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1 análisis del caso medio
• average-case analysisDiccionario Técnico Español-Inglés > análisis del caso medio
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2 analiza prosecesnog slučaja
• average-case analysis -
3 анализ в среднем
анализ в среднем
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[ http://www.iks-media.ru/glossary/index.html?glossid=2400324]Тематики
- электросвязь, основные понятия
EN
Русско-английский словарь нормативно-технической терминологии > анализ в среднем
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4 анализ в среднем
Information technology: average-case analysis -
5 метод
1) expedient
2) manner
3) method
4) <electr.> mode
5) procedure
6) technique
– аксиоматический метод
– анаглифический метод
– вариационный метод
– весовой метод
– визуальный метод
– время-импульсный метод
– градиентный метод
– графический метод
– графоаналитический метод
– групповой метод
– дедуктивный метод
– иммерсионный метод
– импульсный метод
– интерференционный метод
– качественный метод
– кессонный метод
– количественный метод
– колориметрический метод
– комплексометрический метод
– кондуктометрический метод
– корреляционный метод
– косвенный метод
– лабораторный метод
– метод бестигельный
– метод Бормана
– метод Бриджмена
– метод взбалтывания
– метод возбуждения
– метод восходящий
– метод вращения
– метод врезания
– метод выбега
– метод годографа
– метод графов
– метод Грисса-Иловая
– метод дальномерно-базисный
– метод Дешана
– метод Дюма
– метод изинговский
– метод изображений
– метод импульсов
– метод инверсии
– метод испытаний
– метод истечения
– метод итерации
– метод Клегга
– метод консервирования
– метод конуса
– метод красок
– метод Марковица
– метод множителей
– метод накачки
– метод накопления
– метод наложения
– метод напыления
– метод обработки
– метод окаймления
– метод ОПВ
– метод осаждения
– метод осреднения
– метод отопления
– метод отражения
– метод перевала
– метод перемежающийся
– метод перпендикуляров
– метод площадей
– метод подбора
– метод подобия
– метод положения
– метод посева
– метод постулатов
– метод прерываний
– метод пристрелки
– метод проб
– метод прогонки
– метод продолжения
– метод равносигнальный
– метод радиоавтографии
– метод разбавления
– метод разделения
– метод разливки
– метод размерностей
– метод решета
– метод Рунге-Кутта
– метод свилей
– метод секущих
– метод сетки
– метод сеток
– метод сечений
– метод сил
– метод совмещения
– метод совпадений
– метод сплавления
– метод Степанова
– метод стрельбы
– метод триангуляции
– метод трилатерации
– метод узлов
– метод Уизема
– метод уравновешивания
– метод установления
– метод частиц
– метод Шора
– метод электрофореза
– метод эстафеты
– ненулевой метод
– неразрушающий метод
– нерекурсивный метод
– неточный метод
– нефелометрический метод
– нулевой метод
– обратно-ступенчатый метод
– объективный метод
– объемный метод
– операторный метод
– пикнометрический метод
– порошковый метод
– приближенный метод
– прямой метод
– радиационный метод
– радиометрический метод
– разностный метод
– разрушающий метод
– рентгеноструктурный метод
– ресонансный метод
– рупорно-линзовый метод
– симболический метод
– спектроскопический метод
– статистический метод
– стробоскопический метод
– струйный метод
– ступенчатый метод
– субъективный метод
– табличный метод
– теневой метод
– топологический метод
– точный метод
– финитный метод
– флотационный метод
– цепной метод
– численный метод
– шуповой метод
– эмпирический метод
– энергетический метод
– эргатический метод
– эскалаторный метод
абсолютный метод измерения — absolute method of measurement
дальномерный метод навигации — rho-rho navigation
дифференцированный метод контроля — differential control method
кислотный метод испытаний — acid test
косвенный метод измерения — indirect method of measurement
метод амплитудного анализа — kick-sorting method
метод анализа узловой — <tech.> nodal analysis
метод аналитической вставки — cantilevel extension
метод аппроксимации отображаемых поверхностей сплайнами — spline surface technique
метод быстрейшего спуска — steepest descent method
метод вариации постоянных — method of variation of parameters
метод ветвей и границ — branch and bound method, branch-and-bound, <math.> branch-and-bound method
метод ветвления и ограничения — branch and bound method
метод взаимных градиентов — <math.> conjugate-gradient method
метод воздушной проекции — aero-projection method
метод возможных направлений — <math.> method of feasible directions
метод времени пролета — time-of-flight method
метод встречного включения — <tech.> opposition method
метод встречного фрезерования — conventional milling method
метод гармонического баланса — describing function method
метод двух узлов — nodal-pair method
