand push flexible system
- departmental management system
- descaling system
- design coordinate system
- design support system
- design-automation system
- design-for-manufacturing system
- design-with-feature system
- desk-top publishing system
- deterministic system
- dexel-based system
- diagnostic communication control system
- diagnostic computer control system
- dialog system
- diamond-lapping system
- digital readout system
- digitizing system
- digitizing/data capture system
- dimensional verification system
- direct impingement starting system
- direct lubrication system
- direct NC system
- discrete-continuous system
- dispatcher system
- distributed computer system
- distributed mass-spring system
- distributed microprocessor system
- distributed processing system
- distributed quality system
- distributed system
- distributive numerical control system
- DNC flexible machining system
- DNC machine control system
- DNC machine tool control system
- DNC system
- DNC/FM system
- document processing system
- document retrieval system
- document search system
- domain-expert system
- Doppler system
- DOS CAM system
- double tube system
- dowel pin system
- DRO system
- drop-feed-lubrication system
- DTP system
- dual laser optical system
- dual laser referencing system
- dual system
- dual-beam LDDM system
- dual-pallet shuttle system
- dual-shaft electric propulsion system
- dynamic beam focusing laser system
- dynamic data system
- dynamic mapping system
- early warning system
- eddy current damper system
- edge-sensing system
- edge-type positioning system
- eight-station pallet system
- electrical contact tracing system
- electrofluidic control system
- emergency protection system
- enclosure system
- encoder checking system
- endpoint locating system
- energy-adaptive system
- energy-saving drive system
- engine starting system
- entry-level NC system
- environmental control system
- equivalent rigid link system
- equivalent systems of forces
- ESD system
- estimating system
- example-driven system
- expert control system
- expert process planning system
- expert system
- external box system
- extractor system
- fact retrieval system
- factory automation system
- fault detection system
- fault-signal system
- FBG system
- feasibility routing system
- feature-based CAM system
- feature-based system
- feed system
- feedback control system
- feedback gaging system
- feedback position control system
- feedback system
- feed-drive system
- feedforward compensatory control system
- feed-only AC system
- feed-overriding system
- FFS system
- file control system
- finite capacity scheduling system
- fixed coordinate system
- fixed-feature NC system
- fixed-rail system
- fixture design system
- fixture system
- fixturing system
- flanged pipe system
- flexible assembly system
- flexible automated manufacturing system
- flexible automation system
- flexible computer-controlled robotic system
- flexible fabricating system
- flexible fixturing system
- flexible handling system
- flexible laser optical system
- flexible laser system
- flexible lathe system
- flexible machine system
- flexible machining center system
- flexible machining system
- flexible manufacturing system
- flexible NC system
- flexible press system
- flexible tooling system
- flexible transfer system
- flexible turning system
- flood coolant system
- flow-line production system
- flow-type manufacturing system
- fluid management system
- fluid power system
- flush-type cooling system
- fly system
- FMS operating system
- FMS/CAD/CAM system
- FMS-type production system
- force measurement system
- force sensory system
- force system
- force-sensing system
- forecasting system
- four-station pallet system
- four-tier quality system
- FROG navigation system
- FROG system
- full-blown system
- fully specified system
- gage system
- gaging computer system
- gaging-and-compensating system
- gantry loading system
- gantry-based turning system
- gantry-style motion system
- gas-turbine starting system
- gating system
- gear roller system
- gear system
- gear testing system
- general information retrieval system
- generative planning system
- generic control system
- generic messaging system
- generic system
- glass fiber system
- glazing system
- goal-seeking system
- graphic numerical control system
- graphic processing system
- graphics system
- graphics-oriented system
- grating measuring system
- gravity oil system
- gray scale imaging system
- grinder vision system
- group control system
- guarding system
- guidance system
- guiding system
- handling system
- handwriting-input system
- hard-automated system
- hardware NC system
- hardware support system
- head change system
- head changer system
- head-changing flexible manufacturing system
- help system
- hierarchical coding system
- hierarchical control system
- hierarchical information control system
- high-noise-immunity system
- high-rise system
- high-speed positioning system
- high-speed-processor control system
- high-volume system
- Hirth gear-tooth system
- holding system
- holding tool system
- hole system
- holonomic system
- host computer-assisted programming system
- host distributive numerical control system
- hybrid computing system
- hydraulic oil system
- hydraulic system
- hydraulic-circuit system
- hypertext system
- ID system
- IDNC system
- illumination system
- image detection system
- image processing system
- imaging system
- IMC system
- immersion-washing system
- inconsistent system of equations
- incremental measuring system
- index system
- indirect lubrication system
- individual lubrication system
- inductive telemetry system
- inductively guided cart system
- industrial vision system
- in-feed system
- inference system
- in-floor chip-disposal system
- information infrastructure system
- information logical system
- information processing system
- information storage and retrieval system
- information system
- information-gathering system
- information-management system
- information-sharing system
- infrared imaging system
- infrared system
- in-house minicomputer system
- in-house system
- inlet control system
- in-process gaging system
- in-process sensing system
- in-process storage system
- insert-selection system
- instrumentation system
- insulating system
- integral movement monitoring system
- integrated CAD/CAPP/CAM system
- integrated CAM system
- integrated circuit numerical control system
- integrated computer system
- integrated information system
- integrated machine system
- integrated machining system
- integrated manufacturing and assembly system
- integrated manufacturing system
- integrated NC machine system
- integrated production system
- integrated sensor system
- intelligent control system
- interactive control system
- interactive graphics processing system
- interactive manufacturing control system
- interconnection system
- interdepartmental communication system
- interferometer measuring system
- interlocking system
- interrupt-driven system
- inventory-management system
- involute tooth system
- IR fault-signal system
- IR system
- ISO system of limits and tolerances
- isolated word recognition system
- jig boring measuring system
- job shop-type flexible system
- joint-actuation system
- just-in-time production system
- kanban pull system
- kinetic control system
- kitting system
- knowledge base management system
- knowledge system
- knowledge-based information system
- knowledge-based system
- krypton laser system
- labeling system
- labor-intensive system
- language-based NC system
- laser beam orientation system
- laser beam positioning system
- laser calibration system
- laser combination energy system
- laser digitizing system
- laser driving system
- laser full automated system
- laser inspection system
- laser interferometer measuring system
- laser machining system
- laser metalworking system
- laser micrometer system
- laser monitoring system
- laser mount system
- laser optical transformation system
- laser pulse power system
- laser pump system
- laser referencing system
- laser thread measurement system
- laser transducer system
- laser-cutting system
- laser-gaging system
- layered control system
- LDDM system
- lead screw drive system
- learning system
- library reference system
- library system
- light guide system
- light recognition system
- line motion control system
- line motion system
- line path system
- linear index system
- linear system of constant coefficients
- linear time invariant system
- linear time-varying system
- linear-encoder-equipped system
- LMFC system
- load/unload system
- loading robot system
- load-monitoring system
- local communications system
- logistics system
- look-up table system
- low-loss optical system
- low-volume lubricant delivery system
- lube system
- lubrication system with continuous delivery
- lubrication system with cyclic delivery
- lubrication system with performance control
- lubrication system without performance control
- lubrication system
- M system
- machine control system
- machine coordinate system
- machine health-monitoring system
- machine management system
- machine surveillance system
- machine tool capability-conditioning system
- machine tool system
- machine vision system
- machine/control system
- machine/tool/workpiece system
- machine-flexible system
- machine-zero reference system
- machining-cell system
- magnetic control system
- magnetic shaft suspension system
- main control system
- maintenance tracking system
- make-up system
- management control system
- management information system
- management system
- management-and-manufacturing system
- managerial reporting system
- man-computer system
- man-machine system
- man-plus-machine system
- manual data input system
- manual programming system
- manufacturing execution system
- manufacturing optimization system
- manufacturing software system
- manufacturing system
- many-degrees-of-freedom system
- many-variable system
- mass-elastic system
