-
1 first oscillation
Автоматика: основное колебание -
2 first oscillation
English-Russian dictionary of mechanical engineering and automation > first oscillation
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3 first oscillation
-
4 first oscillation
English-Russian dictionary of machine parts > first oscillation
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5 oscillation
1) колебание; колебания; вибрация; качание2) генерация•- antiphase oscillation
- constrained oscillations
- continuous oscillation
- continuous oscillations
- coupled oscillations
- damped oscillation
- damped oscillations
- decaying oscillation
- decaying oscillations
- dying oscillation
- dying oscillations
- first oscillation
- forced oscillation
- free laser oscillation
- free oscillations
- harmonic oscillation
- increasing oscillation
- in-phase oscillations
- latent oscillation
- latent oscillations
- lateral oscillation
- lateral oscillations
- longitudinal oscillations
- mechanical oscillation
- natural oscillation
- natural oscillations
- periodic oscillation
- quasi-periodic oscillation
- see-sawing oscillation
- self-excited oscillation
- self-sustained oscillation
- sound oscillations
- steady oscillation
- subresonance oscillation
- superresonance oscillation
- sustained oscillation
- synchronous oscillation
- torsional oscillation
- transient oscillations
- transverse oscillation
- uncoupled oscillations
- undamped oscillation
- undamped oscillations
- unstable oscillationEnglish-Russian dictionary of mechanical engineering and automation > oscillation
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6 oscillation
колебательное движение; колебание; тряска; качание; вибрация; вибрирование; осцилляция; генерация- oscillation counter - oscillation frequency - oscillation period - suppress parasitic oscillations - first oscillation - longitudinal oscillations - natural oscillations - parasitic oscillations - pendular oscillations - relaxation oscillations - sound oscillations - torsional oscillations - self-excited oscillations - undamped oscillations -
7 first harmonic oscillation
Строительство: основное колебание, первая гармоникаУниверсальный англо-русский словарь > first harmonic oscillation
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8 first-type oscillation mode
Телекоммуникации: режим колебаний первого родаУниверсальный англо-русский словарь > first-type oscillation mode
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9 first-type oscillation mode
English-Russian dictionary of telecommunications and their abbreviations > first-type oscillation mode
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10 Huygens, Christiaan
SUBJECT AREA: Horology[br]b. 14 April 1629 The Hague, the Netherlandsd. 8 June 1695 The Hague, the Netherlands[br]Dutch scientist who was responsible for two of the greatest advances in horology: the successful application of both the pendulum to the clock and the balance spring to the watch.[br]Huygens was born into a cultured and privileged class. His father, Constantijn, was a poet and statesman who had wide interests. Constantijn exerted a strong influence on his son, who was educated at home until he reached the age of 16. Christiaan studied law and mathematics at Ley den University from 1645 to 1647, and continued his studies at the Collegium Arausiacum in Breda until 1649. He then lived at The Hague, where he had the means to devote his time entirely to study. In 1666 he became a Member of the Académie des Sciences in Paris and settled there until his return to The Hague in 1681. He also had a close relationship with the Royal Society and visited London on three occasions, meeting Newton on his last visit in 1689. Huygens had a wide range of interests and made significant contributions in mathematics, astronomy, optics and mechanics. He also made technical advances in optical instruments and horology.Despite the efforts of Burgi there had been no significant improvement in the performance of ordinary clocks and watches from their inception to Huygens's time, as they were controlled by foliots or balances which had no natural period of oscillation. The pendulum appeared to offer a means of improvement as it had a natural period of oscillation that was almost independent of amplitude. Galileo Galilei had already pioneered the use of a freely suspended pendulum for timing events, but it was by no means obvious how it could be kept swinging and used to control a clock. Towards the end of his life Galileo described such a. mechanism to his son Vincenzio, who constructed a model after his father's death, although it was not completed when he himself died in 1642. This model appears to have been copied in Italy, but it had little influence on horology, partly because of the circumstances in which it was produced and possibly also because it differed radically from clocks of that period. The crucial event occurred on Christmas Day 1656 when Huygens, quite independently, succeeded in adapting an existing spring-driven table clock so that it was not only controlled by a pendulum but also kept it swinging. In the following year he was granted a privilege or patent for this clock, and several were made by the clockmaker Salomon Coster of The Hague. The use of the pendulum produced a dramatic improvement in timekeeping, reducing the daily error from minutes to seconds, but Huygens was aware that the pendulum was not truly isochronous. This error was magnified by the use of the existing verge escapement, which made the pendulum swing through a large arc. He overcame this defect very elegantly by fitting cheeks at the pendulum suspension point, progressively reducing the effective length of the pendulum as the amplitude increased. Initially the cheeks were shaped empirically, but he was later able to show that they should have a cycloidal shape. The cheeks were not adopted universally because they introduced other defects, and the problem was eventually solved more prosaically by way of new escapements which reduced the swing of the pendulum. Huygens's clocks had another innovatory feature: maintaining power, which kept the clock going while it was being wound.Pendulums could not be used for portable timepieces, which continued to use balances despite their deficiencies. Robert Hooke was probably the first to apply a spring to the balance, but his efforts were not successful. From his work on the pendulum Huygens was well aware of the conditions necessary for isochronism in a vibrating system, and in January 1675, with a flash of inspiration, he realized that this could be achieved by controlling the oscillations of the balance with a spiral spring, an arrangement that is still used in mechanical watches. The first model was made for Huygens in Paris by the clockmaker Isaac Thuret, who attempted to appropriate the invention and patent it himself. Huygens had for many years been trying unsuccessfully to adapt the pendulum clock for use at sea (in order to determine longitude), and he hoped that a balance-spring timekeeper might be better suited for this purpose. However, he was disillusioned as its timekeeping proved to be much more susceptible to changes in temperature than that of the pendulum clock.[br]Principal Honours and DistinctionsFRS 1663. Member of the Académie Royale des Sciences 1666.BibliographyFor his complete works, see Oeuvres complètes de Christian Huygens, 1888–1950, 22 vols, The Hague.1658, Horologium, The Hague; repub., 1970, trans. E.L.Edwardes, AntiquarianHorology 7:35–55 (describes the pendulum clock).1673, Horologium Oscillatorium, Paris; repub., 1986, The Pendulum Clock or Demonstrations Concerning the Motion ofPendula as Applied to Clocks, trans.R.J.Blackwell, Ames.The balance spring watch was first described in Journal des Sçavans 25 February 1675, and translated in Philosophical Transactions of the Royal Society (1675) 4:272–3.Further ReadingH.J.M.Bos, 1972, Dictionary of Scientific Biography, ed. C.C.Gillispie, Vol. 6, New York, pp. 597–613 (for a fuller account of his life and scientific work, but note the incorrect date of his death).R.Plomp, 1979, Spring-Driven Dutch Pendulum Clocks, 1657–1710, Schiedam (describes Huygens's application of the pendulum to the clock).S.A.Bedini, 1991, The Pulse of Time, Florence (describes Galileo's contribution of the pendulum to the clock).J.H.Leopold, 1982, "L"Invention par Christiaan Huygens du ressort spiral réglant pour les montres', Huygens et la France, Paris, pp. 154–7 (describes the application of the balance spring to the watch).A.R.Hall, 1978, "Horology and criticism", Studia Copernica 16:261–81 (discusses Hooke's contribution).DV -