метод дирекционных углов — method of gisements
метод запаса прочности — load factor method
метод зеркальных изображений — method of electrical images
метод зонной плавки — floating-zone method
метод избыточных концентраций — isolation method
метод измерения по точкам — point-by-point method
метод изотопных индикаторов — tracer method
метод искаженных волн непрерывного спектра — <phys.> continuous-distorted-wave approximation
метод испытательной строки — test-line method
метод итераций Гаусса-Зайделя — <math.> Gauss-Seidel iteration
метод качающегося кристалла — rotating-crystal method
метод качающейся частоты — <electr.> wobbulator method
метод кольца и шара — ball-and-ring method
метод комбинирования для получения оптимальных вариантов — mix-and-match technique
метод конечных разностей — finite difference method
метод конечных элементов — <math.> finite element method
метод контроля качества — quality control method
метод контурного анализа — <tech.> loop analysis
метод контурных токов — mesh-current method
метод корневого годографа — root-locus method
метод крупных частиц — <math.> particle-in-cell method
метод лаковых покрытий — brittel-varnish method
метод линейной интерполяции — method of proportional parts
метод ложного положения — <math.> method of false position
метод лучевого зондирования — ray-trace method
метод магнитного порошка — magnetic particle method
метод малого параметра — pertubation theory
метод малых возмущений — perturbation method
метод механической обработки — machining method
метод моментных площадей — area moment method
метод нагретой нити — <phys.> hot-wire technique
метод наибольшего ската — saddle-point method
метод наименьших квадратов — method of least squares
метод наискорейшего спуска — <math.> method of steepest descent
метод наихудшего случая — <math.> worst-case method
метод наружных зарядов — adobe blasting method
метод неподвижных точек — method of fixed points
метод нивелирования по частям — method of fraction levelling
метод нулевого отклонения — <tech.> zero deflection method
метод нулевых биений — zero-beat method
метод нулевых точек — neutral-points method
метод нулей Барле — <phys.> Barrelet method of zeroes
метод обеспечения надежности — reliability method
метод обогащения данных — data enrichment method
метод обратной задачи — <math.> inverse-scattering method
метод одного отсчета — total value method
метод ортогонализованных плоских волн — <opt.> orthogonalized-plane-wave method
метод особых возмущений — singular perturbation method
метод отбора проб — sampling method
метод относительных приростов — <engin.> method of incremental rates
метод отраженных волн — < radio> reflected wave method
метод отраженных импульсов — pulse-echo method
метод падающего тела — falling body method
метод параллельного действия — parallel mode
метод парамагнитного резонанса — paramagnetic-resonance method
метод первого приближения — first approximation method
метод передачи совместных значений — <comput.> composite value method
метод переменной плотности — <phot.> movietone
метод переменных направлений — <math.> ADI method, alternating direction method
метод перераспределения моментов — moment distribution method
метод пересекающихся дучей — crossed beam method
метод переходного состояния — transition state method
метод перспективных сеток — grid method
метод плавающей зоны — <metal.> floating zone melting
метод планирования балансовый — <econ.> balance-chart method of planning
метод подвижного или передвигающего наблюдателя — moving-observer technique
метод покоординатного спуска — <math.> alternating-variable descent method
метод полной деформации — total-strain method
метод половинных отклонений — half-deflection method
метод полярных координат — polar method
метод попутного фрезерования — climb milling method
метод последовательного счета — incremental method
метод последовательных исключений — successive exclusion method
метод последовательных поправок — successive correction
метод последовательных элиминаций — method of exhaustion
метод послесплавной диффузии — post-alloy-diffusion technique
метод предпоследнего остатка — <math.> method of penultimate remainder
метод приближения объемного заряда с резкой границей — abrupt space-charge edge
метод пробных выборок — <math.> model sampling
метод прогноза и коррекции — <math.> predictor-corrector method
метод программирующих программ — programming program method
метод пространств входных массивов — <comput.> input space approach
метод равносигнальной зоны — lobing
метод равных высот — equal-altitude method
метод равных деформаций — equal-strain method
метод равных отклонений — <tech.> equal deflection method, equal-deflection method
метод разделения переменных — method of separation of variable