- master manufacturing control system
- master-slave control system
- material flow system
- material movement system
- material storage system
- materials-handling control system
- materials-handling system
- matrix array system
- matrix-type system
- MDI contouring control system
- MDI control system
- MDI NC system
- mean line system
- measurement/inspection system
- measuring coordinate system
- measuring system
- measuring/compensation system
- mechanical interface coordinate system
- memory NC system
- memory system
- menu drive system
- menu system
- menu-driven programming system
- metalforming production system with robots
- metalworking laser system
- metamorphic system
- metareasoning system
- metering system
- metrology system
- MIC system
- micro CAD/CAM programming system
- microadjustment system
- microchip-managed control system
- microdispensing system
- microintegrated system
- microload system
- micropackaged distributed system
- microprocessor based system
- microprocessor CNC system
- microprocessor system
- microprocessor-development system
- microstep control system
- microwave drill detection system
- milling CAM system
- milling system
- minicomputer-based numerical control system
- minicomputer-based system
- minicomputer-based test system
- miniload automated storage and retrieval system
- miniload system
- minimal constraint system
- minimum phase shift system
- mist-cooling system
- mixed forging-machining system
- mobility system
- model reference adaptive system
- moderately sized manufacturing system
- modular clamping system
- modular component tooling system
- modular fixture system
- modular holding system
- modular system
- modular tooling system
- modular work holding system
- monitoring system
- monorail material handling system
- motor position sensing system
- mounting system
- MPM system
- MRC system
- MRP system
- MS-DOS system
- multiaxis laser system
- multimachine system
- multimedia system
- multinetwork system
- multipallet system
- multiple computer system
- multiple laser technology system
- multiple pallet changer system
- multiple pallet handling system
- multiple parts feeding system
- multiple sensory system
- multiple spindle head handling-and-changing system
- multiple system of indexing
- multiple-gun spraying system
- multipoint lubrication system
- multipoint network control system
- multiprocessing system
- multiprocessor NC system
- multiprocessor system
- multiproduct manufacturing system
- multiprofile tool system
- multiprogramming system
- multirobot system
- multisensor system
- multiserver queueing system
- multistage system
- multitasking control system
- multiterminal system
- multiuser system
- multivendor information system
- multiwindowing software system
- Nagare system
- narrowly defined expert system
- national information system
- navigation system
- NC contouring system
- NC machine system
- NC part-programming system
- NC system
- NC tooling system
- NC/TP system
- nesting system
- network computer system
- network switching system
- network system
- noise diagnostic system
- noncircular copy-turning system
- noncompensated system
- noncontact laser marking system
- noncontact microwave system
- nonexpert system
- non-NC system
- numerical computer control system
- numerical contour control system
- numerical control system
- numerically controlled tool point system
- object-oriented system
- office system
- office-based programming system
- off-line adviser-type expert system
- off-line programming system
- off-line system
- off-the-shelf system
- oil mist system
- oil scavenge system
- oil system
- oil wash system
- oil-recirculating system
- oligarchical manufacturing system
- OLP system
- one man/one machine system
- one man-one operation-one job system
- one-machine flexible system
- one-piece tape spar-measuring system
- one-shot lubrication system
- on-line information system
- on-line process system
- on-line retrieval system
- on-line system
- on-line tool control system
- on-machine gaging system
- on-machine probing system
- on-off control system
- open architecture system
- open cooling system
- open system
- open-front system
- open-loop control system
- operating system
- operational system
- operator guidance system
- operator-controlled NC system
- optical detection system
- optical laser ranging system
- optical MAP system
- optical measurement/inspection system
- optical recognition system
- optical system for laser processing
- optical tracer backup system
- optical transmission system
- opti-feed system
- optimal-position control system
- order-driven system
- order-entry system
- order-picking system
- oscillating system
- oscillatory system
- out-feed system
- output collecting system
- overall system
- p.-t.-p. NC system
- package confinement system
- paging system
- pallet conveyor system
- pallet gripper system
- pallet ID system
- pallet storage system
- pallet storage/changer system
- pallet/platen transfer system
- pallet/robot flexible-machining system
- pallet-based materials handling system
- pallet-based system
- pallet-changer system
- pallet-coding system
- pallet-handling system
- palletized tool magazine system
- pallet-loading system
- pallet-moving system
- pallet-shuttle change system
- pallet-transfer system
- pallet-transport system
- paperless NC system
- parallel force system
- parallel lubrication system
- parametric CNC system
- part flow system
- part handling-and-storage system
- part program-editing system
- part queue system
- part-conveying system
- partial laser system
- part-programming system
- part-retrieval system
- passively mode-locked laser system
- path control system of a machine
- path control system
- pattern recognition system
- pattern tracing system
- pattern-directed system
- PC system
- PC-based CAD system
- PC-based vision system
- pendant-mounted CNC system
- perceptual system
- permanent electro system
- personal computer-based robotic vision system
- phase switching control system
- photogrammetric vision system
- photooptic tracing system
- photooptical tracing system
- piece rate system
- plane system of forces
- planner-oriented system
- plant-integration system
- platen system
- platform-independent CAM system
- playback system
- plugboard control system
- plugboard programming system
- point-to-point system
- popular laser system
- position control system
- positioning control system
- postprocess inspection system
- postprocess system
- postprocess-feedback gaging system
- potentiometer-setting system
- power generating system
- power system
- powered clamping system
- powered track system
- powerful robot system
- precision positioning system
- predictive machinability system
- predictive maintenance system
- pre-emptive system
- pregaging system
- preload system
- preset tooling system
- presetting system
- prismatic flexible manufacturing system
- prismatic machining system
- probe communication system
- problem-oriented information system
- process planning system
- process-flexible system
- production control system
- production expert system
- production-monitoring system
- productions system
- product-testing system
- programmable automation system
- programmable control system
- programmable logic control system
- programmable power monitoring system
- programmed sequence control system
- programming system
- proof-of-concept system
- proprietary NC system
- propulsion system
- propulsive system
- protection system
- prototype system
- prototyping system
- pull system of production
- pull system
- punch tape NC system
- purpose-made materials feeding system
- push system
- qualitative system
- quality control system
- quality system
- quantity produced systems
- question-and-answer system
- question-answering system
- queuing system
- quick-change system
- quick-change workpiece-fixturing system
- quick-change-cutter system
- rack system
- rack-picking system
- rail-borne robotic handling system
- rail-guided transport system
- random mission system
- random mix system
- random order system
- ranging system
- readout system
- ready-to-go system
- real-time vision system
- recirculation system
- rectangular coordinate system
- rectangular triordinate system
- reeving system
- reference retrieval system
- reference system
- reflecting high-power beam optical system
- register system
- registration system
- relay ladder logic system
- reporting system
- reprographic system
- resolver system
- restraint system
- RETIC system
- retrieval system
- retrofit system
- return spring system
- RGV pallet delivery system
- rigid track workpiece transport system
- rigid transfer system
- robot control system
- robot gantry storage-and-retrieval system
- robot learning system
- robot parts-handling system
- robot system
- robot teaching system
- robot tool changing system
- robot-based turning system
- robotic system
- robotic vision system
- robotics CAD system
- robotized metalforming system
- robot-like inspection system
- robot-measuring system
- rod memory system
- roller system
- roll-generating system
- rotary transfer system
- rotary-type tool-mounting system
- rotational system
- routing-flexible system
- rule-based expert system
- running fail-safe system
- running system
- run-time system
- safety actuation system
- safety system
- scale back system
- seam tracking laser processing system
- seam-tracking system
- security system
- selective assembly system
- selective control system
- self-adapting system
- self-contained starting system
- self-contained system
- self-monitoring measuring system
- self-optimizing adaptive control system
- self-programming NC system
- self-teaching system
- self-test system
- sensing system
- sensor system
- sensor-based system
- sensory control system
- sensory feedback system
- sensory interactive system
- sensory-processing system
- sentence recognition system
- sequencing control system
- sequential control system
- series lubrication system
- service system
- servo control system