11 mode
1) режим2) состояние3) мода, тип ( волны)•- acoustic mode
- active mode
- adaptive mode
- alternate mode
- ANS/FAX mode
- answering mode
- assemble mode
- asymmetrical mode
- asynchronous balanced mode
- asynchronous transfer mode
- authorized reception mode
- auto document mode
- autoinformer mode
- automatic mode
- automatic reception mode
- auto-night mode
- backup mode
- basic control mode
- biharmonical mode
- bound mode
- buffer mode
- byte mode
- center mark mode
- channel mode
- circuit-transfer mode
- cladding mode
- client-server mode
- coasting mode
- combined mode
- command mode
- common mode
- communication mode
- confidential mode
- continuous emission mode
- continuous mode
- conversational mode
- correction mode
- coupled modes
- cutoff mode
- data mode
- data-processing mode
- day/night mode
- delayed ARM mode
- DEMO mode
- detail mode
- detection mode
- direct sending mode
- display mode
- dual mode
- duplex mode
- erase mode
- evanescent mode
- executive mode
- expansion modes
- external synchronization mode
- Fax mode
- fine mode
- first-type oscillation mode
- forced mode
- frame mode
- fundamental mode
- generator mode
- ghost mode
- group mode
- guard mode
- half-duplex mode
- half-speed mode
- half-tone mode
- hierarchical mode
- high-power mode
- holding mode
- hollow-beam mode
- home-only mode
- hybrid mode
- idling mode
- instant ARM mode
- internal synchronization mode
- interrupt mode
- interruptible current mode
- inversed mode
- key mode
- landscape mode
- leaky mode
- light-tensioned mode
- limiting mode
- linear mode
- line-art mode
- line-hold mode
- line-holding mode
- listening mode
- local mode
- lock mode
- long-distance mode
- long-play mode
- long-time mode
- loudly mode
- low signal mode
- lugdown mode
- macroblock mode
- magnetostatic mode
- manual mode
- master mode
- matched operation mode
- matching mode
- memory lock mode
- minimal mode
- mode of behavior
- modulated mode
- monitor mode
- mono mode
- multicopy mode
- multiplex mode
- multipoint mode
- multisort document reception mode
- net mode
- nonpublic mode
- nontransparent mode
- normal mode
- off mode
- off-normal mode
- on-line mode
- on-link mode
- open-phase mode
- operating mode
- orthonormal modes
- overseas mode
- overtensioned mode
- parallel mode
- part load mode
- partial load mode
- peak mode
- periodic mode
- phone-only mode
- photo mode
- photodiode mode
- photogalvanic mode
- phototransistor mode
- pilot mode
- playback mode
- polling reception mode
- polling standby mode
- polling-transmission mode
- portrait mode
- potential mode
- precritical mode
- prediction mode
- printer mode
- private mode
- propagation mode
- pulsed mode
- quasi-cyclic mode
- quasi-key mode
- quick-record mode
- radiation mode
- rated power mode
- real-time mode
- receive mode
- recursive short-time mode
- redial mode
- remote-receiving mode
- rental mode
- rest mode
- reversing mode
- running-wave mode
- sample-and-hold mode
- saturation mode
- save dial mode
- scan mode
- second-type oscillation mode
- self-exciting oscillation mode
- self-oscillating mode
- send later mode
- sequential lossless mode
- serial mode
- series mode
- servicing mode
- setup mode
- shared fax mode
- short-time mode
- silence detection mode
- silently mode
- sleep mode
- soft self-exciting mode
- soft-control mode
- soft-controlling mode
- sound mode
- special scanning mode
- standard mode
- standby mode
- standing wave mode
- start mode
- starting mode
- start-stop mode
- stereo mode
- stop mode
- storage mode
- substitute reception mode
- superfine mode
- switching mode
- symmetrical mode
- synchronous-transfer mode
- synchronous-transmission mode
- TEL mode
- TEL/FAX mode
- telegraph mode
- telephone mode
- tensioned mode
- transfer mode
- transmission dead-line mode
- transmission mode
- transverse electric-and-magnetic mode
- transverse magnetic mode
- transverse-electric mode
- traveling wave mode
- triggering mode
- tuning mode
- uncoupled modes
- undertensioned mode
- unlock mode
- unstable mode
- valve mode
- vibrating mode
- voice-call mode
- waiting mode
- winding mode
- wireless-access mode
- XX modeEnglish-Russian dictionary of telecommunications and their abbreviations > mode
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12 Armstrong, Edwin Howard
[br]b. 18 December 1890 New York City, New York, USAd. 31 January 1954 New York City, New York, USA[br]American engineer who invented the regenerative and superheterodyne amplifiers and frequency modulation, all major contributions to radio communication and broadcasting.[br]Interested from childhood in anything mechanical, as a teenager Armstrong constructed a variety of wireless equipment in the attic of his parents' home, including spark-gap transmitters and receivers with iron-filing "coherer" detectors capable of producing weak Morse-code signals. In 1912, while still a student of engineering at Columbia University, he applied positive, i.e. regenerative, feedback to a Lee De Forest triode amplifier to just below the point of oscillation and obtained a gain of some 1,000 times, giving a receiver sensitivity very much greater than hitherto possible. Furthermore, by allowing the circuit to go into full oscillation he found he could generate stable continuous-waves, making possible the first reliable CW radio transmitter. Sadly, his claim to priority with this invention, for which he filed US patents in 1913, the year he graduated from Columbia, led to many years of litigation with De Forest, to whom the US Supreme Court finally, but unjustly, awarded the patent in 1934. The engineering world clearly did not agree with this decision, for the Institution of Radio Engineers did not revoke its previous award of a gold medal and he subsequently received the highest US scientific award, the Franklin Medal, for this discovery.During the First World War, after some time as an instructor at Columbia University, he joined the US Signal Corps laboratories in Paris, where in 1918 he invented the superheterodyne, a major contribution to radio-receiver design and for which he filed a patent in 1920. The principle of this circuit, which underlies virtually all modern radio, TV and radar reception, is that by using a local oscillator to convert, or "heterodyne", a wanted signal to a lower, fixed, "intermediate" frequency it is possible to obtain high amplification and selectivity without the need to "track" the tuning of numerous variable circuits.Returning to Columbia after the war and eventually becoming Professor of Electrical Engineering, he made a fortune from the sale of his patent rights and used part of his wealth to fund his own research into further problems in radio communication, particularly that of receiver noise. In 1933 he filed four patents covering the use of wide-band frequency modulation (FM) to achieve low-noise, high-fidelity sound broadcasting, but unable to interest RCA he eventually built a complete broadcast transmitter at his own expense in 1939 to prove the advantages of his system. Unfortunately, there followed another long battle to protect and exploit his patents, and exhausted and virtually ruined he took his own life in 1954, just as the use of FM became an established technique.[br]Principal Honours and DistinctionsInstitution of Radio Engineers Medal of Honour 1917. Franklin Medal 1937. IERE Edison Medal 1942. American Medal for Merit 1947.Bibliography1922, "Some recent developments in regenerative circuits", Proceedings of the Institute of Radio Engineers 10:244.1924, "The superheterodyne. Its origin, developments and some recent improvements", Proceedings of the Institute of Radio Engineers 12:549.1936, "A method of reducing disturbances in radio signalling by a system of frequency modulation", Proceedings of the Institute of Radio Engineers 24:689.Further ReadingL.Lessing, 1956, Man of High-Fidelity: Edwin Howard Armstrong, pbk 1969 (the only definitive biography).W.R.Maclaurin and R.J.Harman, 1949, Invention \& Innovation in the Radio Industry.J.R.Whitehead, 1950, Super-regenerative Receivers.A.N.Goldsmith, 1948, Frequency Modulation (for the background to the development of frequency modulation, in the form of a large collection of papers and an extensive bibliog raphy).KFBiographical history of technology > Armstrong, Edwin Howard
