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1 aging behavior
aging behavior Alterungsverhalten nEnglish-German dictionary of Electrical Engineering and Electronics > aging behavior
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2 aging behavior
Большой англо-русский и русско-английский словарь > aging behavior
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3 aging behavior
Англо-русский словарь нефтегазовой промышленности > aging behavior
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4 aging behavior
Нефть: характеристики старения -
5 aging behavior
The English-Russian dictionary on reliability and quality control > aging behavior
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6 behavior
работа; поведение ( системы) ; режим (работы, пласта) ; характер ( движения жидкости)
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behavior in particular circumstances — поведение в определённых условиях (при испытаниях или эксплуатации)
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состояние; поведение; режим залежи; характеристика динамики показателей работы залежи или скважины
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свойство, характеристика
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- behavior of fluid
- behavior of platform
- behavior of structure under tow
- behavior of wall
- actual behavior
- aging behavior
- cocking behavior
- component behavior
- corrosion behavior
- critical behavior
- degradation behavior
- dynamic behavior
- equilibrium behavior
- error-free behavior
- fail-safe behavior
- fatigue behavior
- flow behavior
- gas cap behavior
- initial behavior
- limiting behavior
- jet behavior
- long-term behavior
- nonequilibrium behavior
- off-design behavior
- off-nominal behavior
- oil-bearing behavior
- operational behavior
- pathological behavior
- phase behavior
- production reservoir behavior
- reliability behavior
- reservoir behavior
- search behavior
- seismic behavior
- service behavior
- single-phase behavior
- stationary behavior
- steady-state behavior
- structural behavior
- wear behavior
- well behavior* * *• режим• характерАнгло-русский словарь нефтегазовой промышленности > behavior
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7 behavior
1. поведение2. plural свойства3. характер изменения (например, кривой)behavior of ceramics — свойства керамики
behavior of lubricant — свойства смазочного материала
behavior of materials — свойства материалов
ablation behavior — 1) абляционные характеристики 2) процесс уноса массы
aging behavior — характеристики старения
alloying behavior — режим легирования
brittle behavior — характеристики хрупкости, хрупкость
burning rate behavior — характеристики скорости горения ( топлива)
bursting behavior — взрывные характеристики
composite fracture behavior — характер разрушения композиционного материала [композиции]
composite material behavior — 1) характеристики композиционного материала [композиции] 2) поведение композиции
corrosion behavior — 1) характеристики коррозии 2) коррозионная стойкость
creep behavior — 1) характеристики ползучести 2) ползучесть
cryogenic behavior — свойства ( материала) при криогенных температурах
deformational behavior — 1) деформационное [реологическое] поведение 2) характер деформации
dielectric behavior — диэлектрические характеристики
drawing behavior — режим вытяжки; характеристика вытяжки, поведение ( материала) при вытяжке
ductile behavior — 1) характеристика вязкости 2) характеристика пластичности
elastic behavior — 1) упругие [эластичные] свойства 2) упругое поведение
elastic fiber behavior — упругое поведение [упругость] волокон
elastic matrix behavior — упругое поведение связующего [матрицы]
elastic-plastic behavior — упругопластическое поведение
electrochemical behavior — электрохимические свойства
elevated-temperature behavior — свойства при повышенных температурах
fatigue behavior — 1) усталостная характеристика 2) выносливость
foaming behavior — характеристики вспенивания
frictional behavior — 1) поведение [свойства] при трении 2) фрикционные свойства
gelation behavior — характеристики желатинизации
high-temperature plastic behavior — пластические свойства ( материала) при высоких температурах
Hookean elastic behavior — упругость по Гуку
isotropic behavior — изотропные характеристики [свойства]
linear elastic behavior — линейная упругость ( материала)
linear viscoelastic behavior — вязкоупругое линейное поведение ( материала)
liquid-propellant behavior — свойства жидкого ракетного топлива
low-cycle fatigue behavior — характеристики малоцикловой усталости
low-g propellant behavior — характеристики ракетного топлива в условиях низкой гравитации
material behavior — свойства материала
matrix behavior — 1) характеристики матрицы 2) поведение матрицы
mechanical behavior — механические свойства
microcreep behavior — характер микроползучести
micromechanical behavior — микромеханические свойства
microstrain behavior — характер микродеформации, микродеформационное поведение
microyield behavior — характер микротекучести
network behavior — свойства сетки ( эластомера)
optimum composite behavior — оптимальные характеристики композиционного материала [композиции]
oxidation behavior — 1) режим окисления 2) окислительные свойства
phase behavior — 1) фазовые превращения в системе 2) изменения в фазовой характеристике системы