- servo drive system
- servo positioning system
- servo transducer system
- servo-controlled blade-feed-pressure system
- setting system
- SFP system
- shaft system
- shared tools system
- shopfloor communication message system
- shopfloor part-programming system
- shopfloor programming system
- shopfloor-programming control system
- short-closed oil system
- shuttle car system
- shuttle system
- shuttle-type container system
- side-loading pallet system
- sign system
- signature-analysis system
- silhouetting system
- single system
- single-board computer system
- single-cell system
- single-line lubrication system
- single-point lubrication system
- single-stage system
- single-tube system
- single-unit machining system
- single-variable system
- sinking system
- six-station pallet system
- size-monitoring system
- skidless system
- skid-type system
- small knowledge system
- small scale system
- small-batch manufacturing system
- sociotechnical system
- software-based system
- software-operating system
- solid model CAD system
- solid modeling system
- solids-based system
- sonic digitizing system
- space-monitoring sensor system
- special-purpose CNC system
- special-purpose material handling system
- speech-understanding system
- spindle airblast system
- spindle-probe system
- splash lubrication system
- split-type of tooling system
- spray lubrication system
- sprocket-chain system
- stabilization system
- stabilizing system
- stacking system
- stand-alone system
- standard control system
- standard unit system
- starting system
- statistical process control system
- steady-state system
- stepping motor drive system
- stocker system
- stocking system
- stop-bolt locking system
- storage system
- storage-and-retrieval system
- storage-retrieval system
- straight cut control system
- straight-line control system
- stress calculations infinite element system
- structurally stable system
- structurally unstable system
- stub-tooth system
- subloop system
- supervision system
- supervisory computer control system
- supervisory control system
- surface-measurement system
- surveillance system
- suspension system
- swarf conveyance system
- swarf-management system
- swarf-removal system
- switching system
- synthetic vision system
- system of dimensioning
- system of forces
- system of limits and fits
- system of quantities
- system of the machine retaining devices
- system of units
- tactile sensing system
- tailored NC system
- tailor-made system
- tape-oriented system
- target system
- teach system
- teachable-logic control system
- teaching system
- teach-mode programming system
- technology-intensive system
- telecommunication system
- telemetry gage system
- telemetry system
- teleoperated system
- telepresence system
- telerobotic system
- ten-station pallet system
- term system
- test system
- testing system
- text organizing system
- thermal control system
- thermal enclosure system
- thermal propulsion system
- thread measurement system
- thread measuring system
- three-dimensional CAM system
- three-dimensional coordinate system
- three-wire thread measuring system
- through feed system
- through-the-tool system
- time control system
- time cycle system
- time-shared system
- time-sharing NC programming system
- time-sharing system
- tool animation system
- tool breakage prevention system
- tool change system
- tool condition monitoring system
- tool coolant system
- tool deflection calibration system
- tool identification tag system
- tool life control system
- tool life management system
- tool magazine exchanger system
- tool management system
- tool position-compensating system
- tool shank cleaning system
- tool storage and transport system
- tool storage/management system
- tool-associated system
- tool-clamp system
- tool-holder-work system
- tool-ID system
- tooling AGV system
- tooling system
- tool-in-hand system
- tool-in-use system
- tool-machine system
- tool-monitoring system
- tool-mounting system
- tool-presetting system
- tool-probing system
- tool-to-turret connection system
- tool-transfer system
- torque-monitoring system
- total system
- total-loss lubrication system
- touch-probe digitizer system
- touch-probe digitizing system
- touch-probe system
- towline cart system
- towline conveyor system
- towline handling system
- towline material handling system
- towline transfer system
- tracer control system
- tracing system
- track system
- tracking/scheduling system
- track-monitoring system
- transfer system
- translating system
- transmission system
- transporter system
- traverse-metering system
- tray-type transfer system
- triangulation system
- tribomechanical system
- tri-level stocker system
- triordinate system
- trolley control system
- trouble-free control system
- T-slot system
- tuned system
- turning system
- turning-and-chucking system
- turnkey computer control system
- turnkey system
- turret probing system
- turret tooling system
- two-line lubrication system
- two-machine system
- two-pallet exchange system
- two-shift system
- two-tier inspection system
- unattended machining system
- unattended production system
- uncertain system
- unified system
- unit bore system
- unit system
- unit-build system
- unit-load automated storage and retrieval system
- unit-load system
- UNIX-based 32-bit computer system
- unmonitored control system
- unstable system
- user identification system
- user's CAD system
- V coding system
- vacuum system
- variable pallet system
- variable-coefficient system
- variable-gain ACC system
- variable-mission system
- versatile data acquisition system
- vertical carousel system
- vertical rotating warehouse system
- vibration system
- vibratory system
- video measuring system
- video-based measurement system
- viewing system
- virtual design system
- virtual storage system
- vision guidance system
- vision metrology system
- vision optical system
- vision sensor system
- vision system
- vision tool-presetting system
- vision-based inspection system
- vision-based system
- visual computing system
- visual inspection system
- VME-based system
- voice data entry system
- voice system
- voice-input system
- volume-flexible system
- volume-metric lubrication system
- voluntary standards system
- warehousing system
- warning protection system
- warning system
- wash system
- waste material treatment system
- watchdog system
- waterjet system
- way-lubrication system
- wedge-locked tool clamping system
- wheelhead-measuring system
- windowing system
- wire-cut system
- wire-frame CAD system
- wire-guided transport system
- wire-guided trolley routing system
- word recognition system
- work infeed system
- work transfer system
- work transport system
- workhandling system
- work-holding system
- workpiece-cleaning system
- workstation-oriented CNC system
- zero error position systemEnglish-Russian dictionary of mechanical engineering and automation > system
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6 management
1) управление; руководство2) дирекция, администрация3) организация ( производства)•- advanced data management
- automated data management
- automated information management
- business management
- cellular management
- chemical management
- chip-based tool management
- communications management
- component management
- component program management
- configuration management
- coolant management
- corporate management
- cost management
- data management
- design management
- distribution management
- document management
- energy management
- expert maintenance management
- expert tool management
- facility management
- factory management
- fault management
- file management
- financial and logistics management
- flow-through chip management
- hypothesis management
- image management
- industrial truck management
- information management
- job management
- knowledge management
- library management
- line management
- machine management
- maintenance management
- management of bandwidth
- manufacturing information management
- materials management
- microchip-based tool management
- multiple simultaneous issue management
- NC program management
- network bandwidth management
- network data management
- network data storage management
- network management
- object-orientated data management
- operations management
- paperwork management
- parts store management
- performance management
- plant management
- product data management
- production management
- project management of systems
- project management
- quality management
- quality-data management
- risk management
- scientific management of labor
- sensor management
- shipping management
- shop order management
- sister tool management
- SPC data management
- store management
- supervision management
- system information management
- tool life management
- tool location management
- tool management
- tooling management
- tooling store management
- top management
- total quality management
- traffic management
- vehicle traffic management
- version management
- virtual storage management
- works managementEnglish-Russian dictionary of mechanical engineering and automation > management
-
7 switch
- переключатель (в программе)
- переключатель
- коммутационный аппарат
- коммутатор (сети и системы связи)
- коммутатор (в вычислительной сети)
- коммутатор
- выключатель
выключатель
Коммутационный электрический аппарат, имеющий два коммутационных положения или состояния и предназначенный для включении и отключения тока.
Примечание. Под выключателем обычно понимают контактный аппарат без самовозврата. В остальных случаях термин должен быть дополнен поясняющими словами, например, «выключатель с самовозвратом», «выключатель тиристорный» и т. д.
[ ГОСТ 17703-72]
выключатель
Контактный коммутационный аппарат, способный включать, проводить и отключать токи при нормальных условиях в цепи, а также включать, проводить в течение нормированного времени и отключать токи при нормированных анормальных условиях в цепи, таких как короткое замыкание.