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13 Graham, George
SUBJECT AREA: Horology[br]b. c.1674 Cumberland, Englandd. 16 November 1751 London, England[br]English watch-and clockmaker who invented the cylinder escapement for watches, the first successful dead-beat escapement for clocks and the mercury compensation pendulum.[br]Graham's father died soon after his birth, so he was raised by his brother. In 1688 he was apprenticed to the London clockmaker Henry Aske, and in 1695 he gained his freedom. He was employed as a journeyman by Tompion in 1696 and later married his niece. In 1711 he formed a partnership with Tompion and effectively ran the business in Tompion's declining years; he took over the business after Tompion died in 1713. In addition to his horological interests he also made scientific instruments, specializing in those for astronomical use. As a person, he was well respected and appears to have lived up to the epithet "Honest George Graham". He befriended John Harrison when he first went to London and lent him money to further his researches at a time when they might have conflicted with his own interests.The two common forms of escapement in use in Graham's time, the anchor escapement for clocks and the verge escapement for watches, shared the same weakness: they interfered severely with the free oscillation of the pendulum and the balance, and thus adversely affected the timekeeping. Tompion's two frictional rest escapements, the dead-beat for clocks and the horizontal for watches, had provided a partial solution by eliminating recoil (the momentary reversal of the motion of the timepiece), but they had not been successful in practice. Around 1720 Graham produced his own much improved version of the dead-beat escapement which became a standard feature of regulator clocks, at least in Britain, until its supremacy was challenged at the end of the nineteenth century by the superior accuracy of the Riefler clock. Another feature of the regulator clock owed to Graham was the mercury compensation pendulum, which he invented in 1722 and published four years later. The bob of this pendulum contained mercury, the surface of which rose or fell with changes in temperature, compensating for the concomitant variation in the length of the pendulum rod. Graham devised his mercury pendulum after he had failed to achieve compensation by means of the difference in expansion between various metals. He then turned his attention to improving Tompion's horizontal escapement, and by 1725 the cylinder escapement existed in what was virtually its final form. From the following year he fitted this escapement to all his watches, and it was also used extensively by London makers for their precision watches. It proved to be somewhat lacking in durability, but this problem was overcome later in the century by using a ruby cylinder, notably by Abraham Louis Breguet. It was revived, in a cheaper form, by the Swiss and the French in the nineteenth century and was produced in vast quantities.[br]Principal Honours and DistinctionsFRS 1720. Master of the Clockmakers' Company 1722.BibliographyGraham contributed many papers to the Philosophical Transactions of the Royal Society, in particular "A contrivance to avoid the irregularities in a clock's motion occasion'd by the action of heat and cold upon the rod of the pendulum" (1726) 34:40–4.Further ReadingBritten's Watch \& Clock Maker's Handbook Dictionary and Guide, 1978, rev. Richard Good, 16th edn, London, pp. 81, 84, 232 (for a technical description of the dead-beat and cylinder escapements and the mercury compensation pendulum).A.J.Turner, 1972, "The introduction of the dead-beat escapement: a new document", Antiquarian Horology 8:71.E.A.Battison, 1972, biography, Biographical Dictionary of Science, ed. C.C.Gillespie, Vol. V, New York, 490–2 (contains a résumé of Graham's non-horological activities).DV -
14 Herbert, Edward Geisler
[br]b. 23 March 1869 Dedham, near Colchester, Essex, Englandd. 9 February 1938 West Didsbury, Manchester, England[br]English engineer, inventor of the Rapidor saw and the Pendulum Hardness Tester, and pioneer of cutting tool research.[br]Edward Geisler Herbert was educated at Nottingham High School in 1876–87, and at University College, London, in 1887–90, graduating with a BSc in Physics in 1889 and remaining for a further year to take an engineering course. He began his career as a premium apprentice at the Nottingham works of Messrs James Hill \& Co, manufacturers of lace machinery. In 1892 he became a partner with Charles Richardson in the firm of Richardson \& Herbert, electrical engineers in Manchester, and when this partnership was dissolved in 1895 he carried on the business in his own name and began to produce machine tools. He remained as Managing Director of this firm, reconstituted in 1902 as a limited liability company styled Edward G.Herbert Ltd, until his retirement in 1928. He was joined by Charles Fletcher (1868–1930), who as joint Managing Director contributed greatly to the commercial success of the firm, which specialized in the manufacture of small machine tools and testing machinery.Around 1900 Herbert had discovered that hacksaw machines cut very much quicker when only a few teeth are in operation, and in 1902 he patented a machine which utilized this concept by automatically changing the angle of incidence of the blade as cutting proceeded. These saws were commercially successful, but by 1912, when his original patents were approaching expiry, Herbert and Fletcher began to develop improved methods of applying the rapid-saw concept. From this work the well-known Rapidor and Manchester saws emerged soon after the First World War. A file-testing machine invented by Herbert before the war made an autographic record of the life and performance of the file and brought him into close contact with the file and tool steel manufacturers of Sheffield. A tool-steel testing machine, working like a lathe, was introduced when high-speed steel had just come into general use, and Herbert became a prominent member of the Cutting Tools Research Committee of the Institution of Mechanical Engineers in 1919, carrying out many investigations for that body and compiling four of its Reports published between 1927 and 1933. He was the first to conceive the idea of the "tool-work" thermocouple which allowed cutting tool temperatures to be accurately measured. For this advance he was awarded the Thomas Hawksley Gold Medal of the Institution in 1926.His best-known invention was the Pendulum Hardness Tester, introduced in 1923. This used a spherical indentor, which was rolled over, rather than being pushed into, the surface being examined, by a small, heavy, inverted pendulum. The period of oscillation of this pendulum provided a sensitive measurement of the specimen's hardness. Following this work Herbert introduced his "Cloudburst" surface hardening process, in which hardened steel engineering components were bombarded by steel balls moving at random in all directions at very high velocities like gaseous molecules. This treatment superhardened the surface of the components, improved their resistance to abrasion, and revealed any surface defects. After bombardment the hardness of the superficially hardened layers increased slowly and spontaneously by a room-temperature ageing process. After his retirement in 1928 Herbert devoted himself to a detailed study of the influence of intense magnetic fields on the hardening of steels.Herbert was a member of several learned societies, including the Manchester Association of Engineers, the Institute of Metals, the American Society of Mechanical Engineers and the Institution of Mechanical Engineers. He retained a seat on the Board of his company from his retirement until the end of his life.[br]Principal Honours and DistinctionsManchester Association of Engineers Butterworth Gold Medal 1923. Institution of Mechanical Engineers Thomas Hawksley Gold Medal 1926.BibliographyE.G.Herbert obtained several British and American patents and was the author of many papers, which are listed in T.M.Herbert (ed.), 1939, "The inventions of Edward Geisler Herbert: an autobiographical note", Proceedings of the Institution of Mechanical Engineers 141: 59–67.ASD / RTSBiographical history of technology > Herbert, Edward Geisler
