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21 method
1) метод; приём; способ2) методика3) технология4) система•- accelerated strength testing method-
benching method-
bullhead well control method-
electrical-surveying method-
electromagnetic surveying method-
long-wire transmitter method-
operational method-
rule of thumb method-
straight flange method of rolling beams-
symbolical method-
tee-test method-
testing method-
triangulation method-
value-iteration method -
22 метод вертикальной рамки
Большой англо-русский и русско-английский словарь > метод вертикальной рамки
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23 метод вертикальной петли
vertical-loop method геофиз.Англо-русский словарь технических терминов > метод вертикальной петли
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24 метод вертикальной петли
геофиз. vertical-loop methodБольшой англо-русский и русско-английский словарь > метод вертикальной петли
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25 VLEM
vertical-loop electromagnetic method - электромагнитный метод вертикальной петли; электромагнитный метод вертикальной рамки -
26 VLEM
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27 VLEM
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28 setup
1) сборка; монтаж2) наладка; настройка3) расположение, размещение; компоновка4) геод. станция, стоянка5) устройство; установка6) схема7) оснастка8) уставка ( регулируемой величины); набор уставок10) тлв макет•-
breadboard setup
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DNC setup
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engineering setup
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experimental setup
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field setup
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geophone setup
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growth setup
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laboratory setup
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mill setup
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minimally manned setup
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negative setup
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off-line setup
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one setup
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pass setup
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photomicrographic setup
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positive setup
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projection setup
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roll setup
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seismic shooting setup
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test setup
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tool setup
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unmanned setup
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vertical loop electromagnetic method setup
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vision setup
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wave setup
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wind-induced setup
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wind setup
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work-bench setup -
29 setup
расстановка (сейсмических кос, сейсмоприёмников, взрывных скважин и т.п.)
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1) установка, оборудование2) расположение; размещение; общая компоновка3) расположение (<<сейсмических кос>ёмников, взрывных скважин, при котором производится регистрация взрывов)•- drill setupfrom one setup — из одной точки (о кусте скважин, пробуренных без перемещения бурильной машины)
- engineering setup
- field setup
- geophone setup
- seismic shooting setup
- vertical loop electromagnetic method setup
- wellhead setup* * * -
30 VLEM
сокр.[vertical-loop electromagnetic method] электромагнитный метод вертикальной рамки* * * -
31 VLEM
геофиз. сокр. (vertical-loop electromagnetic method)(электромагнитный) метод вертикальной петлиАнгло-русский универсальный дополнительный практический переводческий словарь И. Мостицкого > VLEM
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32 control
1) контроль
2) контрольный
3) обоснование
4) обосновывать
5) оперативный
6) регулировать
7) регулировочный орган
8) совладать
9) управление
10) управляемость
11) управляющий
12) штурвальный
13) регулировка
14) управлять
15) проверять
16) регулирование
17) инструкция
18) исполнительный
19) контролировать
20) проверка
21) проверочный
22) регулирующий
– absence of control
– air traffic control
– air-traffic control
– analysis is in control
– anticipatory control
– arc control device
– association control
– attenuation control
– attitude control
– automatic control
– autonomous control
– autothrottle control
– bang-bang control
– be in control
– be out of control
– bin control gate
– brightness control
– bucket tip control
– bulge control
– centralized control
– closed-cycle control
– complete control
– context control
– continuous control
– contrast control
– control accuracy
– control action
– control actuator
– control agent
– control air
– control algorithm
– control amplifier
– control and display
– control assembly
– control beam
– control bus
– control button
– control cabinet
– control cable