[ ГОСТ Р 52565-2006]
выключатель
Устройство для включения и отключения тока и напряжения в одной или более электрических цепях.
Примечание. При отсутствии других указаний под понятиями «напряжение» и «ток» подразумевают их среднеквадратичные значения.
[ ГОСТ Р 51324.1-2005]
выключатель
Прибор для включения и отключения электрического оборудования и устройств
[Терминологический словарь по строительству на 12 языках (ВНИИИС Госстроя СССР)]EN
(on-off) switch
switch for alternatively closing and opening one or more electric circuits
Source: 581-10-01 MOD
[IEV number 151-12-23]FR
interrupteur, m
commutateur destiné à fermer et ouvrir alternativement un ou plusieurs circuits électriques
Source: 581-10-01 MOD
[IEV number 151-12-23]При отключении воздушных и кабельных линий тупикового питания первым рекомендуется отключать выключатель со стороны нагрузки, вторым — со стороны питания.
[РД 153-34.0-20.505-2001]
... так чтобы она с меньшей выдержкой времени отключала выключатели с той стороны, на которой защита отсутствует;
[ПУЭ]
б) блокировка между выключателями нагрузки или разъединителем и заземляющим разъединителем, не позволяющая включать выключатель нагрузки или разъединитель при включенном заземляющем разъединителе и включать заземляющий разъединитель при включенном выключателе нагрузки или разъединителе;
[ ГОСТ 12.2.007.4-75]
Испытания изоляции выключателей и разъединителей должны быть проведены при включенном и отключенном положениях.
[ ГОСТ 1516_1-76]
Выключатели предназначены для оперативной и аварийной коммутации в энергосистемах, т.е. выполнения операций включения и отключения отдельных цепей при ручном или автоматическом управлении. Во включенном состоянии выключатели должны беспрепятственно пропускать токи нагрузки. Характер режима работы этих аппаратов несколько необычен: нормальным для них считается как включенное состояние, когда они обтекаются током нагрузки, так и отключенное, при котором они обеспечивают необходимую электрическую изоляцию между разомкнутыми участками цепи. Коммутация цепи, осуществляемая при переключении выключателя из одного положения в другое, производится нерегулярно, время от времени, а выполнение им специфических требований по отключению возникающего в цепи короткого замыкания чрезвычайно редко. Выключатели должны надежно выполнять свои функции в течение срока службы, находясь в любом из указанных состояний, и одновременно быть всегда готовыми к мгновенному эффективному выполнению любых коммутационных операций, часто после длительного пребывания в неподвижном состоянии. Отсюда следует, что они должны иметь очень высокий коэффициент готовности: при малой продолжительности процессов коммутации (несколько минут в год) должна быть обеспечена постоянная готовность к осуществлению коммутаций.
[ http://relay-protection.ru/content/view/46/8/]Тематики
- выключатель, переключатель
- релейная защита
Действия
Сопутствующие термины
EN
DE
FR
коммутатор
-Коммутатор (англ. Switch) -
в переводе с англ. означает переключатель. Это многопортовое устройство, обеспечивающее высокоскоростную коммутацию пакетов между портами. Встроенное в него программное обеспечение способно самостоятельно анализировать содержимое пересылаемых по сети блоков данных и обеспечивать прямую передачу информации между любыми двумя портами, независимо от всех остальных портов устройства.
Одновременно с разработкой новых, более высокоскоростных технологий передачи данных перед производителями компьютерного оборудования по-прежнему стояла задача найти какие-либо способы увеличения производительности локальных сетей Ethernet старого образца, минимизировав при этом как финансовые затраты на приобретение новых устройств, так и технологические затраты на модернизацию уже имеющейся сети. Поскольку класс 10Base2 был единодушно признан всеми разработчиками "вымирающим", эксперты сосредоточились на технологии 10BaseT. И подходящее решение вскоре было найдено.
Как известно, стандарт Ethernet подразумевает использование алгоритма широковещательной передачи данных. Это означает, что в заголовке любого пересылаемого по сети блока данных присутствует информация о конечном получателе этого блока, и программное обеспечение каждого компьютера локальной сети, принимая такой пакет, всякий раз анализирует его содержимое, пытаясь "выяснить", стоит ли передать данные протоколам более высокого уровня (если принятый блок информации предназначен именно этому компьютеру) или ретранслировать его обратно в сеть (если блок данных направляется на другую машину). Уже одно это заметно замедляет работу всей локальной сети. А если принять во внимание тот факт, что устройства, используемые в качестве центрального модуля локальных сетей с топологией "звезда" - концентраторы (хабы) - обеспечивают не параллельную, а последовательную передачу данных, то мы обнаруживаем еще одно "слабое звено", которое не только снижает скорость всей системы, но и нередко становится причиной "заторов" в случаях, когда, например, на один и тот же узел одновременно отсылается несколько потоков данных от разных компьютеров-отправителей. Если возложить задачу первоначальной сортировки пакетов на хаб, то эту проблему можно было бы частично решить. Это было проделано, и в результате появилось устройство, названное switch, или коммутатор.
Switch полностью заменяет в структуре локальной сети 10BaseT хаб, да и выглядят эти два устройства практически одинаково, однако принцип работы коммутатора имеет целый ряд существенных различий. Основное различие заключается в том, что встроенное в switch программное обеспечение способно самостоятельно анализировать содержимое пересылаемых по сети блоков данных и обеспечивать прямую передачу информации между любыми двумя из своих портов независимо от всех остальных портов устройства.
Эту ситуацию можно проиллюстрировать на простом примере. Предположим, у нас имеется коммутатор, оснащенный 16 портами. К порту 1 подключен компьютер А, который передает некую последовательность данных компьютеру С, присоединенному к 16-му порту. В отличие от хаба, получив этот пакет данных, коммутатор не ретранслирует его по всем имеющимся в его распоряжении портам в надежде, что рано или поздно он достигнет адресата, а проанализировав содержащуюся в пакете информацию, передает его непосредственно на 16-й порт. В то же самое время на порт 9 коммутатора приходит блок данных из другого сегмента локальной сети 10BaseT, подключенного к устройству через собственный хаб. Поскольку этот блок адресован компьютеру В, он сразу отправляется на порт 3, к которому тот присоединен.
Следует понимать, что эти две операции коммутатор выполняет одновременно и независимо друг от друга. Очевидно, что при наличии 16 портов мы можем одновременно направлять через коммутатор 8 пакетов данных, поскольку порты задействуются парами. Таким образом, суммарная пропускная способность данного устройства составит 8 х 10 = 80 Мбит/с, что существенно ускорит работу сети, в то время как на каждом отдельном подключении сохранится стандартное значение 10 Мбит/с. Другими словами, при использовании коммутатора мы уменьшаем время прохождения пакетов через сетевую систему, не увеличивая фактическую скорость соединения.
Итак, в отличие от концентраторов, осуществляющих широковещательную рассылку всех пакетов, принимаемых по любому из портов, коммутаторы передают пакеты только целевому устройству (адресату). В результате уменьшается трафик и повышается общая пропускная способность, а эти два фактора являются критическими с учетом растущих требований к полосе пропускания сети со стороны современных приложений.
Коммутация популярна как простой, недорогой метод повышения доступной полосы пропускания сети. Современные коммутаторы нередко поддерживают такие средства, как назначение приоритетов трафика (что особенно важно при передаче в сети речи или видео), функции управления сетью и управление многоадресной рассылкой.