метод разрушающей нагрузки — load-factor method
метод растрового сканирования — raster-scan method
метод сдвинутого сигнала — offset-signal method
метод селекции мод — mode selecting technique
метод серого клина — gray-wedge method
метод сжатия импульсов — pulse compression technique
метод симметричных составляющих — method of symmetrical components
метод синхронизации мод — mode-locking technique
метод синхронизации фаз — phase-locking technique
метод синхронного накопления — synchronous storage method
метод сканирования полосой — single-line-scan television meth
метод сканирования пятном — spot-scan photomultiplier method
метод сквозного счета — <phys.> shock-capturing method
метод скользящего окна — <math.> data windowing
метод скользящих средних — <math.> moving average method, moving-average method
метод скорейшего спуска — <math.> method of steepest descent
метод совместных значений — <comput.> composite value method
метод сопряженных градиентов — <math.> method of complex gradients
метод сопряженных уравнений — <math.> adjoint method
метод сосредоточенных параметров — lumped-parameter method
метод составного стержня Гопкинсона — Hopkinson split-bar method
метод спадания заряда — fall-of-charge method
метод спирального сканирования — spiral-scan method
метод сравнений по модулю 9 — <math.> casting out nines
метод средних квадратов — midsquare method
метод сухого озоления — dry combustion method
метод сухого порошка — dry method
метод точечного вплавления — dot alloying method
метод трех баз — three-base method
метод угловой деформации — slope-deflection method
метод угловой модуляции — angular modulation method
метод удаляемого маски — rejection mask method
метод удаляемого трафарета — rejeciton mask method
метод узлового анализа — <tech.> nodal analysis
метод узловых потенциалов — node-voltage method
метод унифицированных модулей — building-block method
метод уравнивания по направлениям — method of directions
метод уравнивания по углам — method of angles
метод фазовой плоскости — phase plane method
метод фазовых функций — <phys.> variable-phase method
метод чередущихся направлений — <math.> ADI method, alternating direction method
метод эффективного пространства — effective medium approach
непосредственный метод отыскания производной — delta method
основанный на переходе к сравнениям метод проверки — casting out
относительный метод измерения — relative method of measurement
панельный метод испытаний — panel-spalling test
параллельно-последовательный метод выполнения операций — parallel-serial mode
прессование металла обратным метод — inverse extrusion
прямой метод измерения — direct method of measurement
угломерный метод навигации — theta-theta navigation
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6 Creativity
Put in this bald way, these aims sound utopian. How utopian they areor rather, how imminent their realization-depends on how broadly or narrowly we interpret the term "creative." If we are willing to regard all human complex problem solving as creative, then-as we will point out-successful programs for problem solving mechanisms that simulate human problem solvers already exist, and a number of their general characteristics are known. If we reserve the term "creative" for activities like discovery of the special theory of relativity or the composition of Beethoven's Seventh Symphony, then no example of a creative mechanism exists at the present time. (Simon, 1979, pp. 144-145)Among the questions that can now be given preliminary answers in computational terms are the following: how can ideas from very different sources be spontaneously thought of together? how can two ideas be merged to produce a new structure, which shows the influence of both ancestor ideas without being a mere "cut-and-paste" combination? how can the mind be "primed," so that one will more easily notice serendipitous ideas? why may someone notice-and remember-something fairly uninteresting, if it occurs in an interesting context? how can a brief phrase conjure up an entire melody from memory? and how can we accept two ideas as similar ("love" and "prove" as rhyming, for instance) in respect of a feature not identical in both? The features of connectionist AI models that suggest answers to these questions are their powers of pattern completion, graceful degradation, sensitization, multiple constraint satisfaction, and "best-fit" equilibration.... Here, the important point is that the unconscious, "insightful," associative aspects of creativity can be explained-in outline, at least-by AI methods. (Boden, 1996, p. 273)There thus appears to be an underlying similarity in the process involved in creative innovation and social independence, with common traits and postures required for expression