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1 large bell diameter
English-Russian big polytechnic dictionary > large bell diameter
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2 large bell diameter
Англо-русский металлургический словарь > large bell diameter
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3 large bell diameter
Металлургия: диаметр большого конуса -
4 distributing bell
English-Russian big polytechnic dictionary > distributing bell
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5 manganese steel small bell
English-Russian big polytechnic dictionary > manganese steel small bell
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6 top bell
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7 диаметр большого конуса
Русско-английский новый политехнический словарь > диаметр большого конуса
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8 балансир конуса
Русско-английский новый политехнический словарь > балансир конуса
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9 большой
1. bulky2. heavyиметь большой вес; быть тяжёлым — to be heavy
3. king-size4. wide5. hulk6. more7. large scale8. large-scale9. major10. semimajor11. builky12. grand«единоличное большое жюри» — one-man grand jury
13. big; large; great; grownup«Большой Бен» — Big Ben
«Большой шок » — Big Bang
14. considerable15. great16. gross17. largeбольшой размер; большого размера — large size
Синонимический ряд:1. большущий (прил.) большущий; великовозрастной; великовозрастною; великовозрастный; здоровенной; здоровенною; здоровенный; здоровой; здоровою; здоровущий; здоровый; знатной; знатною; знатный; крупной; крупною; крупный; немалой; немалою2. взрослый (прил.) взрослый; старшей; старшею; старший3. глубокий (прил.) глубокий; сильной; сильною4. немалый (прил.) великий; великой; великою; гигантский; грандиозной; грандиозною; грандиозный; громадной; громадною; громадный; колоссальной; колоссальною; колоссальный; немалый; огромной; огромною; огромный5. сильный (прил.) могучей; могучею; могучий; мощной; мощною; мощный; сильныйАнтонимический ряд:крохотной; крохотною; крохотный; маленький; маленькой; маленькою; малой; малою; малый -
10 диаметр большого конуса
Metallurgy: large bell diameterУниверсальный русско-английский словарь > диаметр большого конуса
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11 диаметр малого конуса
Русско-английский новый политехнический словарь > диаметр малого конуса
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12 hole
1. скважина, ствол скважины || бурить скважину2. отверстие; дыра || просверливать, делать отверстие3. шурф, выработка малого сечения || закладывать шпуры4. проушина— big hole— bug hole— dib hole— dry hole— end hole— hole in— key hole— pin hole— rat hole— top hole— up hole— wet hole
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1. скважина2. отверстие— dry hole— wet hole
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1. отверстие; перфорация
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1) скважина; буровая скважина; ствол скважины2) шпур || закладывать шпур3) отверстие ()•hole full of oil — скважина заполнена нефтью;
hole full of salt water — ствол, заполненный солёной водой;
hole full of sulfur water — ствол, заполненный водой, содержащей сероводород;
hole full of water — скважина заполнена водой;
hole gone to water — нефтяная скважина, из которой стала поступать только вода;
to cut a hole — бурить скважину;
to drill a hole — бурить скважину;
to flush a hole — промывать ствол скважины;
to hole in — забуривать скважину;
to keep the hole of gage — поддерживать диаметр ствола скважины близким к номинальному;
to line the hole — крепить скважину обсадной колонны;
to make a hole — бурить скважину; давать проходку, вести проходку;
to open a hole — разбуривать башмак обсадной колонны;
to ream hole — расширять ствол скважины;
to seal a hole — закрывать скважину;
to wash a hole — промывать ствол скважины;
- air holewent back in a hole — вновь спущенный в скважину;
- angled hole
- angled snubbing hole
- angular hole
- auger hole
- bare hole
- barren hole
- bell hole
- bench hole
- big hole
- blank hole
- blast hole
- bleed hole
- blind hole
- bore hole
- bottom hole
- branch hole
- bridged hole
- bug hole
- bung hole
- cable-tool hole
- cased hole
- caved hole
- cave-obstructed hole
- casing hole
- caving hole
- center hole
- charge hole
- churn-drill hole
- circulating hole
- clean hole
- collared hole
- conductor hole
- consolidation hole
- core hole
- cover hole
- crooked hole
- curtain hole
- curved hole
- curving hole
- cushion hole
- dead-end hole
- deadman hole
- deep hole
- definition hole
- deviating hole
- deviated hole
- dia hole
- diamond drilling hole
- dib hole
- dip hole
- directional hole
- discharge hole
- discovery hole
- dog-leg hole
- down hole
- downward sloping hole
- drain hole
- drain branch hole
- drill hole
- drilled hole
- dry hole
- dry hole drilled deeper
- dry hole reentered
- easier hole
- electron beam hole
- elliptical cross-section hole
- elongated cross-section hole
- empty hole
- end hole
- escape hole
- exit hole
- exploration drill hole
- exploratory hole
- favorable-size hole
- filled hole
- filler hole
- filling hole
- flat hole
- fluid-filled hole
- flushing hole
- follow-up hole
- freeze hole
- full-gage hole
- full-gage branch hole
- gage hole
- gas-escape hole
- gas-filled hole
- geophone hole
- gone-off hole
- grout hole
- guide hole
- hammer-drill hole
- high-angle hole
- high-pressure hole
- horizontal hole
- horizontally branched hole
- inclined hole
- in-gage hole
- injected hole
- inspection hole
- intentionally deviated hole
- intermediate hole