Приведем некоторые общие характеристики коммутаторов:защита с помощью брандмауэров;- кэширование Web-данных, поддержка высокоскоростных гигабитных соединений;
- расширенные возможности сетевой телефонии;
- защита настольных компьютеров и сетевое управление;
- фильтрация многоадресного трафика для более эффективного использования полосы пропускания при работе с видеотрафиком;
- адаптивная буферизация портов с распределением памяти между буферами портов в реальном времени, обеспечивающая автоматическую оптимизацию производительности в зависимости от сетевого трафика;
- управление потоками на основе стандартов для обеспечения максимальной производительности и минимизации потерь пакетов при большой загрузке сети;
- поддержка объединения каналов для создания единого высокоскоростного канала связи с другим коммутатором или магистральной сетью;
- автоматическое определение полу/полнодуплексного режима на всех портах, обеспечивающее максимальную производительность без ручной настройки;
- порты 10/100 Мбит/с с автоматическим определением скорости передачи для каждого порта автоматически настраиваются на скорость подключенного устройства;
- встроенная система контроля и управления позволяет уполномоченным администраторам осуществлять поиск и устранение неисправностей и настройку стека из любого места;
- поддержка отказоустойчивых соединений, а также дополнительных резервных блоков питания.
[ http://sharovt.narod.ru/l10.htm]Тематики
EN
коммутатор (сети и системы связи)
Активный сетевой компонент, который соединяет две или несколько подсетей, которые, в свою очередь, могут состоять из сегментов, соединенных повторителями.
Примечание. Коммутаторы устанавливают границы для так называемых областей коллизий. Между сетями, разделенными коммутаторами, коллизии невозможны; пакеты, направляемые на конкретную подсеть, на другие подсети не попадают. Для этого коммутаторы должны знать адреса оборудования подключенных станций. Коллизий в сети можно полностью избежать в том случае, если к порту коммутатора подключен только один активный сетевой компонент.
[ ГОСТ Р 54325-2011 (IEC/TS 61850-2:2003)]EN
switch
active network component. Switches connect two or more sub networks, which themselves could be built of several segments connected by repeaters. Switches establish the borders for so called collision domains. Collisions cannot take place between networks divided by switches, data packets destined to a specific sub network do not appear on the other sub networks. To achieve this, switches must have knowledge of the hardware addresses of the connected stations. In cases where only one active network component is connected to a switch port, collisions on the network can be avoided
[IEC 61850-2, ed. 1.0 (2003-08)]Тематики
EN
коммутационный аппарат
Аппарат, предназначенный для включения или отключения тока в одной или нескольких электрических цепях.
МЭК 60050(441-14-01).
Примечание. Коммутационный аппарат может совершать одну из этих операций или обе
[ ГОСТ Р 50030. 1-2000 ( МЭК 60947-1-99)]
коммутационный аппарат
Электрический аппарат, предназначенный для коммутации электрической цепи и снятия напряжения с части электроустановки (выключатель, выключатель нагрузки, отделитель, разъединитель, автомат, рубильник, пакетный выключатель, предохранитель и т.п.).
[ПОТ Р М-016-2001]
[РД 153-34.0-03.150-00]EN
switching device
a device designed to make or break the current in one or more electric circuits
[IEV number 441-14-01]FR
appareil de connexion
appareil destiné à établir ou à interrompre le courant dans un ou plusieurs circuits électriques
[IEV number 441-14-01]Тематики
- аппарат, изделие, устройство...
EN
DE
FR
переключатель
Контактный коммутационный аппарат, предназначенный для переключения электрических цепей.
[ ГОСТ 17703-72]
переключатель
коммутатор
-
[IEV number 151-12-22]EN
switch
device for changing the electric connections among its terminals
[IEV number 151-12-22]FR
commutateur (1), m
dispositif destiné à modifier les connexions électriques entre ses bornes
[IEV number 151-12-22]Тематики
- аппарат, изделие, устройство...
- выключатель, переключатель
Классификация
>>>EN
- changer
- changerswitch key
- chopper switch
- circuit changer
- interchanging switchswitcher
- switch
- switching key
- switching unit
DE
FR
переключатель (в программе)
Управляемый флажком выбор одного перехода из группы возможных переходов в программе.
[ ГОСТ 19781-90]Тематики
- обеспеч. систем обраб. информ. программное
EN
3.44 коммутатор (switch): Устройство, обеспечивающее возможность соединения сетевых устройств посредством внутренних механизмов коммутации.
Примечание - В отличие от других соединительных устройств локальной сети (например, концентраторов) используемая в коммутаторах технология устанавливает соединения на основе «точка-точка». Это обеспечивает возможность того, чтобы сетевой трафик был виден только адресованным сетевым устройствам, и делает возможным одновременное существование нескольких соединений. Технология коммутации обычно может быть реализована на втором или третьем уровне эталонной модели взаимодействия открытых систем.
Источник: ГОСТ Р ИСО/МЭК 18028-1-2008: Информационная технология. Методы и средства обеспечения безопасности. Сетевая безопасность информационных технологий. Часть 1. Менеджмент сетевой безопасности оригинал документа
3.39 коммутатор (switch): Устройство, обеспечивающее соединение сетевых устройств посредством внутренних механизмов коммутации, с технологией коммутации, обычно реализованной на втором или третьем уровне эталонной модели взаимодействия открытых систем.
Примечание - Коммутаторы отличаются от других соединительных устройств локальной сети (например, концентраторов), так как используемая в коммутаторах технология устанавливает соединения на основе «точка - точка».
Источник: ГОСТ Р ИСО/МЭК 27033-1-2011: Информационная технология. Методы и средства обеспечения безопасности. Безопасность сетей. Часть 1. Обзор и концепции оригинал документа
3.1 выключатель (switch): Устройство для включения и отключения тока и напряжения1) в одной или более электрических цепях.
1) При отсутствии других указаний под понятиями «напряжение» и «ток» подразумевают их среднеквадратичные значения.
Источник: ГОСТ Р 51324.1-2005: Выключатели для бытовых и аналогичных стационарных электрических установок. Часть 1. Общие требования и методы испытаний оригинал документа
72. Переключатель (в программе)
Switch
Управляемый флажком выбор одного перехода из группы возможных переходов в программе
Источник: ГОСТ 19781-90: Обеспечение систем обработки информации программное. Термины и определения оригинал документа
Англо-русский словарь нормативно-технической терминологии > switch
-
8 Grammar
I think that the failure to offer a precise account of the notion "grammar" is not just a superficial defect in linguistic theory that can be remedied by adding one more definition. It seems to me that until this notion is clarified, no part of linguistic theory can achieve anything like a satisfactory development.... I have been discussing a grammar of a particular language here as analogous to a particular scientific theory, dealing with its subject matter (the set of sentences of this language) much as embryology or physics deals with its subject matter. (Chomsky, 1964, p. 213)Obviously, every speaker of a language has mastered and internalized a generative grammar that expresses his knowledge of his language. This is not to say that he is aware of the rules of grammar or even that he can become aware of them, or that his statements about his intuitive knowledge of his language are necessarily accurate. (Chomsky, 1965, p. 8)Much effort has been devoted to showing that the class of possible transformations can be substantially reduced without loss of descriptive power through the discovery of quite general conditions that all such rules and the representations they operate on and form must meet.... [The] transformational rules, at least for a substantial core grammar, can be reduced to the single rule, "Move alpha" (that is, "move any category anywhere"). (Mehler, Walker & Garrett, 1982, p. 21)4) The Relationship of Transformational Grammar to Semantics and to Human Performancehe implications of assuming a semantic memory for what we might call "generative psycholinguistics" are: that dichotomous judgments of semantic well-formedness versus anomaly are not essential or inherent to language performance; that the transformational component of a grammar is the part most relevant to performance models; that a generative grammar's role should be viewed as restricted to language production, whereas sentence understanding should be treated as a problem of extracting a cognitive representation of a text's message; that until some theoretical notion of cognitive representation is incorporated into linguistic conceptions, they are unlikely to provide either powerful language-processing programs or psychologically relevant theories.Although these implications conflict with the way others have viewed the relationship of transformational grammars to semantics and to human performance, they do not eliminate the importance of such grammars to psychologists, an importance stressed in, and indeed largely created by, the work of Chomsky. It is precisely because of a growing interdependence between such linguistic theory and psychological performance models that their relationship needs to be clarified. (Quillian, 