of both behaviors. The difference is one of product-literary, musical, artistic, theoretical products on the one hand, opinions on the other-rather than one of process. In both instances the individual must believe that his perceptions are meaningful and valid and be willing to rely upon his own interpretations. He must trust himself sufficiently that even when persons express opinions counter to his own he can proceed on the basis of his own perceptions and convictions. (Coopersmith, 1967, p. 58)he average level of ego strength and emotional stability is noticeably higher among creative geniuses than among the general population, though it is possibly lower than among men of comparable intelligence and education who go into administrative and similar positions. High anxiety and excitability appear common (e.g. Priestley, Darwin, Kepler) but full-blown neurosis is quite rare. (Cattell & Butcher, 1970, p. 315)he insight that is supposed to be required for such work as discovery turns out to be synonymous with the familiar process of recognition; and other terms commonly used in the discussion of creative work-such terms as "judgment," "creativity," or even "genius"-appear to be wholly dispensable or to be definable, as insight is, in terms of mundane and well-understood concepts. (Simon, 1989, p. 376)From the sketch material still in existence, from the condition of the fragments, and from the autographs themselves we can draw definite conclusions about Mozart's creative process. To invent musical ideas he did not need any stimulation; they came to his mind "ready-made" and in polished form. In contrast to Beethoven, who made numerous attempts at shaping his musical ideas until he found the definitive formulation of a theme, Mozart's first inspiration has the stamp of finality. Any Mozart theme has completeness and unity; as a phenomenon it is a Gestalt. (Herzmann, 1964, p. 28)Great artists enlarge the limits of one's perception. Looking at the world through the eyes of Rembrandt or Tolstoy makes one able to perceive aspects of truth about the world which one could not have achieved without their aid. Freud believed that science was adaptive because it facilitated mastery of the external world; but was it not the case that many scientific theories, like works of art, also originated in phantasy? Certainly, reading accounts of scientific discovery by men of the calibre of Einstein compelled me to conclude that phantasy was not merely escapist, but a way of reaching new insights concerning the nature of reality. Scientific hypotheses require proof; works of art do not. Both are concerned with creating order, with making sense out of the world and our experience of it. (Storr, 1993, p. xii)The importance of self-esteem for creative expression appears to be almost beyond disproof. Without a high regard for himself the individual who is working in the frontiers of his field cannot trust himself to discriminate between the trivial and the significant. Without trust in his own powers the person seeking improved solutions or alternative theories has no basis for distinguishing the significant and profound innovation from the one that is merely different.... An essential component of the creative process, whether it be analysis, synthesis, or the development of a new perspective or more comprehensive theory, is the conviction that one's judgment in interpreting the events is to be trusted. (Coopersmith, 1967, p. 59)In the daily stream of thought these four different stages [preparation; incubation; illumination or inspiration; and verification] constantly overlap each other as we explore different problems. An economist reading a Blue Book, a physiologist watching an experiment, or a business man going through his morning's letters, may at the same time be "incubating" on a problem which he proposed to himself a few days ago, be accumulating knowledge in "preparation" for a second problem, and be "verifying" his conclusions to a third problem. Even in exploring the same problem, the mind may be unconsciously incubating on one aspect of it, while it is consciously employed in preparing for or verifying another aspect. (Wallas, 1926, p. 81)he basic, bisociative pattern of the creative synthesis [is] the sudden interlocking of two previously unrelated skills, or matrices of thought. (Koestler, 1964, p. 121)11) The Earliest Stages in the Creative Process Involve a Commerce with DisorderEven to the creator himself, the earliest effort may seem to involve a commerce with disorder. For the creative order, which is an extension of life, is not an elaboration of the established, but a movement beyond the established, or at least a reorganization of it and often of elements not included in it. The first