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1 upper electrical limit
Техника: верхний электрический пределУниверсальный англо-русский словарь > upper electrical limit
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2 UEL
upper electrical limit - верхний электрический предел -
3 UEL
1) Общая лексика: University of East London2) Техника: upper electrical limit3) Университет: University Endowment Lands4) Электроника: (Universal Events Log) Универсальный журнал событий5) Нефть: upper flammable limit6) Химическое оружие: Upper Explosive Limit7) Нефть и газ: upper limit of the explosive range, ВПВ, верхний взрывоопасный порог, верхний взрывоопасный предел, верхний предел взрываемости9) Фантастика United Earth League10) Программное обеспечение: Universal Exit Language -
4 angle
1) угол3) угольник; угловая стойка4) уголок ( металлический прокат)5) выставлять под углом; наклонять•- acute angleat right angle — под прямым углом, перпендикулярно
- addendum angle
- adjacent angle
- advance angle
- alternate angles
- angle of action
- angle of advance
- angle of alteration
- angle of approach
- angle of arrival
- angle of articulation
- angle of ascent
- angle of back of tooth
- angle of belt contact
- angle of bending
- angle of chamfer
- angle of climb
- angle of compacting
- angle of contact
- angle of countersink
- angle of crossing
- angle of cutoff
- angle of decalage
- angle of deflection
- angle of displacement
- angle of draw
- angle of eccentric
- angle of eccentricity
- angle of elevation
- angle of feed slide
- angle of friction
- angle of incident
- angle of lag
- angle of lead
- angle of obliquity
- angle of pitch
- angle of recess
- angle of relief
- angle of repose
- angle of retard
- angle of rotation
- angle of setting
- angle of shear
- angle of shift
- angle of skew
- angle of slide
- angle of taper
- angle of thread
- angle of torque
- angle of torsion
- angle of twist
- angle of unbalance
- angle of vee
- angle of view
- angle of visibility
- angle of wrap
- apex angle
- approach angle
- ascending angle
- axial pressure angle
- axial rake angle
- axial relief angle
- back clearance angle
- back relief angle
- back-off angle
- base helix angle
- base lead angle
- base spiral angle
- basic cone angle
- beam angle
- bell angle
- belt angle
- bend angle
- bending angle
- bent angle
- bevel lead angle
- bias angle
- blade angle
- block angle
- blunt angle
- central angle
- chamfer angle
- characteristic angle
- check angle
- clearance angle
- closed angle
- closed-loop phase angle
- complemental angle
- complementary angle
- compound angles
- cone angle
- cone-generating angle
- conjugate angle
- contact angle
- convergence angle
- corner angle
- correction angle
- corresponding angles
- countersink angle
- cradle angle
- crank angle
- critical angle
- critical error angle
- crossed axes angle
- cutter eccentric angle
- cutter space angle
- cutter tip angle
- cutting angle
- cutting edge angle
- cutting relief angle
- cutting-point angle
- declivity angle
- dedendum angle
- deflection angle
- delay angle
- diffusor angle
- dihedral angle
- direction angle
- dish angle
- displacement angle
- double-access angle
- draft angle
- dropping angle
- dual angle
- effective angle
- electrical angle
- end cutting edge angle
- end relief angle
- entering angle
- entrance blade angle
- equal angle
- equilateral angle
- Euler angles
- exit blade angle
- external angle
- external pressure angle of the inserted blades
- face angle
- face cutting edge angle
- face sharpening angle
- feed angle
- feed motion angle
- feeding angle
- flank angle
- flank clearance angle
- fluid inlet angle
- fluid outlet angle
- form relief angle
- front clearance angle
- front rake angle
- frontal approach angle
- frontal clearance angle
- fuel jet direct axis angle
- fuel jet dispersion angle
- fuel jets dispersion angle
- gable angle
- gash angle
- gear face angle
- generating angle
- gliding angle
- grade angle
- gripping angle
- groove angle
- half angle of thread
- half-point angle
- helix angle
- hi-side pressure angle
- hook angle
- inclination angle
- included angle
- inlet angle
- inner spiral angle
- inscribed angle
- interfacial angle
- interior angle
- internal angle
- internal pressure angle of the inserted blades
- intersection angle
- involute polar angle
- joint angle
- kinematic pitch angle
- L-angle
- laser beam intensity divergence angle
- laser beam tilt angle
- lead angle
- level angle
- lifting angle
- limit angle
- limit pressure angle
- lip angle
- lip normal clearance angle
- lip side clearance angle
- locking angle
- lower plane angle
- main clearance angle
- major cutting edge angle
- measuring shaft angle
- milling angle
- minor cutting edge angle
- miter angle
- negative-rake angle
- nip angle
- nominal measuring shaft angle
- nominal pressure angle
- non-equilateral angle
- nonlocking angle
- normal pressure angle
- normal wedge angle
- nozzle angle
- oblique angle
- obtuse angle
- offset angle
- open-loop phase angle
- opposite angle
- orthogonal wedge angle
- outside angle
- outside helix angle
- outside lead angle
- overlap angle
- peripheral relief angle
- phase angle
- pipe angle
- pitch angle
- pitch lead angle
- plan relief angle
- plan trail angle
- plane angle