1968, p. 260)here are some terminological distinctions that are crucial to explain, or else confusions can easily arise. In the formal study of grammar, a language is defined as a set of sentences, possibly infinite, where each sentence is a string of symbols or words. One can think of each sentence as having several representations linked together: one for its sound pattern, one for its meaning, one for the string of words constituting it, possibly others for other data structures such as the "surface structure" and "deep structure" that are held to mediate the mapping between sound and meaning. Because no finite system can store an infinite number of sentences, and because humans in particular are clearly not pullstring dolls that emit sentences from a finite stored list, one must explain human language abilities by imputing to them a grammar, which in the technical sense is a finite rule system, or programme, or circuit design, capable of generating and recognizing the sentences of a particular language. This "mental grammar" or "psychogrammar" is the neural system that allows us to speak and understand the possible word sequences of our native tongue. A grammar for a specific language is obviously acquired by a human during childhood, but there must be neural circuitry that actually carries out the acquisition process in the child, and this circuitry may be called the language faculty or language acquisition device. An important part of the language faculty is universal grammar, an implementation of a set of principles or constraints that govern the possible form of any human grammar. (Pinker, 1996, p. 263)A grammar of language L is essentially a theory of L. Any scientific theory is based on a finite number of observations, and it seeks to relate the observed phenomena and to predict new phenomena by constructing general laws in terms of hypothetical constructs.... Similarly a grammar of English is based on a finite corpus of utterances (observations), and it will contain certain grammatical rules (laws) stated in terms of the particular phonemes, phrases, etc., of English (hypothetical constructs). These rules express structural relations among the sentences of the corpus and the infinite number of sentences generated by the grammar beyond the corpus (predictions). (Chomsky, 1957, p. 49)Historical dictionary of quotations in cognitive science > Grammar
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9 CK
1) Спорт: Coastal Kayak, Crimson Knight2) Военный термин: Canadian Killers, Compartment Key, Containerized Kitchen, Си-Кей (хлорциан)3) Техника: crystal kits4) Шутливое выражение: Cool Knight5) Юридический термин: Cop Killer6) Грубое выражение: Cunt Kicker7) Политика: Cocos (Keeling Islands)8) Сокращение: Cape Kennedy, Cook Islands, Cyanogen Chloride (Chemical warfare blood agent), creatine kinase (креатининфосфокиназа)9) Физиология: Conductive Keratoplasty10) Нефть: choke11) Иммунология: Chee Kang, Clinical Knowledge, Creatine Kinase12) Транспорт: Car Kit13) Фирменный знак: Coaster Kingdom, Component Research, Country Kitchen14) Деловая лексика: Career Killer15) Программирование: Character Kill16) Медицинская техника: color kinesis17) Химическое оружие: Cyanogen chloride18) Нефть и газ: compensation gain19) Имена и фамилии: California Kris, Calvin Klein, Clark Kent, Cyrus Kurtz20) Должность: Cat Killer, Construction King21) НАСА: Cylindrical Keplerian -
10 Ck
1) Спорт: Coastal Kayak, Crimson Knight2) Военный термин: Canadian Killers, Compartment Key, Containerized Kitchen, Си-Кей (хлорциан)3) Техника: crystal kits4) Шутливое выражение: Cool Knight5) Юридический термин: Cop Killer6) Грубое выражение: Cunt Kicker7) Политика: Cocos (Keeling Islands)8) Сокращение: Cape Kennedy, Cook Islands, Cyanogen Chloride (Chemical warfare blood agent), creatine kinase (креатининфосфокиназа)9) Физиология: Conductive Keratoplasty10) Нефть: choke11) Иммунология: Chee Kang, Clinical Knowledge, Creatine Kinase12) Транспорт: Car Kit13) Фирменный знак: Coaster Kingdom, Component Research, Country Kitchen14) Деловая лексика: Career Killer15) Программирование: Character Kill16) Медицинская техника: color kinesis17) Химическое оружие: Cyanogen chloride18) Нефть и газ: compensation gain19) Имена и фамилии: California Kris, Calvin Klein, Clark Kent, Cyrus Kurtz20) Должность: Cat Killer, Construction King21) НАСА: Cylindrical Keplerian -
11 ck
1) Спорт: Coastal Kayak, Crimson Knight2) Военный термин: Canadian Killers, Compartment Key, Containerized Kitchen, Си-Кей (хлорциан)3) Техника: crystal kits4) Шутливое выражение: Cool Knight5) Юридический термин: Cop Killer6) Грубое выражение: Cunt Kicker7) Политика: Cocos (Keeling Islands)8) Сокращение: Cape Kennedy, Cook Islands, Cyanogen Chloride (Chemical warfare blood agent), creatine kinase (креатининфосфокиназа)9) Физиология: Conductive Keratoplasty10) Нефть: choke11) Иммунология: Chee Kang, Clinical Knowledge, Creatine Kinase12) Транспорт: Car Kit13) Фирменный знак: Coaster Kingdom, Component Research, Country Kitchen14) Деловая лексика: Career Killer15) Программирование: Character Kill16) Медицинская техника: color kinesis17) Химическое оружие: Cyanogen chloride18) Нефть и газ: compensation gain19) Имена и фамилии: California Kris, Calvin Klein, Clark Kent, Cyrus Kurtz20) Должность: Cat Killer, Construction King21) НАСА: Cylindrical Keplerian -
12 engineering
1) проектирование; конструирование2) техника•- automatic control engineering
- backward engineering
- communication engineering - computer-aided control engineering
- computer-aided engineering
- computer-assisted software engineering
- concurrent engineering
- human engineering
- information engineering
- knowledge engineering
- management engineering
- reliability engineering
- requirements engineering
- reverse engineering
- silicon engineering
- social engineering
- software engineering
- software performance engineering
- systems engineeringEnglish-Russian dictionary of computer science and programming > engineering
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13 language
язык || языковой- action description language
- actual machine language
- agent programming language
- AI language
- Algol-like language
- algorithmical language
- algorithmic language
- application-oriented language
- applicative language
- artificial language
- assembler language
- assembly language
- assembly-output language
- assignment-free language
- behavioral language
- bidirectional language
- block-structured language
- Boolean-based language
- business definition language
- business-oriented language
- calculus-type language
- C-based language
- client-side language
- code language
- command language
- compiled language
- compiler language
- component definition language
- composite language
- computer language
- computer-dependent language
- computer-independent language
- computer-oriented language
- computer-programming language
- computer-sensitive language
- consensus language
- context-free language
- control language
- conversational language
- core language
- data definition language
- data description language
- data language
- data manipulation language
- data storage description language
- database language
- data-entry language
- data-flow language
- data-query language
- declarative language
- defining language
- descriptive language
- descriptor language
- design language
- device media control language
- direct execution language
- directly interpretable language
- Dyck language
- end-user language
- escape language
- evolutive language
- executive-control language
- executive language
- explicit language
- extensible language
- fabricated language
- finite state language
- flow language
- foreign language
- formalized language
- frame-based language
- freestanding language
- functional language
- generated language
- graphics language
- graph-oriented language
- hardware-description language
- hardware language
- higher-level language
- higher-order language
- host language
- human language
- human-oriented language
- human-readable language
- indexed language
- information retrieval language
- informational language
- information language
- inherently ambiguous language
- input language
- input/output language
- instruction language
- integrated language
- interactive language
- interim language
- intermediate language
- internal language
- interpreted language
- job control language
- job-oriented language
- knowledge representation language
- language pair
- letter-equivalent languages
- linear language
- linear-programming language
- list-processing language
- logic-type language
- low-level language
- machine language
- machine-dependent language
- machine-independent language
- machine-oriented language
- macroassembly language
- macro language
- macroinstruction language
- macroprogramming language
- man-to-computer language
- mathematical formular language
- memory management language
- mnemonic language
- modeling language
- native language
- natural language
- NC programming language
- nested language
- network-oriented language
- nonprocedural language
- numder language
- object language
- object modeling language
- object-oriented language
- one-dimensional language
- operator-oriented language
- original language
- page description language
- parallel language
- phrase structure language
- predicate language
- predicate logic-based language
