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1 engine impulse
English-Russian glossary on space technology > engine impulse
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2 engine
двигатель; мотор; машинаbuzz up an engine — жарг. запускать двигатель
clean the engine — прогазовывать [прочищать] двигатель (кратковременной даней газа)
engine of bypass ratio 10: 1 — двигатель с коэффициентом [степенью] двухконтурности 10:1
flight discarded jet engine — реактивный двигатель, отработавший лётный ресурс
kick the engine over — разг. запускать двигатель
lunar module ascent engine — подъёмный двигатель лунного модуля [отсека]
monofuel rocket engine — ЖРД на однокомпонентном [унитарном] топливе
open the engine up — давать газ, увеличивать тягу или мощность двигателя
prepackaged liquid propellant engine — ЖРД на топливе длительного хранения; заранее снаряжаемый ЖРД
production(-standard, -type) engine — серийный двигатель, двигатель серийного образца [типа]
return and landing engine — ксм. двигатель для возвращения и посадки
reversed rocket engine — тормозной ракетный двигатель; ксм. тормозная двигательная установка
run up the engine — опробовать [«гонять»] двигатель
secure the engine — выключать [останавливать, глушить] двигатель
shut down the engine — выключать [останавливать, глушить] двигатель
shut off the engine — выключать [останавливать, глушить] двигатель
solid(-fuel, -grain) rocket engine — ракетный двигатель твёрдого топлива
turn the engine over — проворачивать [прокручивать] двигатель [вал двигателя]
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3 impulse-duct engine
English-Russian big polytechnic dictionary > impulse-duct engine
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4 impulse rocket engine
Космонавтика: импульсный РДТТ -
5 impulse-dust engine
Космонавтика: пульсирующий воздушно-реактивный двигатель -
6 impulse-type engine
Космонавтика: импульсный РДТТ -
7 impulse-duct engine
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8 impulse-duct engine
< aerospace> ■ Pulsostrahltriebwerk n -
9 impulse-duct engine
Englsh-Russian aviation and space dictionary > impulse-duct engine
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10 impulse-rocket engine
Englsh-Russian aviation and space dictionary > impulse-rocket engine
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11 impulse missile engine
I adj імпульсний рдтт II n імпульсний ракетний двигунEnglish-Ukrainian military dictionary > impulse missile engine
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12 impulse engine
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13 constant-impulse engine
Универсальный англо-русский словарь > constant-impulse engine
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14 specific impulse of engine in vacuum
English-Russian glossary on space technology > specific impulse of engine in vacuum
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15 ratio
отношение, соотношение, пропорция; степень; коэффициент, см. тж. coefficient; передаточное число [отношение]all-out level/stalling speed ratio — относительный диапазон скоростей полёта (отношение максимальной скорости горизонтального полёта к скорости сваливания)
base(-altltude, -height) ratio — отношение величины базиса фотографирования к высоте
burning (surface)-to-throat (area) ratio — отношение поверхности горения к площади критического сечения сопла (в РДТТ)
chamber volume-to-throat area ratio — приведенная [характеристическая] длина камеры сгорания
envelope-bulk to weight ratio — отношение объёма, занимаемого двигателем, к его сухому весу
lift-(over, to-)drag ratio — аэродинамическое качество
main rotor/engine r.p.m. ratio — степень редукции между двигателем, и несущим винтом, соотношение чисел оборотов несущего винта и вала двигателя
maintenance (man hours)-to-flight (hours) ratio — соотношение объёма работ по наземному обслуживанию (в человеко-часах) и налёта
mixing ratio of moist air — метео. влагосодержаиие
port(-to-)throat ratio — относительная свободная площадь (отношение свободной площади к площади критического сечения сопла)
ratio of specific heats — отношение удельных теплоёмкостей, показатель адиабаты
stoichiometric (equivalence, mixture) ratio — стехиометрическое соотношение компонентов топлива, стехиометрический коэффициент состава топлива
— - to-thrust ratio -
16 time
1) время || измерять [определять\] время; отмечать время; хронометрировать2) период [интервал\] времени4) срок; длительность, продолжительность5) темп; такт6) хронировать; синхронизировать; осуществлять привязку по времени7) регулировать взаимное положение фаз периодических процессов•time on — время включения; продолжительность пребывания во включенном состоянии;time to failure — наработка на отказ;time to repair — 1. наработка до ремонта 2. время ремонта-
absolute time
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acceleration time
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acceptance time
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access time
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acquisition time
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action time
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active repair time
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actual airborne time
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actual time
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actuation time
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addition time
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add time
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addressing time
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administrative time
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advance time
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ageing time
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aging time
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air cutting time
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air time
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alignment time
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annealing time
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apparent time
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arcing time
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arc time
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arrestment time
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arrival time
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assembly time
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astronomical time
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atomic time
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attack time
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attenuation time
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average time
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averaging time
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backup time
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baking time
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base transit time
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basin lag time
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batch-free time
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block-to-block time
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blowing time
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braking time
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break contact release time
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bridging time
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bubble penetration time
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bubble waiting time
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build up time
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burning time
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burn-off time
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burst time
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caging time
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calendar time
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capture time
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carbonizing time
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carrier transit time
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cell production time
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chambering time
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changeover time
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characteristic time
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charge time
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check-in time
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chill time
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chock-to-chock time
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civil time
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clear time
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clearing time
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clipping time
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closing time
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compilation time
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computer time
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conditioning time
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contact time
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continuous recording time
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continuous time
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conversion time
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cooking time
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cool time
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critical time
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cumulative cutting time
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cumulative operating time
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cure time
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current impulse time
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current time
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current-rise time
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cutoff time
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cutting time
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cutting-in time
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cycle time
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damping time
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data-hold time
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daylight saving time
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dead time
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debatable time
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debugging time
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debug time
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decay time
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deceleration time
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definite minimum inverse operating time