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15 mode
2) мода, вид [форма, тип\] колебаний; вид [тип\] волн5) вчт. состояние6) швейн. мода•-
ablative pit-forming mode
-
abnormal mode
-
acceleration mode
-
access mode
-
accumulation mode
-
acoustic mode
-
acquisition mode
-
active mode
-
adaptive control mode
-
addressing mode
-
air-liquefaction mode
-
alternate mode
-
anticipation mode
-
approach mode
-
assemble mode
-
astable vibration mode
-
astable mode
-
automatic mode
-
automatic opening mode
-
automatic skinning mode
-
autopilot heading mode
-
autoposition mode
-
avalanche mode
-
axial mode
-
background mode
-
backward mode
-
backward propagating mode
-
backward scattering mode
-
backward scatter mode
-
backward traveling mode
-
bare resonator mode
-
basic mode
-
batch mode
-
birefringent mode
-
block mode
-
block-multiplex mode
-
bound modes
-
broadcast mode
-
buckling mode
-
burst mode
-
calibration mode
-
capture mode
-
cavity flipping mode
-
cavity mode
-
central mode
-
character generation mode
-
character mode
-
characteristic mode
-
charge-coupling mode
-
circularly polarized mode
-
cladding mode
-
clockwise polarized mode
-
coherently locked modes
-
cold mode
-
collective modes
-
command mode
-
common failure mode
-
common mode
-
compatibility mode
-
competing modes
-
compute mode
-
confined mode
-
constant cutting speed mode
-
constant speed mode
-
contention mode
-
continuous mode
-
continuous path mode
-
continuous-wave mode
-
contour modes
-
contradirectional modes
-
control mode
-
conversational mode
-
cooling mode
-
co-orbital mode
-
coplanar mode
-
core-guided mode
-
core mode
-
counterclockwise polarized mode
-
counterrotating circularly polarized modes
-
counting mode
-
coupled modes
-
cross polarized modes
-
cubic mode
-
current mode
-
current saving mode
-
cutoff mode
-
cutting mode
-
damped mode
-
data-processing mode
-
Debye-like mode
-
Debye mode
-
deceleration mode
-
deflected mode
-
degenerated mode
-
degenerate mode
-
depletion mode
-
design mode
-
dialog mode
-
difference mode
-
differential mode
-
diffraction-limited mode
-
diffusive mode
-
discrete mode
-
dispersion modes
-
display mode
-
distributed-feedback mode
-
DNC mode
-
dominant mode
-
double-pass mode
-
drift mode
-
dual-processing mode
-
duplex mode
-
dynamic mode
-
dynamic-scattering mode
-
E mode
-
edge mode
-
edit mode
-
eigen mode
-
electromagnetic mode
-
elementary mode
-
Emn mode
-
emulation mode
-
energy dissipating mode
-
enhancement mode
-
equal-loss modes
-
equally spaced modes
-
erase mode
-
evanescent mode
-
even mode
-
excited mode
-
exciting mode
-
executive mode
-
extensional mode
-
extraordinary mode
-
Fabry-Perot mode
-
face shear modes
-
fast mode
-
faulted mode
-
fiber mode
-
filamentary mode
-
first mode
-
flexural mode
-
forced mode
-
force mode
-
foreground mode
-
foreground-background mode
-
forward mode
-
forward propagating mode
-
forward scattering mode
-
forward scatter mode
-
forward shear mode
-
forward traveling mode
-
fracture mode
-
free-running mode
-
free-space mode
-
frequency-division multiplex mode
-
frequency-shift-keying mode
-
full program mode
-
full-duplex mode
-
fundamental mode
-
gated mode
-
gate mode
-
Gaussian mode
-
generator mode
-
go-ahead mode
-
graphics mode
-
graphic mode
-
guidance mode
-
guided-wave mode
-
guided mode
-
half-duplex mode
-
heating mode
-
height-lock mode
-
higher-order mode
-
high-frequency mode
-
high-loss mode
-
high-pass mode
-
high-resolution mode
-
Hmn mode
-
horizontally polarized mode
-
idler mode
-
independent mode
-
index mode
-
injected mode
-
injection-locked mode
-
in-phase modes
-
in-plane mode
-
insert mode
-
integer mode
-
interacting modes
-
interactive mode
-
internally trapped mode
-
interpretive mode
-
interrupt mode
-
inverter mode
-
isolated mode
-
jog mode
-
kernel mode
-
keyboard mode
-
laser mode
-
lasing mode
-
lattice mode
-
launched mode
-
leaking mode
-
leaky mode
-
left-hand polarized mode
-
left polarized mode
-
length extentional mode
-
length flexural mode
-
length modes
-
length-width flexural mode
-
light mode
-
linearly polarized mode
-
load mode
-
local mode
-
locate mode
-
lock mode
-
long coherence length mode
-
long wavelength mode
-
longitudinal mode
-
loopback mode
-
low-frequency mode
-
low-pass mode
-
low-resolution mode
-
lugdown mode
-
macro-by-macro mode
-
magnetron mode
-
main mode
-
malfunction mode
-
manual mode
-
manual skinning mode
-
mapping mode
-
maser mode
-
master mode
-
matched mode
-
measurement mode
-
message mode
-
mirror image mode
-
mixed mode
-
mode of behavior
-
mode of deformation
-
mode of excitation
-
mode of failure
-
mode of functioning
-
mode of propagation
-
mode of test
-
mode of transport
-
mode-locked mode
-
mode-match mode
-
monopulse mode
-
move mode
-
multiple-frame mode
-
multiplexed mode
-
multiplex mode
-
multitask mode
-
native mode
-
natural mode
-
nonaxial mode
-
noncounting mode
-
nondegenerate mode
-
nondegenerative mode
-
nonoscillating mode
-
nonpropagating mode
-
nonradiative mode
-
nonresonant mode
-
nonspiking mode
-
nontransparent mode
-
normal mode
-
odd mode
-
off mode
-
off-axis mode
-
off-design mode
-
off-line mode
-
off-normal mode
-
on-line mode
-
on-link mode
-
opening fracture mode
-
opening mode
-
operating mode
-
optical mode
-
ordinary mode
-
original mode
-
orthogonally polarized modes
-
oscillating mode
-
oscillation mode
-
oscillatory mode
-
out-of-plane mode
-
overtype mode
-
parallel mode
-
parametric mode
-
parasitic mode
-
partially suppressed mode
-
path following mode
-
path modifying mode
-
penetration mode
-
periodic mode
-
perturbed mode
-
photographing mode
-
photon-counting mode
-
pipelined mode
-
plane mode
-
plane polarized mode
-
plasma mode
-
plasma-guide mode
-
playback mode
-
point-to-point path mode
-
polarization mode
-
polarization-bistable mode
-
polarized mode
-
posttrigger mode
-
power-down mode
-
p-polarized mode
-
pretrigger mode
-
principal mode
-
priviledged mode
-
propagating mode
-
propagation mode
-
pulse counting mode
-
pulsed mode
-
pump mode
-
push-pull mode
-
Q-spoiled mode
-
Q-switched mode
-
quadrupole mode
-
quantum noise limited mode
-
radial mode
-
radially polarized mode
-
radiating mode
-
radiation mode
-
rail mode
-
ranging mode
-
ready mode
-
real-time mode
-
receive mode
-
record mode
-
rectifier mode
-
reflected mode
-
reflection mode
-
reflective mode
-
refracted mode
-
refrigeration mode
-
repetitive Q-switched mode
-
request mode
-
resonant mode
-
resonator mode
-
retropropulsion mode
-
return beam mode
-
reverse bias mode
-
reversible recording mode
-
right-hand polarized mode
-
right polarized mode
-
run mode
-
sample-and-hold mode
-
satellite mode
-
saturation mode
-
scanning mode
-
scan mode
-
scope mode
-
screen mode
-
search mode
-
selected mode
-
selector mode
-
self-ammoniation mode
-
self-heating mode
-
self-locked mode
-
self-Q-switched mode
-
self-refresh mode
-
self-reporting mode
-
self-trapping mode
-
serial mode
-
series mode
-
setup mode
-
severe wear mode
-
shear mode of crack initiation