physical behavior — физические свойства
plastic behavior — 1) пластические свойства 2) пластическое поведение
plastic fiber behavior — пластичность волокна
plastic flow behavior — 1) пластические свойства 2) пластическое поведение
plastic matrix behavior — пластическое поведение матрицы [связующего]
polycrystalline behavior — поликристаллические свойства
polymer behavior — свойства полимера
post buckling behavior — закритическое поведение, закритические характеристики, поведение после потери устойчивости
postcure behavior — поведение после отверждения
postwrinkling behavior — поведение после потери устойчивости
precipitation behavior — режим осаждения
propellant behavior — характеристики ракетного топлива
pyrolytic behavior — пиролитические свойства
radiative behavior — излучающие характеристики
reinforcing behavior — армирующие характеристики
relaxation behavior — релаксационные свойства
rheological behavior — реологические свойства
rigid-plastic behavior — жёстко-пластические характеристики
room-temperature behavior — свойства ( материала) при комнатной температуре
shock behavior — поведение ( материала) при ударных нагрузках
single-crystal behavior — характеристики монокристалла
solid-propellant behavior — свойства твёрдого ракетного топлива
strain-hardening behavior — характер деформационного упрочнения
stress-strain behavior — кривая [диаграмма] напряжение — деформация
stress-strain-rate behavior — кривая [диаграмма] скорость деформации — напряжение
structural behavior — 1) прочностные свойства 2) прочность конструкции
superplastic behavior — сверхпластичность, сверхпластичные свойства
superplasticity behavior — сверхпластичность, сверхпластичные свойства
tensile behavior — 1) поведение при растяжении 2) характеристика растяжения
tension behavior — 1) поведение при растяжении 2) характеристика натяжения
thermal-cycling behavior — термоциклический режим
thermochemical behavior — термохимические свойства
thermomechanical behavior — термомеханические свойства
time-dependent behavior — зависящие от времени свойства
ultimate strength behavior — характеристики временного сопротивления
unit structural behavior — структурное единство ( композиционного материала)
viscoelastic behavior — вязкоупругие свойства
wear behavior — характеристики износа
yield point behavior — характеристика предела текучести
English-Russian dictionary of aviation and space materials > behavior
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8 behavio(u)r
поведение; свойства, характер изменения (напр. кривой) ; режим (работы) @behavio(u)r of ceramics свойства керамики @behavio(u)r of lubricant свойства смазочного материала @behavio(u)r of materials свойства материалов @ablation behavio(u)r абляционные характеристики; процесс уноса массы @aging behavio(u)r характеристики старения @alloying behavio(u)r режим легирования @brittle behavio(u)r характеристики хрупкости, хрупкость @burning rate behavio(u)r характеристики скорости горения (топлива) @bursting behavio(u)r взрывные характеристики @composite fracture behavio(u)r характер разрушения композиционного материала [композиции] @composite (material) behavio(u)r характеристики композиционного материала [композиции]; поведение композиции @corrosion behavio(u)r характеристики коррозии; коррозионная стойкость @creep behavio(u)r характеристики ползучести; ползучесть @cryogenic behavio(u)r свойства (материала) при криогенных температурах @deformation(al) behavio(u)r деформационное [реологическое] поведение; характер деформации @dielectric behavio(u)r диэлектрические характеристики @drawing behavio(u)r режим вытяжки; характеристика вытяжки, поведение (материала) при вытяжке @ductile behavio(u)r характеристика вязкости; характеристика пластичности @elastic behavio(u)r упругие [эластичные] свойства; упругое поведение @elastic fiber behavio(u)r упругое поведение [упругость] волокон @elastic matrix behavio(u)r упругое поведение связующего [матрицы] @elastic-plastic behavio(u)r упругопластическое поведение @electrochemical behavio(u)r электрохимические свойства @elevated-temperature behavio(u)r свойства при повышенных температурах @fatigue behavio(u)r усталостная характеристика; выносливость @foaming behavio(u)r характеристики вспенивания @friction(al) behavio(u)r поведение [свойства] при трении; фрикционные свойства @gelation behavio(u)r характеристики желатинизации @high-temperature plastic behavio(u)r пластические свойства (материала) при высоких температурах @Hookean elastic behavio(u)r упругость по Гуку @isotropic behavio(u)r изотропные характеристики [свойства] @linear elastic behavio(u)r линейная упругость (материала) @linear viscoelastic behavio(u)r вязкоупругое линейное поведение (материала) @liquid-propellant behavio(u)r свойства жидкого ракетного топлива @low-cycle fatigue behavio(u)r характеристики малоцикловой усталости @low-g propellant behavio(u)r характеристики ракетного топлива в условиях низкой гравитации @material behavio(u)r свойства материала @matrix behavio(u)r характеристики матрицы; поведение матрицы @mechanical behavio(u)r механические свойства @microcreep behavio(u)r характер микроползучести @micromechanical behavio(u)r микромеханические свойства @microstrain behavio(u)r характер микродеформации, микродеформационное поведение @microyield