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1 modified one-time key
модифицированный одноразовый ключ
МОР-ключ
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[[http://www.rfcmd.ru/glossword/1.8/index.php?a=index&d=23]]Тематики
Синонимы
EN
Англо-русский словарь нормативно-технической терминологии > modified one-time key
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2 modified one-time key
Англо-русский словарь по компьютерной безопасности > modified one-time key
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3 key
1) (криптографический) ключ2) ключ к замку или запирающему устройству, механический ключ- base key- candidate key- card key- code key- data key- DES key- fake key- file key- good key- hex key- host key- link key- lost key- node key- numeric key- numerical key- pass key- PRN key- safe key- seed key- test key- true key- used key- user key- weak key- work key- zone key -
4 Mot-key
модифицированный одноразовый ключ
МОР-ключ
—
[[http://www.rfcmd.ru/glossword/1.8/index.php?a=index&d=23]]Тематики
Синонимы
EN
Англо-русский словарь нормативно-технической терминологии > Mot-key
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5 MOT-key
Сокращение: Modified One-Time key -
6 mot-key
Англо-русский словарь по компьютерной безопасности > mot-key
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7 algorithm
алгоритм (cryptoalgorithm) криптографический алгоритм, криптоалгоритм; алгоритм шифрования (криптографического закрытия)- private cryptographic algorithmАнгло-русский словарь по компьютерной безопасности > algorithm
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8 system
1) система; способ; метод2) устройство; строй3) классификация4) учение5) сеть (дорог) -
9 Farman, Henri
SUBJECT AREA: Aerospace[br]b. 26 May 1874 Paris, Franced. 17 July 1958 Paris, France[br]French aeroplane designer who modified Voisin biplanes and later, with his brother Maurice (b. 21 March 1877 Paris, France; d. 26 February 1964 Paris, France), created a major aircraft-manufacturing company.[br]The parents of Henri and Maurice Farman were British subjects living in Paris, but their sons lived all their lives in France and became French citizens. As young men, both became involved in cycle and automobile racing. Henri (or Henry—he used both versions) turned his attention to aviation in 1907 when he bought a biplane from Gabriel Voisin. Within a short time he had established himself as one of the leading pilots in Europe, with many record-breaking flights to his credit. Farman modified the Voisin with his own improvements, including ailerons, and then in 1909 he designed the first Farman biplane. This became the most popular biplane in Europe from the autumn of 1909 until well into 1911 and is one of the classic aeroplanes of history. Meanwhile, Maurice Farman had also begun to design and build biplanes; his first design of 1909 was not a great success but from it evolved two robust biplanes nicknamed the "Longhorn" and the "Shorthorn", so called because of their undercarriage skids. In 1912 the brothers joined forces and set up a very large factory at Billancourt. The "Longhorn" and "Shorthorn" became the standard training aircraft in France and Britain during the early years of the First World War. The Farman brothers went on to produce a number of other wartime designs, including a large bomber. After the war the Farmans produced a series of large airliners which played a key role in establishing France as a major airline operator. Most famous of these was the Goliath, a twin-engined biplane capable of carrying up to twelve passengers. This was produced from 1918 to 1929 and was used by many airlines, including the Farman Line. The brothers retired when their company was nationalized in 1937.[br]Bibliography1910, The Aviator's Companion, London (with his brother Dick Farman).Further ReadingM.Farman, 1901, 3,000 kilomètres en ballon, Paris (an account of several balloon flights from 1894 to 1900).J.Liron, 1984, Les Avions Farman, Paris (provides comprehensive descriptions of all Farman aircraft).Jane's Fighting Aircraft of World War I, 1990, London (reprint) (gives details of all early Farman aircraft).J.Stroud, 1966, European Aircraft since 1910, London (provides details about Farman air-liners).JDS -
10 Philosophy
And what I believe to be more important here is that I find in myself an infinity of ideas of certain things which cannot be assumed to be pure nothingness, even though they may have perhaps no existence outside of my thought. These things are not figments of my imagination, even though it is within my power to think of them or not to think of them; on the contrary, they have their own true and immutable natures. Thus, for example, when I imagine a triangle, even though there may perhaps be no such figure anywhere in the world outside of my thought, nor ever have been, nevertheless the figure cannot help having a certain determinate nature... or essence, which is immutable and eternal, which I have not invented and which does not in any way depend upon my mind. (Descartes, 1951, p. 61)Let us console