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definite operating time
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deionization time
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delay time
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departure time
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detention time
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development time
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discharge time
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disconnection time
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discrete time
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divide time
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door-to-door time
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down time
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drift-transit time
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drift time
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drive time
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dropout time
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dust-free time
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dwelling time
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dwell time
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early finish time
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early start time
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effective time
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elapsed time
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emptying time
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engine ground test time
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engine operating time
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engine run-in time
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engineering time
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entry time
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ephemeris time
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erase time
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error-free running time
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estimated elapsed time
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estimated time of checkpoint
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execution time
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exposure time
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extinction time
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fall time
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fast time
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fault clearing time
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fault time
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fetch time
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firing time
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first copy-out time
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flash-off time
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flight block time
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flight dual instruction time
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flight duty time
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flight time
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flooding time
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floor-to-floor time
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flotation time
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flushing time
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flyover time
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forepumping time
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forge time
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freezing time
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fuel-doubling time
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fueling time
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fuel-residence time
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full operating time
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fusing time
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gate-controlled delay time
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gate-controlled rise time
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gate-controlled turn-on time
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gate-controlled-turn-off time
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gating time
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generation time
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Greenwich mean time
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gross-coking time
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ground operating time
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group delay time
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guard time
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gyro erection time
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handling time
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heat time
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high-water time
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holding time
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hold time
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hold-off time
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idle running time
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idle time
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ignition time
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impulse front time
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impulse tail time
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incidental time
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ineffective time
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initial setting time
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in-pile time
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installation time
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instruction time
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instrument flight time
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interaction time
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interarrival time
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interpulse time
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interrupting time
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intrinsic time
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ionization time
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keeping time
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lag time of flow
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lag time
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landing gear extension time
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latency time
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lead time
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leading-edge time
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life time
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local time
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lockage time
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locking time
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low-water time
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machine time
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maintenance time
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make contact operating time
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make contact release time
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make time
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make-break time
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manipulation time
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Markov's time
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Markov time
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maximum permissible short-circuit clearing time
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mean time between failures
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mean time between power failures
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melting time
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mill delay time
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mill pacing time
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mixing time
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modal transit time
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monolayer time
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moving time
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multiplication time
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near-real time
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Newtonian time
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no-load running time
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nonreal time
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normally-closed contact release time
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nuclear time
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nucleation time
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object time
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observation time
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off time
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off-stream time
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on time
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on-stream time
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opening time
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operating time
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operator's time
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optimized contact time
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orbit phasing time
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outage time
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output voltage setup time
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overall cycle time
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paralysis time
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partial operating time
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particle residence time
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peak-load time
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periodic time
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pickup time
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plasma time
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playing time
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poison override time
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predetermined time
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preroll time
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preset time