behavio(u)r характер микротекучести @network behavio(u)r свойства сетки (эластомера) @optimum composite behavio(u)r оптимальные характеристики композиционного материала [композиции] @oxidation behavio(u)r режим окисления; окислительные свойства @phase behavio(u)r фазовые превращения в системе; изменения в фазовой характеристике системы @physical behavio(u)r физические свойства @plastic behavio(u)r пластические свойства; пластическое поведение @plastic fiber behavio(u)r пластичность волокна @plastic flow behavio(u)r пластические свойства; пластическое поведение @plastic matrix behavio(u)r пластическое поведение матрицы [связующего] @polycrystalline behavio(u)r поликристаллические свойства @polymer behavio(u)r свойства полимера @post buckling behavio(u)r закритическое поведение, закритические характеристики, поведение после потери устойчивости @postcure behavio(u)r поведение после отверждения @postwrinkling behavio(u)r поведение после потери устойчивости @precipitation behavio(u)r режим осаждения @propellant behavio(u)r характеристики ракетного топлива @pyrolytic behavio(u)r пиролитические свойства @radiative behavio(u)r излучающие характеристики @reinforcing behavio(u)r армирующие характеристики @relaxation behavio(u)r релаксационные свойства @rheological behavio(u)r реологические свойства @rigid-plastic behavio(u)r жесткопластические характеристики @room-temperature behavio(u)r свойства (материала) при комнатной температуре @shock behavio(u)r поведение (материала) при ударных нагрузках @single-crystal behavio(u)r характеристики монокристалла @solid-propellant behavio(u)r свойства твердого ракетного топлива @strain-hardening behavio(u)r характер деформационного упрочнения @stress-strain behavio(u)r кривая [диаграмма] напряжение — деформация @stress-strain-rate behavio(u)r кривая [диаграмма] скорость деформации — напряжение @structural behavio(u)r прочностные свойства; прочность конструкции @superplastic [superplasticity] behavio(u)r сверхпластичность, сверхпластичные свойства @tensile behavio(u)r поведение при растяжении; характеристика растяжения @tension behavio(u)r поведение при растяжении; характеристика натяжения @thermal-cycling behavio(u)r термоциклический режим @thermochemical behavio(u)r термохимические свойства @superplasticity behavio(u)r см. superplastic behavior @thermomechanical behavio(u)r термомеханические свойства @time-dependent behavio(u)r зависящие от времени свойства @ultimate strength behavio(u)r характеристики временного сопротивления @unit structural behavio(u)r структурное единство (композиционного материала) @viscoelastic behavio(u)r вязкоупругие свойства @wear behavio(u)r характеристики износа @yield point behavio(u)r характеристика предела текучести @Англо-русский словарь по авиационно-космическим материалам > behavio(u)r
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9 bearing
подшипник имя существительное:манера держать себя (bearing, mien)имя прилагательное:несущий (bearing, supporting) -
10 Memory
To what extent can we lump together what goes on when you try to recall: (1) your name; (2) how you kick a football; and (3) the present location of your car keys? If we use introspective evidence as a guide, the first seems an immediate automatic response. The second may require constructive internal replay prior to our being able to produce a verbal description. The third... quite likely involves complex operational responses under the control of some general strategy system. Is any unitary search process, with a single set of characteristics and inputoutput relations, likely to cover all these cases? (Reitman, 1970, p. 485)[Semantic memory] Is a mental thesaurus, organized knowledge a person possesses about words and other verbal symbols, their meanings and referents, about relations among them, and about rules, formulas, and algorithms for the manipulation of these symbols, concepts, and relations. Semantic memory does not register perceptible properties of inputs, but rather cognitive referents of input signals. (Tulving, 1972, p. 386)The mnemonic code, far from being fixed and unchangeable, is structured and restructured along with general development. Such a restructuring of the code takes place in close dependence on the schemes of intelligence. The clearest indication of this is the observation of different types of memory organisation in accordance with the age level of a child so that a longer interval of retention without any new presentation, far from causing a deterioration of memory, may actually improve it. (Piaget & Inhelder, 1973, p. 36)4) The Logic of Some Memory Theorization Is of Dubious Worth in the History of PsychologyIf a cue was effective in memory retrieval, then one could infer it was encoded; if a cue was not effective, then it was not encoded. The logic of this theorization is "heads I win, tails you lose" and is of dubious worth in the history of psychology. We might ask how long scientists will puzzle over questions with no answers. (Solso, 1974, p. 28)We have iconic, echoic, active, working, acoustic, articulatory, primary, secondary, episodic, semantic, short-term, intermediate-term, and longterm memories, and these memories contain tags, traces, images, attributes, markers, concepts, cognitive maps, natural-language mediators, kernel sentences, relational