- investigation hole
- jet hole
- junked hole
- kelly hole
- kelly rat hole
- key hole
- key seated hole
- large-size hole
- limber hole
- line hole
- lined hole
- liquid-filled hole
- long hole
- lost hole
- lubrication hole
- main hole
- meteorite hole
- mining hole
- misdirected hole
- monitoring hole
- mouse hole
- multiple shot holes
- naked hole
- near gage hole
- observation hole
- offshore hole
- old hole
- open hole
- open-end hole
- original hole
- outlet hole
- out-of-gage hole
- oval-shaped hole
- oversized hole
- parent hole
- pattern holes
- percussion hole
- percussion test hole
- perforated hole
- pilot hole
- pin hole
- plug hole
- pointed-out hole
- post hole
- powder hole
- probe hole
- production hole
- prospecting hole
- protection hole
- province hole
- proving hole
- rat hole
- record hole
- relief hole
- rifled hole
- ring holes
- roof hole
- rough hole
- round hole
- rugose hole
- rust hole
- scout hole
- screen hole
- security hole
- short hole
- shot hole
- shot-drill hole
- shot-open hole
- shrinkage hole
- side hole
- side water hole
- sight hole
- slab hole
- slant hole
- slim hole
- small hole
- small diameter hole
- snake hole
- spiral hole
- spudded-in hole
- sticky hole
- straight hole
- stratigraphic hole
- sump hole
- surface hole
- tapped hole
- tapping hole
- test hole
- thief hole
- threaded hole
- through hole
- tight hole
- top hole
- uncased hole
- undergage hole
- undersized hole
- unfair hole
- up hole
- upward hole
- upward pointing hole
- velocity-test hole
- vertical hole
- vug hole
- washout hole
- water hole
- water-filled hole
- weep hole
- well drill hole
- wet hole
- woodpecker hole* * *• проушина -
13 Pierce, John Robinson
[br]b. 27 March 1910 Des Moines, Iowa, USA[br]American scientist and communications engineer said to be the "father" of communication satellites.[br]From his high-school days, Pierce showed an interest in science and in science fiction, writing under the pseudonym of J.J.Coupling. After gaining Bachelor's, Master's and PhD degrees at the California Institute of Technology (CalTech) in Pasadena in 1933, 1934 and 1936, respectively, Pierce joined the Bell Telephone Laboratories in New York City in 1936. There he worked on improvements to the travelling-wave tube, in which the passage of a beam of electrons through a helical transmission line at around 7 per cent of the speed of light was made to provide amplification at 860 MHz. He also devised a new form of electrostatically focused electron-multiplier which formed the basis of a sensitive detector of radiation. However, his main contribution to electronics at this time was the invention of the Pierce electron gun—a method of producing a high-density electron beam. In the Second World War he worked with McNally and Shepherd on the development of a low-voltage reflex klystron oscillator that was applied to military radar equipment.In 1952 he became Director of Electronic Research at the Bell Laboratories' establishment, Murray Hill, New Jersey. Within two years he had begun work on the possibility of round-the-world relay of signals by means of communication satellites, an idea anticipated in his early science-fiction writings (and by Arthur C. Clarke in 1945), and in 1955 he published a paper in which he examined various possibilities for communications satellites, including passive and active satellites in synchronous and non-synchronous orbits. In 1960 he used the National Aeronautics and Space Administration 30 m (98 1/2 ft) diameter, aluminium-coated Echo 1 balloon satellite to reflect telephone signals back to earth. The success of this led to the launching in 1962 of the first active relay satellite (Telstar), which weighed 170 lb (77 kg) and contained solar-powered rechargeable batteries, 1,000 transistors and a travelling-wave tube capable of amplifying the signal 10,000 times. With a maximum orbital height of 3,500 miles (5,600 km), this enabled a variety of signals, including full bandwidth television, to be relayed from the USA to large receiving dishes in Europe.From 1971 until his "retirement" in 1979, Pierce was Professor of Electrical Engineering at CalTech, after which he became Chief Technologist at the Jet Propulsion Laboratories, also in Pasadena, and Emeritus Professor of Engineering at Stanford University.[br]Principal Honours and DistinctionsInstitute of Electrical and Electronics Engineers Morris N.Liebmann Memorial Award 1947; Edison Medal 1963; Medal of Honour 1975. Franklin Institute Stuart Ballantine Award 1960. National Medal of Science 1963. Danish Academy of Science Valdemar Poulsen Medal 1963. Marconi Award 1974. National Academy of Engineering Founders Award 1977. Japan Prize 1985. Arthur C.Clarke Award 1987. Honorary DEng Newark College of Engineering 1961. Honorary DSc Northwest University 1961, Yale 1963, Brooklyn Polytechnic Institute 1963. Editor, Proceedings of the Institute of Radio Engineers 1954–5.Bibliography23 October 1956, US patent no. 2,768,328 (his development of the travelling-wave tube, filed on 5 November 1946).1947, with L.M.Field, "Travelling wave tubes", Proceedings of the Institute of RadioEngineers 35:108 (describes the pioneering improvements to the travelling-wave tube). 1947, "Theory of the beam-type travelling wave tube", Proceedings of the Institution ofRadio Engineers 35:111. 1950, Travelling Wave Tubes.1956, Electronic Waves and Messages. 1962, Symbols, Signals and Noise.1981, An Introduction to Information Theory: Symbols, Signals and Noise: Dover Publications.1990, with M.A.Knoll, Signals: Revolution in Electronic Communication: W.H.Freeman.KF
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