- predicate logic language
- privacy language
- problem statement language
- problem-oriented language
- procedural language
- procedure-oriented language
- process control language
- production language
- program language
- programming language
- pseudo language
- pseudomachine language
- query language
- readable specification language
- reference language
- regular language
- relational language
- relational-type language
- representation language - requirements modeling language
- restricted language
- rule-based language
- ruly language
- schema language
- science-oriented language
- script language
- self-contained language
- semantic-formal language
- semiformal language
- sentential language
- serial language
- simulation language
- single-assignment language
- source language
- specialized language
- specification language
- stream-based language
- strict language
- structured programming language
- structured query language
- super language
- super-high-level language
- symbolic language
- symbolic programming language
- syntax language
- synthetic language
- system input language
- system language
- system-oriented language
- tabular language
- target language
- TC language
- time sharing language
- type-free language
- unified modeling language
- update language
- user language
- user-oriented language
- very-high-level languageEnglish-Russian dictionary of computer science and programming > language
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14 model
1) модель; модификация2) модель (образец; уменьшенная, упрощенная копия)3) модель (абстрактная схема; концепция)•- access control model
- adaptive model
- aggregated model
- algoristic-type model
- allocation model
- analytical model
- ANOVA model
- behavioral model
- birth-death model
- block-diagram model - capability maturity model
- cascade-based model
- causal model
- client/server model
- client-component model
- client-server model
- cognitive model
- computer model
- conceptual model
- controllable model
- correlative model
- cost estimation model
- crude model
- cybernetic model
- data model
- decision-theoretic model
- decision-tree model
- descriptive model
- design model
- desk model
- deterministic model - domain semantic model
- dynamic programming model
- E/R model
- econometric model
- elaborate model
- elemental-equivalent model
- entity set model
- entity-relationship model
- equilibrium model
- estimation model
- exhaustive fault model
- exogenous priority model
- external model
- fault model
- fault-effect model
- finite element model
- fixed cascade delay model
- fixed gate delay model
- flow-oriented model
- forecasting model
- formal model
- frame-based model
- functional model
- gaming model
- gate-based model
- gate-level model
- generalized model
- generic model
- geometrical model
- graph model
- hardware model
- hazard function model
- hazard model
- heuristic model
- hierarchical model
- iconographic model
- internal model
- layout model
- level-based model
- linear programming model
- linear word-level model
- many-server model
- mental model
- MILP model
- model of calculation
- model of knowledge
- Monte-Carlo model
- multiple model
- multivariate model
- network model
- object model
- object-centric model
- OSI reference model
- pandemonium model
- performance-based model
- phenomenological model
- pictorial model
- pilot model
- pin fault model
- predictive model
- preemptive model
- preliminary model
- preproduction model
- priority model
- probabilistic model
- problem model - quantitative model
- queueing model
- real world model
- relational model
- relative model
- reliability model
- role-playing model
- scaling model
- scheduling model
- security model
- semi-Markov model
- seven-layer model
- shaded model
- simplified model
- simulation model
- single-stuck fault model
- singular model
- software model
- solid model
- sophisticated model
- state-space model
- statistical model
- stochastic model
- stream of characters model
- structural model
- stuck-at model
- suspect/monitor model
- symbolic model
- table model
- task-network model
- timing model
- transformational model
- typewriter model
- vocal-tract model
- waiting line model
- waterfall model
- wire-frame model
- word-level model
- world modelEnglish-Russian dictionary of computer science and programming > model
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15 Article 15
1. The Constitution of the Russian Federation shall have the supreme juridical force, direct action and shall be used on the whole territory of the Russian Federation. Laws and other legal acts adopted in the Russian Federation shall not contradict the Constitution of the Russian Federation.2. The bodies of state authority, the bodies of local self-government, officials, private citizens and their associations shall be obliged to observe the Constitution of the Russian Federation and laws. 3. Laws shall be officially published. Unpublished laws shall not be used. Any normative legal acts concerning human rights, freedoms and duties of man and citizen may not be used, if they are not officially published for general knowledge. 4. The universally-recognized norms of international law and international treaties and agreements of the Russian Federation shall be a component part of its legal system. If an international treaty or agreement of the Russian Federation fixes other rules than those envisaged by law, the rules of the international agreement shall be applied. __________ <На русском языке см. [ref dict="The Constitution of Russia (Russian)"]Статья 15[/ref]> <На немецком языке см. [ref dict="The Constitution of Russia (German)"]Artikel 15[/ref]> <На французском языке см. [ref dict="The Constitution of Russia (French)"]Article 15[/ref]>The Constitution of Russia. English-Russian dictionary > Article 15
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16 logical\ climax
a three-step climax (the most widely spread model), in which intensification of logical importance, of emotion or quantity (size, dimensions) is gradually rising step by step (V.A.K.)••is based on the relative importance of the component parts looked at from the point of view of the concepts embodied in them (I.R.G.)Better to borrow, better to beg, better to die! (Ch.Dickens)
Like a well, like a vault, like a tomb, the prison had no knowledge of the brightness outside. (Ch.Dickens)
For that one instant there was no one else in the room, in the house, in the world, besides themselves. (M.Wilson)
English-Russian dictionary of stylistics (terminology and examples) > logical\ climax
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17 base
1 noun(a) (bottom → gen) partie f inférieure, base f; (→ of tree, column) pied m; (→ of bowl, glass) fond m; (→ of triangle) base f;∎ the bud grows at the base of the branch le bourgeon pousse à la base de la branche;∎ the base came away from the rest la base ou la partie inférieure s'est détachée du reste(b) (support, stand → of statue, pillar) socle m;∎ she used the box as a base for her sculpture elle s'est servie de la boîte comme socle pour sa sculpture(c) (of food, paint) base f;∎ the stock forms the base of your sauce le fond constitue la base de votre sauce∎ an industrial base une zone industrielle∎ the explorers returned to base les explorateurs sont retournés au camp de base;∎ the visitors made central London their base les visiteurs ont pris le centre de Londres comme point de départ;∎ Glasgow is a good base from which to explore the Highlands Glasgow est un bon point d'attache pour rayonner dans les Highlands;∎ Commerce the company's base le siège de la société∎ American familiar figurative he's way off base il est complètement à côté de la plaque;∎ first base (in baseball) première base f;∎ figurative to get to first base réussir la première étape;∎ we didn't even get to first base on n'a pas fait le moindre progrès;∎ I just thought I'd touch base je voulais juste garder le contact(a) (found → opinion, project) baser, fonder;∎ the project is based on cooperation from all regions le projet est fondé sur la coopération de toutes les régions;∎ the film is based on a true story/on a short story by Herman Melville le film est tiré d'une histoire vraie/d'une nouvelle de Herman Melville∎ where are you based? où êtes-vous installé?;∎ the job is based in Tokyo le poste est basé à Tokyo(motive, thoughts, conduct) bas, indigne; (origins) bas; (ingratitude) flagrant; (coinage) faux (fausse)►► American Technology base burner = poêle où le charbon alimente le feu automatiquement;Military base camp camp m de base;base coat (of paint) première couche f;Linguistics base component composant m de base;Finance base date date f de base;base hit (in baseball) = coup permettant au batteur d'atteindre la première base;Sport base jumping = saut en chute libre à partir d'un pont, d'une falaise ou d'une montagne, avec parachute plié que l'on ouvre le plus tard possible; Finance &Banking base lending rate = taux de base du crédit bancaire;Commerce & Electricity base load charge f minimum;Metallurgy base metal métal m vil;Biology base pair paire f de bases;American base pay salaire m de base;Banking base rate taux m de base (bancaire) (utilisé par les banques pour déterminer leur taux de prêt);American base salary salaire m de base;Banking base year année f de référence -
18 management education