- plate angle
- point angle
- polar angle
- precession angle
- pressure angle
- primary angle
- profile angle
- projected angle
- quick helix angle
- radial rake angle
- radial relief angle
- rake angle
- reference cone angle
- relief angle
- repose angle
- resultant cutting speed angle
- retardation angle
- right angle
- robot joint angles
- roll angle
- rolling pressure angle
- root angle
- rotation angle
- rotational angle
- round angle
- scarfing angle
- secondary angle
- self-releasing angle
- semiapex angle
- semicone angle
- semivertex angle
- semivertical angle
- set angle
- setting angle
- shaft angle
- sharpening angle
- shear angle
- side relief angle
- side-cutting edge angle
- sliding angle
- slotted angle
- slow helix angle
- solid angle
- space-width half angle
- spherical angle
- spindle rotation angle
- spiral angle
- standard pressure angle
- static angle of friction
- straight angle
- striking angle
- subcritical angle
- supercritical angle
- switching angle
- swivel angle
- table angle
- taper angle
- thread angle
- thrust angle
- tilt angle
- tilting angle
- tip angle
- tip cone angle
- tool approach angle
- tool cutting edge angle
- tool included angle
- tool lead angle
- tool orthogonal wedge angle
- tooth space angle
- tooth spacing angle
- tooth thickness half angle
- torsion angle
- turning angle
- twist angle
- unbalance angle
- unit rotational angle
- upper plane angle
- vane angle
- viewing angle
- visual angle
- vulcanized splice bias angle
- wedge angle
- wide angle
- windup angle
- working angle
- working cutting edge angle
- working lead angle
- working pressure angle
- working wedge angle
- working-approach angle
- worm face angle
- wrapping angle
- zero angleEnglish-Russian dictionary of mechanical engineering and automation > angle
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5 Shannon, Claude Elwood
[br]b. 30 April 1916 Gaylord, Michigan, USA[br]American mathematician, creator of information theory.[br]As a child, Shannon tinkered with radio kits and enjoyed solving puzzles, particularly crypto-graphic ones. He graduated from the University of Michigan in 1936 with a Bachelor of Science in mathematics and electrical engineering, and earned his Master's degree from the Massachusetts Institute of Technology (MIT) in 1937. His thesis on applying Boolean algebra to switching circuits has since been acclaimed as possibly the most significant this century. Shannon earned his PhD in mathematics from MIT in 1940 with a dissertation on the mathematics of genetic transmission.Shannon spent a year at the Institute for Advanced Study in Princeton, then in 1941 joined Bell Telephone Laboratories, where he began studying the relative efficiency of alternative transmission systems. Work on digital encryption systems during the Second World War led him to think that just as ciphers hide information from the enemy, "encoding" information could also protect it from noise. About 1948, he decided that the amount of information was best expressed quantitatively in a two-value number system, using only the digits 0 and 1. John Tukey, a Princeton colleague, named these units "binary digits" (or, for short, "bits"). Almost all digital computers and communications systems use such on-off, or two-state logic as their basis of operation.Also in the 1940s, building on the work of H. Nyquist and R.V.L. Hartley, Shannon proved that there was an upper limit to the amount of information that could be transmitted through a communications channel in a unit of time, which could be approached but never reached because real transmissions are subject to interference (noise). This was the beginning of information theory, which has been used by others in attempts to quantify many sciences and technologies, as well as subjects in the humanities, but with mixed results. Before 1970, when integrated circuits were developed, Shannon's theory was not the preferred circuit-and-transmission design tool it has since become.Shannon was also a pioneer in the field of artificial intelligence, claiming that computing machines could be used to manipulate symbols as well as do calculations. His 1953 paper on computers and automata proposed that digital computers were capable of tasks then thought exclusively the province of living organisms. In 1956 he left Bell Laboratories to join the MIT faculty as Professor of Communications Science.On the lighter side, Shannon has built many devices that play games, and in particular has made a scientific study of juggling.[br]Principal Honours and DistinctionsNational Medal of Science. Institute of Electrical and Electronics Engineers Medal of Honor, Kyoto Prize.BibliographyHis seminal paper (on what has subsequently become known as information theory) was entitled "The mathematical theory of communications", first published in Bell System Technical Journal in 1948; it is also available in a monograph (written with Warren Weaver) published by the University of Illinois Press in 1949, and in Key Papers in the Development of Information Theory, ed. David Slepian, IEEE Press, 1974, 1988. For readers who want all of Shannon's works, see N.J.A.Sloane and A.D.Wyner, 1992, TheCollected Papers of Claude E.Shannon.HO
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