-
shear mode
-
side mode
-
signal mode
-
simplex mode
-
simulation mode
-
single block mode
-
single mode
-
single Q-switched mode
-
single-channel mode
-
single-character mode
-
single-pulse mode
-
single-step mode
-
slave mode
-
slightly coupled modes
-
spatial mode
-
spectral mode
-
spiking mode
-
split-screen mode
-
s-polarized mode
-
spurious mode
-
spurious pulse mode
-
square mode
-
stable mode
-
standby mode
-
standing-wave mode
-
start-stop mode
-
static mode
-
stationary mode
-
steady state mode
-
stiffened mode
-
still-frame mode
-
storage mode
-
store-and-forward mode
-
stretching mode
-
stripped cladding modes
-
strong mode
-
strongly excited mode
-
substrate mode
-
superradiant mode
-
supervisor mode
-
switching mode
-
symmetric modes
-
synchronously pumped mode
-
tape auto mode
-
teaching mode
-
tearing mode
-
thickness-extensional modes
-
time compression mode
-
time mode
-
time-difference mode
-
time-shared mode
-
torsional modes
-
track-and-hold mode
-
tracking mode
-
transcribe mode
-
transfer mode
-
transformed mode
-
transient mode
-
transit mode
-
transit-time mode
-
transmission mode
-
transparent mode
-
transverse mode
-
TRAPATT mode
-
trapped mode
-
trapped plasma avalanche transit time mode
-
traveling-wave mode
-
triggering mode
-
trimming mode
-
truncated mode
-
tuning mode
-
tunneling mode
-
twist mode
-
two-level mode
-
unattended mode
-
uncoupled modes
-
undamped mode
-
unmanned mode
-
unperturbed mode
-
unstable mode
-
unstiffened mode
-
vertically polarized mode
-
vibration mode
-
vibration-free mode
-
virtual mode
-
voting mode
-
waiting mode
-
walk-off mode
-
warped mode
-
wave mode
-
wavefront watched modes
-
waveguide mode
-
wavy slip mode
-
wear mode
-
whispering modes
-
whistler mode
-
width modes
-
write mode
-
zero-order mode -
16 discharge
1) разряд2) разряд(ка) || разряжать3) рассасывание заряда || рассасываться ( о заряде)•- ac-excited discharge
- alternating discharge
- aperiodic discharge
- arc discharge
- assisted discharge
- auxiliary discharge
- avalanche discharge
- back discharge
- beam-plasma discharge
- brush discharge
- bunch discharge
- brushing discharge
- cathode glow discharge
- cold-cathode discharge
- condensed discharge
- condenser discharge
- conductive discharge
- constricted discharge
- continuous discharge
- convection discharge
- convective discharge
- corona discharge
- creeping discharge
- crossed-field gas discharge
- current discharge
- dark discharge
- deadbeat discharge
- de-excited discharge
- developing discharge
- disruptive discharge
- double transverse discharge
- dynamic discharge
- electrical discharge
- electrode discharge
- electrodeless discharge
- electron discharge
- electron-beam produced discharge
- electrom-beam sustained discharge
- electron oscillation discharge
- electrostatic discharge
- equilibrium discharge
- exponential discharge
- fast discharge
- filamentary discharge
- first Townsend discharge
- flare discharge
- gas discharge
- gaseous discharge
- globular discharge
- glow discharge
- helium-neon discharge
- high-current discharge
- high-energy electrical discharge
- high-frequency discharge
- high-pressure discharge
- hollow-cathode discharge
- hydrogen discharge
- ignitor discharge
- impulsing discharge
- laminar discharge
- laminated discharge
- laser discharge
- lasing discharge
- lateral discharge
- leakage discharge
- lightning discharge
- linear discharge
- linear pinch discharge
- low-current discharge
- low-pressure discharge
- marginal discharge
- mercury-vapor discharge
- microwave discharge
- moving microwave discharge
- non-self-maintained discharge
- non-self-sustained discharge
- normal glow discharge
- optical discharge
- oscillatory discharge
- oxygen discharge
- Penning discharge
- Penning gas discharge
- Penning ion-gage discharge
- photoinitiated discharge
- PIG discharge
- PIG-type discharge
- pinch discharge
- pinch-effect discharge
- plasma discharge
- point discharge
- point-to-plane discharge
- positive column discharge
- preionization discharge
- preionized discharge
- pulsed discharge
- residual discharge
- ring discharge
- screw discharge
- second Townsend discharge
- self-maintained discharge
- self-sustained discharge
- semi-self-maintained discharge
- short electric discharge
- silent discharge
- slow discharge
- small bore electric discharge
- space discharge
- spark discharge
- spatially uniform discharge
- spontaneous discharge
- spray discharge
- static discharge
- storm discharge
- striated discharge
- subnormal discharge
- surface discharge
- thermionic discharge
- theta-pinch discharge
- thin-sheet discharge
- torch discharge
- toroidal discharge
- Townsend discharge
- unassisted discharge
- unstable discharge
- vaccum discharge
- xerographic discharge
- zet-pinch discharge -
17 discharge
1) разряд2) разряд(ка) || разряжать3) рассасывание заряда || рассасываться ( о заряде)•- ac-excited discharge
- alternating discharge
- aperiodic discharge
- arc discharge
- assisted discharge
- auxiliary discharge
- avalanche discharge
- back discharge
- beam-plasma discharge
- brush discharge
- brushing bunch discharge
- brushing discharge
- bunch bunch discharge
- cathode glow discharge
- cold-cathode discharge
- condensed discharge
- condenser discharge
- conductive discharge
- constricted discharge
- continuous discharge
- convection discharge
- convective discharge
- corona discharge
- creeping discharge
- crossed-field gas discharge
- current discharge
- dark discharge
- deadbeat discharge
- de-excited discharge
- developing discharge
- disruptive discharge
- double transverse discharge
- dynamic discharge
- electrical discharge
- electrode discharge
- electrodeless discharge
- electron discharge
- electron oscillation discharge
- electron-beam produced discharge
- electron-beam sustained discharge
- electrostatic discharge
- equilibrium discharge
- exponential discharge
- fast discharge
- filamentary discharge
- first Townsend discharge
- flare discharge
- gas discharge
- gaseous discharge
- globular discharge
- glow discharge
- helium-neon discharge
- high-current discharge
- high-energy electrical discharge
- high-frequency discharge
- high-pressure discharge
- hollow-cathode discharge
- hydrogen discharge
- ignitor discharge
- impulsing discharge
- laminar discharge
- laminated discharge
- laser discharge
- lasing discharge
- lateral discharge
- leakage discharge
- lightning discharge
- linear discharge
- linear pinch discharge
- low-current discharge
- low-pressure discharge
- marginal discharge
- mercury-vapor discharge
- microwave discharge
- moving microwave discharge
- non-self-maintained discharge
- non-self-sustained discharge
- normal glow discharge
- optical discharge
- oscillatory discharge
- oxygen discharge
- Penning discharge
- Penning gas discharge
- Penning ion-gage discharge
- photoinitiated discharge
- PIG discharge
- PIG-type discharge
- pinch discharge
- pinch-effect discharge
- plasma discharge
- point discharge
- point-to-plane discharge
- positive column discharge
- preionization discharge
- preionized discharge
- pulsed discharge
- residual discharge
- ring discharge
- screw discharge
- second Townsend discharge
- self-maintained discharge
- self-sustained discharge
- semi-self-maintained discharge
- short electric discharge
- silent discharge
- slow discharge
- small bore electric discharge
- space discharge
- spark discharge
- spatially uniform discharge
- spontaneous discharge
- spray discharge
- static discharge
- storm discharge
- striated discharge
- subnormal discharge
- surface discharge
- thermionic discharge
- theta-pinch discharge
- thin-sheet discharge
- torch discharge
- toroidal discharge
- Townsend discharge
- unassisted discharge
- unstable discharge
- vaccum discharge
- xerographic discharge
- zet-pinch dischargeThe New English-Russian Dictionary of Radio-electronics > discharge
-
18 peak
1. noun1) (of cap) Schirm, der3) (highest point) Höhepunkt, der2. attributive adjectivebe at/be past its peak — den Höhepunkt erreicht haben/den Höhepunkt überschritten haben