– control cam
– control center
– control channel
– control character
– control characteristic
– control circuit
– control code
– control column
– control combination
– control computer
– control crank
– control criterion
– control current
– control cylinder
– control data
– control desk
– control electrode
– control electronics
– control element
– control equipment
– control factor
– control flutter
– control force
– control function
– control gate
– control gear
– control graphitization
– control instruction
– control jet
– control joint
– control key
– control knob
– control lag
– control lever
– control limit
– control linkages
– control links
– control loop
– control magnet
– control means
– control mode
– control module
– control motor
– control of airplane
– control office
– control operation
– control panel
– control pedal
– control position
– control problem
– control pulse
– control range
– control reactor
– control register
– control relay
– control response
– control room
– control shaft
– control spin
– control statement
– control stick
– control surface
– control survey
– control switch
– control temperature
– control theory
– control track
– control transistor
– control unit
– control vector
– control voltage
– control weeds
– control winding
– control wiring
– corrosion control
– dash control
– data control
– derivative control
– digital control
– direct control
– distance control
– disturbance-compensating control
– dive-recovery control
– duplicate control
– dust control
– ease of control
– elevator control
– emergency control
– end-point control
– engine control
– environment control
– error control
– error-closing control
– exclusive control
– extension of control
– feed control
– feed-back control
– feedback control
– filament control
– fine control
– fire control
– flight control
– floating control
– flood control
– flow-rate control
– focus control
– frequency control
– front-panel control
– gain control
– ganged control
– geodetic control
– go out of control
– ground control
– gyrorudder control
– hand control
– headwater control
– height control
– hierarchical control
– in-process control
– independent control
– indirect control
– industrial control
– input-output control
– integral control
– interacting control
– intermittent control
– inventory control
– jet control
– job control language
– layout of control
– leather control
– level control
– linearity control
– load control
– local control
– lose control
– loss of control
– manual control
– master control
– meduim-access control
– meduim-access control
– mission control
– multicircuit control
– noise control
– numerical control
– off-line control
– on-line control
– on-off control
– open-loop control
– operating control
– optimal control
– optimization control
– out of control
– pass control
– path control
– path of control
– pedal control
– pest control
– phase control
– phase-lock control
– piano-key control
– plan control
– point of control
– point-to-point control
– power-assisted control
– product control
– program control
– programmed control
– proportional control
– proportional-plus-floating control
– push-button control
– pushbutton control
– quality control
– radio control
– ramp control
– reaction control
– recovery control
– regain control
– register control
– remotability of control
– remote control
– roll control
– rudder control
– run-off control
– sampled-data control
– segregate control
– selectivity control
– self-acting control
– sensitivity control
– servo control
– slide control
– slope control
– statistical control
– steering control
– supervisory control
– take control
– technical control
– temperature control
– throttle control
– tone control
– touch control
– traffic control
– tuning control
– vertical control
– vibration control
– voice-activated control
– volume control
aerodynamic control surface — руль управления аэродинамический
automatic control equipment — аппаратура автоматического управления
automatic frequency control — частотная АПЧ, автоматическая настройка частоты
automatic gain control — <tech.> регулировка усиления автоматическая
automatic remote control — <comput.> телеавтоматика
automatic voltage control — регулирование напряжения автоматическое
bang-bang control system — <comput.> система управления релейная
cancelling control button — < railways> кнопка отмены
centralized traffic control — < railways> централизация
conditional transfer of control — условная передача управления
control aisle of a substation — коридор управления подстанции
control in pitch of airplane — продольное управление самолетом
control point adjustment — настройка точки регулирования, <engin.> задатчик
control tower service — <aeron.> служба диспетчерская
coordinated phosphate control — коррекционная обработка воды
differential control method — дифференцированный метод контроля
dispatcher's supervisory control — телеуправление диспетчерское
fire control computer — счетно-решающее устройство для управления артиллерийским огнем
fire control director — прибор управления артиллерийским огнем
floating control mode — <comput.> способ регулирования астатический
intermittent gain control — < radio> регулировка усиления временная
lateral control of airplane — поперечное управление самолетом
microprocessor control system — микропроцессорная система управления
pressure control instrument — <tech.> маностат