rules, nodes, associations, propositions, higher-order memory units, and features. (Eysenck, 1977, p. 4)The problem with the memory metaphor is that storage and retrieval of traces only deals [ sic] with old, previously articulated information. Memory traces can perhaps provide a basis for dealing with the "sameness" of the present experience with previous experiences, but the memory metaphor has no mechanisms for dealing with novel information. (Bransford, McCarrell, Franks & Nitsch, 1977, p. 434)7) The Results of a Hundred Years of the Psychological Study of Memory Are Somewhat DiscouragingThe results of a hundred years of the psychological study of memory are somewhat discouraging. We have established firm empirical generalisations, but most of them are so obvious that every ten-year-old knows them anyway. We have made discoveries, but they are only marginally about memory; in many cases we don't know what to do with them, and wear them out with endless experimental variations. We have an intellectually impressive group of theories, but history offers little confidence that they will provide any meaningful insight into natural behavior. (Neisser, 1978, pp. 12-13)A schema, then is a data structure for representing the generic concepts stored in memory. There are schemata representing our knowledge about all concepts; those underlying objects, situations, events, sequences of events, actions and sequences of actions. A schema contains, as part of its specification, the network of interrelations that is believed to normally hold among the constituents of the concept in question. A schema theory embodies a prototype theory of meaning. That is, inasmuch as a schema underlying a concept stored in memory corresponds to the mean ing of that concept, meanings are encoded in terms of the typical or normal situations or events that instantiate that concept. (Rumelhart, 1980, p. 34)Memory appears to be constrained by a structure, a "syntax," perhaps at quite a low level, but it is free to be variable, deviant, even erratic at a higher level....Like the information system of language, memory can be explained in part by the abstract rules which underlie it, but only in part. The rules provide a basic competence, but they do not fully determine performance. (Campbell, 1982, pp. 228, 229)When people think about the mind, they often liken it to a physical space, with memories and ideas as objects contained within that space. Thus, we speak of ideas being in the dark corners or dim recesses of our minds, and of holding ideas in mind. Ideas may be in the front or back of our minds, or they may be difficult to grasp. With respect to the processes involved in memory, we talk about storing memories, of searching or looking for lost memories, and sometimes of finding them. An examination of common parlance, therefore, suggests that there is general adherence to what might be called the spatial metaphor. The basic assumptions of this metaphor are that memories are treated as objects stored in specific locations within the mind, and the retrieval process involves a search through the mind in order to find specific memories....However, while the spatial metaphor has shown extraordinary longevity, there have been some interesting changes over time in the precise form of analogy used. In particular, technological advances have influenced theoretical conceptualisations.... The original Greek analogies were based on wax tablets and aviaries; these were superseded by analogies involving switchboards, gramophones, tape recorders, libraries, conveyor belts, and underground maps. Most recently, the workings of human memory have been compared to computer functioning... and it has been suggested that the various memory stores found in computers have their counterparts in the human memory system. (Eysenck, 1984, pp. 79-80)Primary memory [as proposed by William James] relates to information that remains in consciousness after it has been perceived, and thus forms part of the psychological present, whereas secondary memory contains information about events that have left consciousness, and are therefore part of the psychological past. (Eysenck, 1984, p. 86)Once psychologists began to study long-term memory per se, they realized it may be divided into two main categories.... Semantic memories have to do with our general knowledge about the working of the world. We know what cars do, what stoves do, what the laws of gravity are, and so on. Episodic memories are largely events that took place at a time and place in our personal history. Remembering specific events about our own actions, about our family, and about our individual past falls into this category. With amnesia or in aging, what dims... is our personal episodic memories, save for those that are especially dear or painful to us. Our knowledge of how the world works remains pretty much intact. (Gazzaniga, 1988, p. 42)The nature of memory... provides a natural starting point for an analysis of thinking. Memory is the repository of many of the beliefs and representations that enter into thinking, and the retrievability of these representations can limit the quality of our thought. (Smith, 1990, p. 1)Historical dictionary of quotations in cognitive science > Memory
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