ourselves for not knowing the possible connections between a spider and the rings of Saturn, and continue to examine what is within our reach. (Voltaire, 1961, p. 144)As modern physics started with the Newtonian revolution, so modern philosophy starts with what one might call the Cartesian Catastrophe. The catastrophe consisted in the splitting up of the world into the realms of matter and mind, and the identification of "mind" with conscious thinking. The result of this identification was the shallow rationalism of l'esprit Cartesien, and an impoverishment of psychology which it took three centuries to remedy even in part. (Koestler, 1964, p. 148)It has been made of late a reproach against natural philosophy that it has struck out on a path of its own, and has separated itself more and more widely from the other sciences which are united by common philological and historical studies. The opposition has, in fact, been long apparent, and seems to me to have grown up mainly under the influence of the Hegelian philosophy, or, at any rate, to have been brought out into more distinct relief by that philosophy.... The sole object of Kant's "Critical Philosophy" was to test the sources and the authority of our knowledge, and to fix a definite scope and standard for the researches of philosophy, as compared with other sciences.... [But Hegel's] "Philosophy of Identity" was bolder. It started with the hypothesis that not only spiritual phenomena, but even the actual world-nature, that is, and man-were the result of an act of thought on the part of a creative mind, similar, it was supposed, in kind to the human mind.... The philosophers accused the scientific men of narrowness; the scientific men retorted that the philosophers were crazy. And so it came about that men of science began to lay some stress on the banishment of all philosophic influences from their work; while some of them, including men of the greatest acuteness, went so far as to condemn philosophy altogether, not merely as useless, but as mischievous dreaming. Thus, it must be confessed, not only were the illegitimate pretensions of the Hegelian system to subordinate to itself all other studies rejected, but no regard was paid to the rightful claims of philosophy, that is, the criticism of the sources of cognition, and the definition of the functions of the intellect. (Helmholz, quoted in Dampier, 1966, pp. 291-292)Philosophy remains true to its classical tradition by renouncing it. (Habermas, 1972, p. 317)I have not attempted... to put forward any grand view of the nature of philosophy; nor do I have any such grand view to put forth if I would. It will be obvious that I do not agree with those who see philosophy as the history of "howlers" and progress in philosophy as the debunking of howlers. It will also be obvious that I do not agree with those who see philosophy as the enterprise of putting forward a priori truths about the world.... I see philosophy as a field which has certain central questions, for example, the relation between thought and reality.... It seems obvious that in dealing with these questions philosophers have formulated rival research programs, that they have put forward general hypotheses, and that philosophers within each major research program have modified their hypotheses by trial and error, even if they sometimes refuse to admit that that is what they are doing. To that extent philosophy is a "science." To argue about whether philosophy is a science in any more serious sense seems to me to be hardly a useful occupation.... It does not seem to me important to decide whether science is philosophy or philosophy is science as long as one has a conception of both that makes both essential to a responsible view of the world and of man's place in it. (Putnam, 1975, p. xvii)What can philosophy contribute to solving the problem of the relation [of] mind to body? Twenty years ago, many English-speaking philosophers would have answered: "Nothing beyond an analysis of the various mental concepts." If we seek knowledge of things, they thought, it is to science that we must turn. Philosophy can only cast light upon our concepts of those things.This retreat from things to concepts was not undertaken lightly. Ever since the seventeenth century, the great intellectual fact of our culture has been the incredible expansion of knowledge both in the natural and in the rational sciences (mathematics, logic).The success of science created a crisis in philosophy. What was there for philosophy to do? Hume had already perceived the problem in some degree, and so surely did Kant, but it was not until the twentieth century, with the Vienna Circle and with Wittgenstein, that the difficulty began to weigh heavily. Wittgenstein took the view that philosophy could do no more than strive to undo the intellectual knots it itself had tied, so achieving intellectual release, and even a certain illumination, but no knowledge. A little later, and more optimistically, Ryle saw a positive, if reduced role, for philosophy in mapping the "logical geography" of our concepts: how they stood to each other and how they were to be analyzed....Since that time, however, philosophers in the "analytic" tradition have swung back from Wittgensteinian and even Rylean pessimism to a more traditional conception of the proper role and tasks of philosophy. Many analytic philosophers now would accept the view that the central task of philosophy is to give an account, or at least play a part in giving an account, of the most general nature of things and of man. (Armstrong, 1990, pp. 37-38)8) Philosophy's Evolving Engagement with Artificial Intelligence and Cognitive ScienceIn the beginning, the nature of philosophy's engagement with artificial intelligence and cognitive science was clear enough. The new sciences of the mind were to provide the long-awaited vindication of the most potent dreams of naturalism and materialism. Mind would at last be located firmly within the natural order. We would see in detail how the most perplexing features of the mental realm could be supported by the operations of solely physical laws upon solely physical stuff. Mental causation (the power of, e.g., a belief to cause an action) would emerge as just another species of physical causation. Reasoning would be understood as a kind of automated theorem proving. And the key to both was to be the depiction of the brain as the implementation of multiple higher level programs whose task was to manipulate and transform symbols or representations: inner items with one foot in the physical (they were realized as brain states) and one in the mental (they were bearers of contents, and their physical gymnastics were cleverly designed to respect semantic relationships such as truth preservation). (A. Clark, 1996, p. 1)Socrates of Athens famously declared that "the unexamined life is not worth living," and his motto aptly explains the impulse to philosophize. Taking nothing for granted, philosophy probes and questions the fundamental presuppositions of every area of human inquiry.... [P]art of the job of the philosopher is to keep at a certain critical distance from current doctrines, whether in the sciences or the arts, and to examine instead how the various elements in our world-view clash, or fit together. Some philosophers have tried to incorporate the results of these inquiries into a grand synoptic view of the nature of reality and our human relationship to it. Others have mistrusted system-building, and seen their primary role as one of clarifications, or the removal of obstacles along the road to truth. But all have shared the Socratic vision of using the human intellect to challenge comfortable preconceptions, insisting that every aspect of human theory and practice be subjected to continuing critical scrutiny....Philosophy is, of course, part of a continuing tradition, and there is much to be gained from seeing how that tradition originated and developed. But the principal object of studying the materials in this book is not to pay homage to past genius, but to enrich one's understanding of central problems that are as pressing today as they have always been-problems about knowledge, truth and reality, the nature of the mind, the basis of right action, and the best way to live. These questions help to mark out the territory of philosophy as an academic discipline, but in a wider sense they define the human predicament itself; they will surely continue to be with us for as long as humanity endures. (Cottingham, 1996, pp. xxi-xxii)10) The Distinction between Dionysian Man and Apollonian Man, between Art and Creativity and Reason and Self- ControlIn his study of ancient Greek culture, The Birth of Tragedy, Nietzsche drew what would become a famous distinction, between the Dionysian spirit, the untamed spirit of art and creativity, and the Apollonian, that of reason and self-control. The story of Greek civilization, and all civilizations, Nietzsche implied, was the gradual victory of Apollonian man, with his desire for control over nature and himself, over Dionysian man, who survives only in myth, poetry, music, and drama. Socrates and Plato had attacked the illusions of art as unreal, and had overturned the delicate cultural balance by valuing only man's critical, rational, and controlling consciousness while denigrating his vital life instincts as irrational and base. The result of this division is "Alexandrian man," the civilized and accomplished Greek citizen of the later ancient world, who is "equipped with the greatest forces of knowledge" but in whom the wellsprings of creativity have dried up. (Herman, 1997, pp. 95-96)Historical dictionary of quotations in cognitive science > Philosophy
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11 code
1) код || кодировать3) (машинная) программа || программировать4) код, (машинное) слово (напр., команда)•- absolute code
- abstract code
- access code - address code
- alphanumeric code
- alphameric code
- alphabetical code
- alphabetic code
- amplitude code
- ASA code
- attribute-control code
- augmented operation code - balanced code
- bar code
- baseline code
- basic code