proportional control factor — <comput.> коэффициент пропорционального регулирования
range finder control — <geod.> метод дальномерно-базисный
reactor control system — <engin.> система управления и защиты
remote control interlocking — < railways> телецентрализация, централизация дистанционная
river control structure — <geol.> сооружение выправительное
servo control unit — <engin.> гидроусилитель
spray-type superheat control — впрысковое регулирование перегрева
supervisory control system — <comput.> автодиспетчер
thermostatic temperature control — ключевое термостатирование
volume range control — регулирование динамического диапазона
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33 Townsend, Matthew
SUBJECT AREA: Textiles[br]b. Leicester (?), Englandd. after 1867 USA[br]English inventor of the latch needle for making seamless hose, and developer of ribbed knitting on circular machines.[br]Townsend, who described himself in his first patent as a framework knitter and afterwards as a hosier of Leicester, took out a patent in 1847 for the application of a "machine like that of a point net frame to an ordinary stocking-frame". He described needles and hooks of a peculiar shape which were able to take the work off the knitting machine, reverse the loops and return them again so that ribbed knitting could be made on circular machines. These became popular for knitting stockings which, although not fully fashioned, had sufficient strength to fit the leg. In 1854 he took out a patent for making round hose with heels and toes fashioned on other machines. In yet another patent, in 1856, he described a method of raising looped pile on knitted fabrics for making "terry" towelling fabrics. He could use different coloured yarns in the fabric that were controlled by a Jacquard mechanism. It was in the same year, 1856, in a further patent that he described his tumbler or latch needles as well as the making of figured patterns in knitting on both sides of the fabric with a Jacquard mechanism. The latch needles were self-acting, being made to move up and down or backwards and forwards by the action of cams set in the cylindrical body of the machine. Normally the needle worked in a vertical or inclined position with the previous loop on the shank below the latch. Weft yarn was placed in the hook of the needle. The needle was drawn down between fixed plates which formed a new loop with the weft. At the same time, the original loop already on the shank of the needle moved along the shank and closed the latch so that it could pass over the newly formed loop in the needle hook and fall over the end of the needle incorporating the new loop on its way to make the next row of stitches. The latch needle obviated the need for loop wheels and pressers and thus simplified the knitting mechanism. Townsend's invention was the forerunner of an entirely new generation of knitting machines, but it was many years before its full potential was realized, the bearded needle of William Lee being preferred because the hinge of the latch could not be made as fine as the bearded needle.Townsend was in the first rank of skilful manufacturers of fancy Leicester hosiery and had a good practical knowledge of the machinery used in his trade. Having patented his needles, he seems not to have succeeded in getting them into very profitable or extensive use, possibly because he fixed the royalty too high. His invention proved to be most useful and profitable in the hands of others, for it gave great impetus to the trade in seamless hose. For various reasons he discontinued his business in Leicester. He emigrated to the USA, where, after some initial setbacks, he began to reap the rewards of his skill.[br]Bibliography1847, British patent no. 11,899 (knitting machine). 1854, British patent no. 1,523 (seamless hose).1856, British patent no. 1,157 ("terry" towelling fabrics).1856, British patent no. 1,858 (latch needles and double-sided patterns on fabrics).Further ReadingF.A.Wells, 1935, The British Hosiery and Knitwear Industry, London (mentions Townsend briefly).W.Felkin, 1967, History of the Machine-wrought Hosiery and Lace Manufactures, reprint, Newton Abbot (orig. pub. 1867) (a better account of Townsend).RLH -
34 mode
1) метод; спосіб (див. т-ж арproach, method, technique) 2) режим (роботи) 3) тип, вигляд; форма - avalanche mode
- charge-storage mode
- continuous-wave mode
- continuous mode
- current-page addressing mode
- depletion mode
- enhancement mode
- failure mode
- fault behavioral mode
- Gunn mode
- hunt mode
- limited space-charge асcumulation mode
- magnetostatic mode
- manual mode
- maximum delay simulation mode
- media delay simulation mode
- minimal delay simulation mode
- nonsaturated mode
- off-line mode
- on-line mode
- open loop mode
- operational mode
- operation mode
- oscillating mode
- pipeline mode
- propagation mode
- pulsedmode
- pulsemode
- punch-through mode
- saturation mode
- simulation mode
- stand-alone mode
- standby mode
- storage mode
- stroboscopic mode
- test mode
- transfer mode
- transient mode
- vertical integration mode
- 3 points alignment mode -
35 odd-parity check
1. проверка на нечетность2. контроль по нечетностиcheck routine — программа контроля; контролирующая программа
vertical check — поперечный контроль; контроль по разрядам
selection check — выборочная проверка; выборочный контроль
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