need is therefore to transcend the old order. Before any new order can be defined, the absolute power of the established, the hold upon us of what we know and are, must be broken. New life comes always from outside our world, as we commonly conceive that world. This is the reason why, in order to invent, one must yield to the indeterminate within him, or, more precisely, to certain illdefined impulses which seem to be of the very texture of the ungoverned fullness which John Livingston Lowes calls "the surging chaos of the unexpressed." (Ghiselin, 1985, p. 4)New life comes always from outside our world, as we commonly conceive our world. This is the reason why, in order to invent, one must yield to the indeterminate within him, or, more precisely, to certain illdefined impulses which seem to be of the very texture of the ungoverned fullness which John Livingston Lowes calls "the surging chaos of the unexpressed." Chaos and disorder are perhaps the wrong terms for that indeterminate fullness and activity of the inner life. For it is organic, dynamic, full of tension and tendency. What is absent from it, except in the decisive act of creation, is determination, fixity, and commitment to one resolution or another of the whole complex of its tensions. (Ghiselin, 1952, p. 13)[P]sychoanalysts have principally been concerned with the content of creative products, and with explaining content in terms of the artist's infantile past. They have paid less attention to examining why the artist chooses his particular activity to express, abreact or sublimate his emotions. In short, they have not made much distinction between art and neurosis; and, since the former is one of the blessings of mankind, whereas the latter is one of the curses, it seems a pity that they should not be better differentiated....Psychoanalysis, being fundamentally concerned with drive and motive, might have been expected to throw more light upon what impels the creative person that in fact it has. (Storr, 1993, pp. xvii, 3)A number of theoretical approaches were considered. Associative theory, as developed by Mednick (1962), gained some empirical support from the apparent validity of the Remote Associates Test, which was constructed on the basis of the theory.... Koestler's (1964) bisociative theory allows more complexity to mental organization than Mednick's associative theory, and postulates "associative contexts" or "frames of reference." He proposed that normal, non-creative, thought proceeds within particular contexts or frames and that the creative act involves linking together previously unconnected frames.... Simonton (1988) has developed associative notions further and explored the mathematical consequences of chance permutation of ideas....Like Koestler, Gruber (1980; Gruber and Davis, 1988) has based his analysis on case studies. He has focused especially on Darwin's development of the theory of evolution. Using piagetian notions, such as assimilation and accommodation, Gruber shows how Darwin's system of ideas changed very slowly over a period of many years. "Moments of insight," in Gruber's analysis, were the culminations of slow long-term processes.... Finally, the information-processing approach, as represented by Simon (1966) and Langley et al. (1987), was considered.... [Simon] points out the importance of good problem representations, both to ensure search is in an appropriate problem space and to aid in developing heuristic evaluations of possible research directions.... The work of Langley et al. (1987) demonstrates how such search processes, realized in computer programs, can indeed discover many basic laws of science from tables of raw data.... Boden (1990a, 1994) has stressed the importance of restructuring the problem space in creative work to develop new genres and paradigms in the arts and sciences. (Gilhooly, 1996, pp. 243-244; emphasis in original)Historical dictionary of quotations in cognitive science > Creativity
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7 портфель
1. carnet2. brief-case3. briefcase4. portfolio5. brief case; portfolio
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Case Western Reserve University School of Law — Infobox Law School name = Case Western Reserve University Franklin Thomas Backus School of Law established = 1892 type = Private head = Dean [http://law.case.edu/dean/ Gary J. Simson] city = Cleveland state = Ohio country = USA students = 704… … Wikipedia
Competitive analysis (online algorithm) — Competitive analysis is a method invented for analyzing online algorithms, in which the performance of an online algorithm (which must satisfy an unpredictable sequence of requests, completing each request without being able to see the future) is … Wikipedia