Höchst-, Spitzen[preise, -werte]3. intransitive verbpeak listening/viewing period — Hauptsendezeit, die
* * *[pi:k] 1. noun1) (the pointed top of a mountain or hill: snow-covered peaks.) die Berspitze2) (the highest, greatest, busiest etc point, time etc: He was at the peak of his career.) der Gipfel3) (the front part of a cap which shades the eyes: The boy wore a cap with a peak.) der Schirm2. verb(to reach the highest, greatest, busiest etc point, time etc: Prices peaked in July and then began to fall.) den Höhepunkt erreichen- academic.ru/54160/peaked">peaked- peaky* * *[pi:k]I. n2. FOODbeat the egg whites until they are stiff enough to form firm \peaks das Eiweiß steif schlagen, bis ein Messerschnitt sichtbar bleibtto be at the \peak of one's career sich akk auf dem Höhepunkt seiner Karriere befindento be at the very \peak of one's fitness in Topform seinII. vi career, economy den Höhepunkt erreichen; athletes [seine] Höchstleistung erbringen; skill zur Perfektion gelangen; figures, rates, production den Höchststand erreichenhis fever \peaked to 41°C during the night über Nacht stieg sein Fieber auf 41°C an1. (busiest) Haupt-\peak rush hour Hauptverkehrszeit f\peak viewing time Hauptsendezeit f\peak productivity maximale Produktivität\peak speed Höchstgeschwindigkeit f* * *[piːk]1. n2) (of cap) Schirm mhe is at the peak of fitness — er ist in Höchstform or Topform (inf)
when his career was at its peak — als er auf dem Höhepunkt seiner Karriere war
when demand is at its peak — wenn die Nachfrage ihren Höhepunkt erreicht hat or am stärksten ist
2. adj attrpower, position höchste(r, s)a peak year for new car sales — ein Rekordjahr nt für den Neuwagenabsatz
in peak condition (athlete) — in Höchstform
3. viden Höchststand erreichen; (athlete = reach one's best) seine Spitzenform erreicheninflation peaked at 9% — die Inflationsrate erreichte ihren Höchstwert bei 9%
* * *peak1 [piːk]A s1. Spitze f2. a) Bergspitze fb) Horn n, spitzer Berg3. fig Gipfel m, Höhepunkt m:at the peak of happiness auf dem Gipfel des Glücks;a) eine Blüte erleben,b) in sein;bring a team to its peak SPORT eine Mannschaft in Höchstform bringen4. MATH, PHYS Höchst-, Scheitelwert m, Scheitel(punkt) m5. (Leistungs- etc) Spitze f, Höchststand m:peak of oscillation Schwingungsmaximum n;reach the peak TECH den Höchststand erreichen6. Hauptbelastung f, Stoßzeit f (eines Elektrizitäts-, Gas- oder Verkehrsnetzes)7. WIRTSCH Maximal-, Höchstpreis mB adj Spitzen…, Maximal…, Höchst…, Haupt…:peak factor Scheitelfaktor m;peak season Hochsaison f;a) Br Hochkonjunktur f,b) Br Stoßzeit f, Hauptverkehrszeit f,c) ELEK Br Hauptbelastungszeit f,d)( RADIO, TV) bes Br Hauptsendezeit f;peak value Scheitelwert mC v/i1. den Höchststand erreichen2. den Höhepunkt seiner Laufbahn erreichenpeak2 [piːk] v/ia) abmagernb) kränkelnpk abk1. pack2. park3. peak* * *1. noun1) (of cap) Schirm, der3) (highest point) Höhepunkt, der2. attributive adjectivebe at/be past its peak — den Höhepunkt erreicht haben/den Höhepunkt überschritten haben
Höchst-, Spitzen[preise, -werte]3. intransitive verbpeak listening/viewing period — Hauptsendezeit, die
* * *n.Höchstwert m.Kulmination f.Spitze -n f. -
19 system
1) система; комплекс2) метод; способ3) канал•- acoustic alarm system
- acoustic image system
- acoustic systems
- actiontrack system
- active IR-system
- actuator system
- adaptive communication system
- adaptive teleinformation system
- adaptive telemetering system
- advanced information system
- Afsatcom system
- air system
- aircraft intercommunication system
- airfield communication system
- air-ground automatic system
- airline reservation system
- air-to-ground TV system
- alarm signal system
- alarm system
- all-channel signaling system
- ALL-IN-ONE system
- alphanumeric system
- amplified speaker system
- amplitude shift-keying system
- AMPS system
- analog cellular communication system
- analog cellular system
- analog component video system
- analog television system
- analog tropospheric system
- anisochronous system
- antenna system
- antitheft system
- AR system
- Arabsat system
- ASK system
- associated channel analog system
- asynchronous address communication system
- audio recording system
- Aurora system
- Aussat system
- automatic communication system
- automatic connection establishment system
- automatic control system
- automatic data acquisition system
- automatic telegraphy system
- automatic telephone system
- automatic tuning system
- automatized cellular system
- auxiliary alarm system
- balanced cable transmission system
- band sharing system
- base station system
- baseband system
- basic input/output system
- bass-reflex speaker system
- batch processing system
- batch transmission system
- batch-and-forward system
- batteryless system
- bilateral CTV system
- binary tariff system
- biocontrol system
- bit parallel interface system
- bit transport system
- bridge duplex system
- broadband mobile system
- broadcast satellite system
- broadcasting delivery media systems
- burglar alarm system
- byte-serial interface system
- cabinet system
- cabinetless system
- cable distribution system
- cable TV system
- call-accounting system
- call-answering system
- call-counting system
- call-distributing system
- call-processing system
- call-queueing system
- camp-on system
- CAPTAIN system
- car component audio system
- carrier reinsertion system
- carrier system
- carrier-communication system
- carrier-current communication system
- Cassegrain-Schmidt system
- cassette recording system
- cassette reproducing system
- CATRIN system
- caution system
- CD 900 system
- cellular system
- cellular-radio system
- central-battery system
- centralized control system
- chirp binary telegraph system
- cipher system
- circuit switched telecommunication system
- circuit switching telecommunication system
- circular telecontrol system
- clock system
- closed-circuit communication system
- closed-circuit telegraph system
- closed-numbering system
- code-dependent system
- code-division multiple access system
- code-independent system
- code-insensitive system
- code-sensitive system
- coding system
- coherent fiber-optic system
- collimating system
- collocated system
- color separating system
- combined numbering system
- combined power supply system
- combined satellite communication system
- common-battery system
- common-carrier system
- common-channel signaling system
- common-engineering communication system
- common-purpose cellular system
- common-using band system
- common-using cordless telephone system
- common-using paging system
- communication system
- communication traffic system
- communications system
- community antenna system
- community antenna television system
- community TV-system
- commununication switching system
- compact disk digital audio system
- compatible color television system
- compatible single sideband system
- compatible single-band system
- compatible TV-system
- complex radio communication system
- computer vision system
- computer-telephone system
- Comsar system
- Comsat system
- Conax system
- concentrated-insonation system
- conference system
- conference-communication system
- congested system
- congress-class system
- constant-current system
- control generating system
- conventional television system
- Conversant system
- cordless-communication system
- crossbar system
- crossed-coincident microphone system
- Crosspoint system
- CSE system
- C-system
- cubical video projecting system
- data processing system
- data system
- data transport system
- data-collection system
- data-compression system
- data-exchange system
- dataflow system
- data-gathering system
- data-handling system
- data-measuring system
- data-reduction system
- data-transmission system
- Decca Navigator system
- DECfax system
- decision-feedback system
- dedicated control channel system
- dedicated multimedia system
- delta-sigma system
- deluxe presentation system
- departmental communication system
- desktop-video system
- DFS/Copernicus system
- dial-telephone system
- differential phase shift-keying system
- differential-duplex system