HRformal instruction in the principles and techniques of management, and in related subjects, leading to a qualification. Management education strives to develop management knowledge, understanding, and competence through classroom or distance-based methods. Management education is a main component of management development, and differs from management training in that the latter may exploit any one of a variety of formal or informal methods, tends to be focused on a specific skill, and does not result directly in a formal qualification. -
19 Bain, Alexander
[br]b. October 1810 Watten, Scotlandd. 2 January 1877 Kirkintilloch, Scotland[br]Scottish inventor and entrepreneur who laid the foundations of electrical horology and designed an electromagnetic means of transmitting images (facsimile).[br]Alexander Bain was born into a crofting family in a remote part of Scotland. He was apprenticed to a watchmaker in Wick and during that time he was strongly influenced by a lecture on "Heat, sound and electricity" that he heard in nearby Thurso. This lecture induced him to take up a position in Clerkenwell in London, working as a journeyman clockmaker, where he was able to further his knowledge of electricity by attending lectures at the Adelaide Gallery and the Polytechnic Institution. His thoughts naturally turned to the application of electricity to clockmaking, and despite a bitter dispute with Charles Wheatstone over priority he was granted the first British patent for an electric clock. This patent, taken out on 11 January 1841, described a mechanism for an electric clock, in which an oscillating component of the clock operated a mechanical switch that initiated an electromagnetic pulse to maintain the regular, periodic motion. This principle was used in his master clock, produced in 1845. On 12 December of the same year, he patented a means of using electricity to control the operation of steam railway engines via a steam-valve. His earliest patent was particularly far-sighted and anticipated most of the developments in electrical horology that occurred during the nineteenth century. He proposed the use of electricity not only to drive clocks but also to distribute time over a distance by correcting the hands of mechanical clocks, synchronizing pendulums and using slave dials (here he was anticipated by Steinheil). However, he was less successful in putting these ideas into practice, and his electric clocks proved to be unreliable. Early electric clocks had two weaknesses: the battery; and the switching mechanism that fed the current to the electromagnets. Bain's earth battery, patented in 1843, overcame the first defect by providing a reasonably constant current to drive his clocks, but unlike Hipp he failed to produce a reliable switch.The application of Bain's numerous patents for electric telegraphy was more successful, and he derived most of his income from these. They included a patent of 12 December 1843 for a form of fax machine, a chemical telegraph that could be used for the transmission of text and of images (facsimile). At the receiver, signals were passed through a moving band of paper impregnated with a solution of ammonium nitrate and potassium ferrocyanide. For text, Morse code signals were used, and because the system could respond to signals faster than those generated by hand, perforated paper tape was used to transmit the messages; in a trial between Paris and Lille, 282 words were transmitted in less than one minute. In 1865 the Abbé Caselli, a French engineer, introduced a commercial fax service between Paris and Lyons, based on Bain's device. Bain also used the idea of perforated tape to operate musical wind instruments automatically. Bain squandered a great deal of money on litigation, initially with Wheatstone and then with Morse in the USA. Although his inventions were acknowledged, Bain appears to have received no honours, but when towards the end of his life he fell upon hard times, influential persons in 1873 secured for him a Civil List Pension of £80 per annum and the Royal Society gave him £150.[br]Bibliography1841, British patent no. 8,783; 1843, British patent no. 9,745; 1845, British patent no.10,838; 1847, British patent no. 11,584; 1852, British patent no. 14,146 (all for electric clocks).1852, A Short History of the Electric Clocks with Explanation of Their Principles andMechanism and Instruction for Their Management and Regulation, London; reprinted 1973, introd. W.Hackmann, London: Turner \& Devereux (as the title implies, this pamphlet was probably intended for the purchasers of his clocks).Further ReadingThe best account of Bain's life and work is in papers by C.A.Aked in Antiquarian Horology: "Electricity, magnetism and clocks" (1971) 7: 398–415; "Alexander Bain, the father of electrical horology" (1974) 9:51–63; "An early electric turret clock" (1975) 7:428–42. These papers were reprinted together (1976) in A Conspectus of Electrical Timekeeping, Monograph No. 12, Antiquarian Horological Society: Tilehurst.J.Finlaison, 1834, An Account of Some Remarkable Applications of the Electric Fluid to the Useful Arts by Alexander Bain, London (a contemporary account between Wheatstone and Bain over the invention of the electric clock).J.Munro, 1891, Heroes of the Telegraph, Religious Tract Society.J.Malster \& M.J.Bowden, 1976, "Facsimile. A Review", Radio \&Electronic Engineer 46:55.D.J.Weaver, 1982, Electrical Clocks and Watches, Newnes.T.Hunkin, 1993, "Just give me the fax", New Scientist (13 February):33–7 (provides details of Bain's and later fax devices).See also: Bakewell, Frederick C.DV / KF -
20 Darby, Abraham
SUBJECT AREA: Metallurgy[br]b. 1678 near Dudley, Worcestershire, Englandd. 5 May 1717 Madely Court, Coalbrookdale, Shropshire, England[br]English ironmaster, inventor of the coke smelting of iron ore.[br]Darby's father, John, was a farmer who also worked a small forge to produce nails and other ironware needed on the farm. He was brought up in the Society of Friends, or Quakers, and this community remained important throughout his personal and working life. Darby was apprenticed to Jonathan Freeth, a malt-mill maker in Birmingham, and on completion of his apprenticeship in 1699 he took up the trade himself in Bristol. Probably in 1704, he visited Holland to study the casting of brass pots and returned to Bristol with some Dutch workers, setting up a brassworks at Baptist Mills in partnership with others. He tried substituting cast iron for brass in his castings, without success at first, but in 1707 he was granted a patent, "A new way of casting iron pots and other pot-bellied ware in sand without loam or clay". However, his business associates were unwilling to risk further funds in the experiments, so he withdrew his share of the capital and moved to Coalbrookdale in Shropshire. There, iron ore, coal, water-power and transport lay close at hand. He took a lease on an old furnace and began experimenting. The shortage and expense of charcoal, and his knowledge of the use of coke in malting, may well have led him to try using coke to smelt iron ore. The furnace was brought into blast in 1709 and records show that in the same year it was regularly producing iron, using coke instead of charcoal. The process seems to have been operating successfully by 1711 in the production of cast-iron pots and kettles, with some pig-iron destined for Bristol. Darby prospered at Coalbrookdale, employing coke smelting with consistent success, and he sought to extend his activities in the neighbourhood and in other parts of the country. However, ill health prevented him from pursuing these ventures with his previous energy. Coke smelting spread slowly in England and the continent of Europe, but without Darby's technological breakthrough the ever-increasing demand for iron for structures and machines during the Industrial Revolution simply could not have been met; it was thus an essential component of the technological progress that was to come.Darby's eldest son, Abraham II (1711–63), entered the Coalbrookdale Company partnership in 1734 and largely assumed control of the technical side of managing the furnaces and foundry. He made a number of improvements, notably the installation of a steam engine in 1742 to pump water to an upper level in order to achieve a steady source of water-power to operate the bellows supplying the blast furnaces. When he built the Ketley and Horsehay furnaces in 1755 and 1756, these too were provided with steam engines. Abraham II's son, Abraham III (1750–89), in turn, took over the management of the Coalbrookdale works in 1768 and devoted himself to improving and extending the business. His most notable achievement was the design and construction of the famous Iron Bridge over the river Severn, the world's first iron bridge. The bridge members were cast at Coalbrookdale and the structure was erected during 1779, with a span of 100 ft (30 m) and height above the river of 40 ft (12 m). The bridge still stands, and remains a tribute to the skill and judgement of Darby and his workers.[br]Further ReadingA.Raistrick, 1989, Dynasty of Iron Founders, 2nd edn, Ironbridge Gorge Museum Trust (the best source for the lives of the Darbys and the work of the company).H.R.Schubert, 1957, History of the British Iron and Steel Industry AD 430 to AD 1775, London: Routledge \& Kegan Paul.LRD
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