- basic order code
- Baudot code
- binary code
- binary decimal code
- binary-coded decimal code
- biquinary code
- block code
- block structured code
- Bose-Chaudhuri code
- brevity code
- bug-arresting code
- burst error correcting code
- cable code
- call directing code
- call direction code- cap code- character code
- check code
- checkable code
- Chinese binary code
- color code
- column binary code
- comma-free code
- command code
- compiler-produced code
- completion code
- computer code
- conditional code
- condition code
- constant ratio code
- continuous progressive code - convolution code
- convolutional code
- correcting code- CP code- cyclic code
- cyclic permuted code
- data code
- data conversion code
- data link code - dense binary code
- deposited source code
- destination code
- device code
- digital code
- direct code
- directing character code
- dot-and-dash code
- double-error correcting code
- eight channel code
- entry code - error-checking code
- error-control code
- error-correcting code
- error-detecting code
- error-detection code
- error-limited code
- escape code - executable code
- exit code
- exponent code
- extended mneminic code
- external readable code
- factorable code
- false code
- fault code
- feature code
- Fire code
- five bit code
- five channel code
- forbidden-character code
- forbidden code
- format code
- four-adress code
- fragile code
- frequency code
- function code
- Gray code
- group code
- Hamming code
- hash code - Huffman code
- identification code
- identifying code
- illegal code
- improper code
- in-line code
- inner code
- instantaneously decodable code
- instruction code
- internal code
- interpretive code
- inverted code - line code
- linear code
- line-feed code
- lock code
- machine code
- machine-instruction code
- machine-language code
- machine-operation code
- machine-readable code
- machine-treatable code
- magnetic bar code
- magnetic tape code
- Manchester code
- message-format code
- micro code
- minimum-access code
- minimum-delay code
- minimum-distance code
- minimum-latency code
- minimum-redundance code
- mnemonic code
- modified binary code
- modular code
- modulation code - Muller code
- multiple-address code
- multiple-error correcting code
- N-adjacent code
- name code
- N-ary code
- native code
- natural binary code
- N-bit code
- N-error correcting code
- N-level code
- noise combating code
- nonconsistently based code
- nonexistent code
- nonprint code
- nonreproducing code
- non-return-to-zero code
- nonsystematic code
- nonweighted code
- N-place code
- number address code
- number code
- numerical code
- numeric code
- N-unit code
- object code
- one-address code
- one-dimensional code
- one-level code
- one-out-of-ten code
- op code
- operand code
- operation code
- optimum code
- order code
- outer code
- own code
- paired-disparity code
- paper tape code
- parallel code
- parity-checking code
- parity-check code
- perforated tape code
- permutation code
- permuted code
- personal-identification code
- phonetic code
- physical-hardware-dependent code- positional code- position code
- position-independent code
- precedence code
- print restore code - pseudocyclic code
- pseudorandom code
- pulse code
- punched card code
- punched tape code
- pure code
- quibinary code
- ready-to-run code
- recurrent code
- redundant code
- Reed-Muller code
- Reed-Solomon code
- reenterable code
- reentrant code
- reflected binary code
- reflected code
- relative code
- relocatable code
- repertory code
- reproducing code
- residual class code
- residue code
- restricted-magnitude-error correcting code
- retrieval code
- return code
- return-to-zero code
- routing code
- row-binary code
- safety code - self-checking code
- self-complementaring code
- self-complementing code
- self-correcting code
- self-demarcating code
- separable code
- serial code - severity code
- Shannon code
- short computer code
- short code
- sign code
- signal code
- significant-digit subset code - single-address code
- single-error correcting and double-error detecting code
- single-error correcting code
- single-error detecting code
- single-parity code - skip code
- source code
- space code
- space-efficient code
- specific code - status code
- Stone's code
- stop code
- straight binary code
- straight-line code
- strip code
- syllable code
- symbol code
- symbolic code
- systematic error checking code
- tape code
- task code
- telecommunication code
- telegraph code
- teleprinter code
- teletype code
- ternary code
- threaded code
- three-adress code
- throw-away code
- time code
- timing code
- trace back code
- transmission code
- transmitter-start code
- triple-error correcting code
- two-address code
- two-out-of-five code
- two-rail code
- uniquely decipherable code
- uniquely decodable code
- unitary code
- unit-distance code
- unused code
- variable-length code
- viral code - weighted code
- weighted-checksum code - zero-address code
- zone codeEnglish-Russian dictionary of computer science and programming > code
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