- differential-magnetic system
- digital camera system
- digital hybrid-key telephone system
- digital mass storage system
- digital microwave radio transmission system
- digital telephone communication system
- digital transmission system
- digital TV-communication system
- Digital UNIX system
- digital-analog system
- digital-cellular system
- digital-data modulation system
- digital-effect system
- digital-message entry system
- digital-termination system
- direct-broadcasting satellite system
- directing system
- direct-modulation system
- direct-sequence system
- direct-telephone communication system
- discrete communication system
- discrete sound system
- discrete-addressing system
- disk-operating system
- DISOSS system
- dispatch telephone communication system
- dispatch-center system
- dispersed-insonation system
- distributed-insonation system
- distributed-processing system
- documental-type communication system
- Dolby systems
- domestic satellite communication system
- double-band telephone communication system
- double-channel transmission system
- double-current transmission system
- double-pole communication system
- double-sideband large carrier system
- DSCS system
- D-system
- dual-cable system
- dual-reflector system
- duplexed system
- Earth-to-space transmission system
- ECM system
- electric communication system
- electronic antishock system
- electronic data-gathering system
- electronic data-processing system
- electronic-message system
- electronic-scanning system
- electronic-switching system
- Ellipso system
- emergency telephone communication system
- emergency-broadcast system
- EMX system
- equidistant system
- error-correction system
- error-detection system
- Eutelsat system
- extensible system
- external paging system
- facsimile system
- fast-acting servicing system
- fault-tolerant system
- fax communication system
- fax transmitting system
- feed system
- fiber transmission system
- fiber-optic transmission system
- field-sequential system
- final mile system
- finishing system
- fire alarm system
- fire warning system
- first generation cellular system
- five-channel communication system
- fixed satellite system
- Flexcam system
- flexible access system
- Flitsatcom system
- focusing system
- four-channel sound system
- four-dimensional system
- four-wire telephone communication system
- frame-sequential system
- frequency shift-keying system
- frequency-carrier system
- frequency-control system
- front-bass reflex speaker system
- fully digital system
- gate system
- Gaussian system
- generalized system
- generating dynamic system
- generator-dc-motor system
- GIGASET radio system
- global positioning system
- Global system
- Gopher system
- grandfathered system
- group-alerting and dispatching system
- guide system
- hard-wired CCTV system
- hazard system
- helical-scan system
- HF-synchronizing system
- high-precision navigating system
- Hi-linear system
- home system
- home-telephone system
- home-type system
- homing-guidance system
- host system
- hydroacoustic system
- ideal communication system
- idealized system
- image informaion system
- image-forming system
- immedial servicing system
- incompatible system
- independent system
- information retrieval system
- information system radio system
- information system
- information-feedback system
- information-measuring system
- infrared alarm system
- Inmarsat system
- Inmarsat-A system
- Inmarsat-B system
- Inmarsat-C system
- Inmarsat-D system
- Inmarsat-M system
- Inmarsat-P system
- integrated telephone system
- integrated videographic teleconferencing system
- integrated-antenna system
- integrated-communication system
- integrated-modulation system
- integrated-office system
- Intelsat system
- interactive system
- intercarrier-sound system
- intercommunication system
- intercontinental tropospheric system
- interlock system
- intermachine exchange system
- intermediate system
- international communication system
- interphone system
- Intervision system
- intraband signaling system
- intruder alarm system
- inward-outward dialing system
- ionoscatter system
- ionosphere sounder system
- ionospheric system
- Iridium system
- isolated system
- Italsat system
- J-carrier system
- joint-multichannel trunking and switching system
- K-carrier system
- key system
- key-telephone system
- land satellite communication system
- large-grained communication system
- laser communication system
- L-band satellite system
- L-carrier system
- Leasat system
- lightning protection system
- limited distortion system
- line amplifiers system
- link system
- little-channel relay system
- local alarm system
- local battery system
- local communication system
- local radio paging system
- long-haul system
- long-range system
- loop system
- loud-speaking communication system
- low-traffic system
- magnetic tape recording system
- Mail system
- management-information system
- manual cellular system system
- manual telephone set system
- Marisat system
- master television system
- master-antenna television system
- matrix sound system
- message feedback system
- message procession system
- message registration system
- message-switched system
- meteor radio system
- Metrobus system
- micro component system
- Micro Press Cluster Printing system
- micro-lens system
- microprocessor system
- microwave relay system
- midi system
- mine radio telephone system
- mini system
- mixed media system
- mixed numbering system
- mobile cellular communication system
- mobile land communication system
- mobile radio system
- mobile relay system
- mobile system
- modulated system
- monetary mobile system
- MS-Mail system
- multiareal system
- multicassette system
- multichannel telephone system
- multicomputer system
- multidisk system
- multiformat recording system
- multifrequency tone signaling system
- multiguard system
- multilevel mixed system
- multimedia system
- multiple-channel system
- multiqueue system
- Multiscrypt system
- multistandard system
- multitrack editing system
- mutibeam antenna system
- muting system
- Nagravision system
- NAMTS system
- narrow-angle TV system
- national communication system
- navigation system
- n-channel communication system
- n-channel DPSK system
- n-channel transmission system
- network standalone system
- network system
- network-operation system
- networks numbering system
- neutral direct-current telegraph system
- n-head video system
- NMT system
- noise-reduction system
- nonhoming tuning system
- noninterlaced television system
- nonsegmented system
- Norsat system
- n-satellite system system
- n-tone DPSK system
- n-tone MFSK system
- NTSC system
- NTT system
- obligatory message system
- Odyssey system
- off-line system
- on-line computer system
- on-line secured system
- open numbering system
- open system
- operative-engineering communication system
- opposite signals system
- optical-communication system
- optical-information system
- optical-projection system
- optoelectronic system
- oscillating system
- oscillation system
- outband signaling system
- package-and-resource tracking system
- pagemaster system
- paging system
- PAL system
- parametric system
- PATHWORKS system
- pattern recognition system
- personal holding guard system
- phase shift-keying system
- phone system
- Piccolo system
- pilot-controller system
- polar direct-current telegraph system
- portable mobile system
- power control system
- power controlling system
- power-line carrier system
- power-supply system
- press-to-talk system
- Prestel system
- primary-supply system
- privacy system
- private branch paging system
- private movable system
- private videodata system
- private videotex system
- process-interface system
- PROFS system
- programmable cross-connect system
- programmable cross-connected system
- programmed radio system
- prompting system
- protected wireline distribution system
- protection system
- pseudoquadraphony system
- pseudotrunking system
- public videodata system
- public videotex system
- pulse-code system
- pulse-frequency system
- pulse-time system
- quadraphonic sound system
- quadruple-diversity system
- R1 system
- R2 system
- radio buoy system
- radio command system
- radio communication system
- Radio Data system
- radio facsimile system
- Radiocom 2000 system
- radio-control system
- radio-paging system
- radio-relay system
- radiosonde-radio-wind system
- radio-telemetering system
- real time pulse-echo system
- real time system
- receiver lockout system
- recording system
- recovery system
- redundant system
- reference-information system
- regional electronic payment system
- relay-radio system
- remote concentrating system
- remote control system
- remote diagnostic system
- remote information system
- remote semiconcentrating system
- remote sensing system
- remote signaling system
- rendering system
- rerecording system
- reserved servicing system
- RF/Transmission system
- rotary system
- safety alarm system
- safety system
- Satcom system
- satellite comminication system
- satellite marine comminication system
- Satellite Master Antenna Television system
- satellite radio system
- satellite-aircraft communication system
- SB-communication system
- SBL communication system
- scalable system
- scanning trunking system
- SCO UNIX system
- searchless identification system
- seat reservation system
- SECAM system
- second generation cellular system
- second room system
- secondary supply system
- secrecy system
- section communication system
- security system
- segmented system
- seismic system
- selective calling system
- selective frequency base station system
- selective protective system
- selective telephone system
- self-adjusting system
- self-balancing differential system
- self-contained system
- self-test system
- selsyn system
- semiautomatic-switching system
- semiautomatized cellular system
- sensory system
- servo system
- shadow-batch system
- short-haul microwave system
- Sicral system
- Sigma Servo system
- signal system
- simplex movable system
- single-band transmission system
- single-busbar system
- single-cable communication system
- single-cable system
- single-channel system
- single-current transmission system
- single-pulse tracking system
- Skynet system
- small-grained communication system
- SmarTrunk II radio communication system
- solid-state uninterruptible power battery system
- Sony bus system
- sound alarm system
- sound equalization system
- sound navigation system
- sound reinforcement system
- sound warning system
- space-division system
- space-switched system
- spark-safe system
- speaker system
- special communication system
- speech-processing system
- speech-recognition system
- split-speaker system
- spread-spectrum system
- stabilizing system
- stage monitoring system
- standalone double point system
- star-circuit system
- STAREX CMX system
- starting communication system
- start-stop system
- stationary satellite system
- step-by-step system
- stereo sound system
- stereophonic sound system
- storage system
- storage-and-retrieval system
- Strowger system
- submarine fiber-optic system
- subprimary digital transmission system
- subscriber carrier system
- subscriber switching system
- suffix system
- Supersat system
- supervisory control system
- surround sound system
- switched telecommunication system
- switching system
- sync communication system
- synchro system
- synchronous communication system
- synchronous digital system
- TAGS system
- tandem system
- tariffication system
- T-carrier system
- TDF system
- teleautomatic system
- Telecom system
- telecommunication system
- telecommunications system
- telecommunication-service priority system
- telecommunications-service priority system
- telecontrol system
- telemechanic system
- telemetering system
- telemetry system
- telephone system
- telephone-answering system
- telephone-communication system
- telephone-communications system
- teleprocessing system
- Telesat system
- teletex system
- teletypewriter system
- television-telephone system
- Tele-X system
- Telsar system
- terminal system
- terrestrial radio-relay system
- theft-prevention system
- thin-route system
- third generation communication system
- three-axle stabilizing system
- three-channel HF-telephone system
- three-channel transmission system
- three-color system
- three-lens optical system
- three-primary system
- three-wire system
- time-dissemination system
- time-frequency hopping system
- time-switched system
- total access communication system
- total area coverage system
- transmission system
- trichromatic system
- triple-interlace system
- triplex system
- trunk communication system
- TV-observation system
- twelve-channel transmission system
- two-arm system
- two-band system
- two-color system
- two-roller transfer system
- two-step control system
- two-way CATV system
- two-way system
- two-wire telephone communication system
- ultra-match system
- ULTRIX system
- unified radioaccess system
- unilateral-control system
- unilateral-synchronization system
- uninterruptible-power system
- Unisat system
- universal alarm system
- universal-battery system
- universal-electronic system
- universal-movable system
- Uniworks system
- vestigial-sideband system
- video editing system
- video home system
- video recording system
- videocom system
- videoteleconference system
- videotex system
- virtual studio system
- vision system
- vocoder system
- voice dialog system
- voice frequency carrier telegraph system
- voice modulation system
- voice post system
- volume control system
- waiting system
- warning system
- watch system
- watching system
- waterside facsimile communication system
- wave-propagating system
- wide-angle TV system
- Winfax Pro system
- wired broadcasting system
- wireless CCTV system
- wireless home system
- wireless infrared speaker system
- wire-radio communication system
- XY system
- zone-selective protection system
- zoning systemEnglish-Russian dictionary of telecommunications and their abbreviations > system
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20 test
1) замер2) испытание; испытания || испытывать; исследовать3) стат. критерий4) обнаружение; определение5) опробывание6) опыт; эксперимент7) признак8) проба || пробовать9) проверка || проверять10) тест || тестовый11) пробный•test for uniformity — мат. критерий равномерности
test for trend — мат. проверка на тренд
test for singularity — мат. критерий особенности
test for regression — мат. проверка на наличие регрессии
test for randomness — мат. критерий случайности
test for primality — мат. признак простоты (числа)
test for optimality — мат. критерий оптимальности
test for nonadditivity — мат. признак неаддитивности
test for minimum — мат. проверка на минимум
test for interaction — мат. критерий взаимодействия
test for exponentiality — мат. критерий экспоненциальности
test for ergodicity — мат. критерий эргодичности
test for divisibility — мат. признак делимости
test for definiteness — мат. критерий определённости
test for convergence — мат. критерий сходимости
test for concordance — мат. критерий согласия
test for casualty — мат. критерий обусловленности
- asymptotically efficient test - asymptotically minimax test - asymptotically most powerful rank test - asymptotically optimum test - asymptotically robust test - asymptotically unbiased test - double-tailed testto make test — стат. строить критерий (напр., для проверки значимости отклонений)
- fat test- general test for homogeneity- jet test- locally unbiased test - multiple comparison test - multiple ranking test - normal scores test - one-tailed test - probability ratio test - process normality test - single-tailed test - statistically valid test - test for goodness of fit - test for homogeneity of means - test for homogeneity of variances - test for nonsphericalness of disturbances - test for significant changes - test for uniform convergence - test hypothesis with experiment - uniformly asymptotically efficient test - uniformly best test - uniformly consistent test
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См. также в других словарях:
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