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press down time
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pressure resistance time
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prestrike time
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production pitch time
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productive time
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program fetch time
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program testing time
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propagation delay time
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propagation time
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proper time
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pulling-out time
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pull-out time
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pull-in time
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pull-up time
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pulse fall time
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pulse rise time
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pulse time
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ramp time
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reaction time
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read time
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readiness time
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reading readout time
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reading time
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real time
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recession time
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reclosing dead time
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reclosing time
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recovery time
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reference time
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release time
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remaining life time
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repair time
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reset time
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residence time
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response time
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restoration time
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retention time
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retrace time
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retrieval time
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reverberation time
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reversal time
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rewind time
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rig time
-
rig total operating time
-
rig-down time
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rig-up time
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rise time
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rolling time
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roughing time
-
round-trip time
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route-setting time
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run time
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run-down time
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running time
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running-down time
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running-in time
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run-up time
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scheduled departure time
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screen time
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search time
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seed-free time
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seek time
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selection time
-
self-extinction time
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service time
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serviceable time
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servicing time
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set time
-
setting time
-
settling time
-
setup time
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shelf time
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shipping time
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ship time
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shot time
-
sidereal time
-
signal modulation time
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signal transit time
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simulated time
-
sludging time
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snubbing time
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soaking time
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solar time
-
sowing time
-
specified time
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spending time
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spray-on time
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stabilization time
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standard time
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standing time
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starting time
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start time
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station time
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stay-down time
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stock-descent time
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stop time
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stopping time
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storage time
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subtraction time
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subtract time
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succession time
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summer time
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sweep time
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switchgear operating time
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switching time
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switchover time
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tack-free time
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takedown time
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tap-to-tap time
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task time
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thermal death time
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throughput time
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time of arrival
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time of coincidence
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time of delivery
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time of fall
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time of flight
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time of persistence
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time of swing
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tool-in-cut time
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track time
-
traffic release time
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trailing-edge time
-
trailing time
-
transfer time
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transient time
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transit time
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transition time
-
translating time
-
transmission time
-
traveling time
-
travel time
-
trigger time
-
trip time
-
troubleshooting time
-
true time
-
turnaround time
-
turn-off time
-
turn-on time
-
turnover time
-
turnround time
-
unit time
-
universal time
-
up time
-
useful time
-
vehicle-off-the-road time
-
viewing time
-
waiting time
-
wait time
-
waiting-on-cement time
-
warm-up time
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wavefront time
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wavetail time
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write time
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Zebra time
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zero time
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zonal time
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Zulu time -
17 Barber, John
[br]baptized 22 October 1734 Greasley, Nottinghamshire, Englandd. 6 November 1801 Attleborough, Nuneaton, England[br]English inventor of the gas turbine and jet propulsion.[br]He was the son of Francis Barber, coalmaster of Greasley, and Elizabeth Fletcher. In his will of 1765. his uncle, John Fletcher, left the bulk of his property, including collieries and Stainsby House, Horsley Woodhouse, Derbyshire, to John Barber. Another uncle, Robert, bequeathed him property in the next village, Smalley. It is clear that at this time John Barber was a man of considerable means. On a tablet erected by John in 1767, he acknowledges his debt to his uncle John in the words "in remembrance of the man who trained him up from a youth". At this time John Barber was living at Stainsby House and had already been granted his first patent, in 1766. The contents of this patent, which included a reversible water turbine, and his subsequent patents, suggest that he was very familiar with mining equipment, including the Newcomen engine. It comes as rather a surprise that c.1784 he became bankrupt and had to leave Stainsby House, evidently moving to Attleborough. In a strange twist, a descendent of Mr Sitwell, the new owner, bought the prototype Akroyd Stuart oil engine from the Doncaster Show in 1891.The second and fifth (final) patents, in 1773 and 1792, were concerned with smelting and the third, in 1776, featured a boiler-mounted impulse steam turbine. The fourth and most important patent, in 1791, describes and engine that could be applied to the "grinding of corn, flints, etc.", "rolling, slitting, forging or battering iron and other metals", "turning of mills for spinning", "turning up coals and other minerals from mines", and "stamping of ores, raising water". Further, and importantly, the directing of the fluid stream into smelting furnaces or at the stern of ships to propel them is mentioned. The engine described comprised two retorts for heating coal or oil to produce an inflammable gas, one to operate while the other was cleansed and recharged. The resultant gas, together with the right amount of air, passed to a beam-operated pump and a water-cooled combustion chamber, and then to a water-cooled nozzle to an impulse gas turbine, which drove the pumps and provided the output. A clear description of the thermodynamic sequence known as the Joule Cycle (Brayton in the USA) is thus given. Further, the method of gas production predates Murdoch's lighting of the Soho foundry by gas.It seems unlikely that John Barber was able to get his engine to work; indeed, it was well over a hundred years before a continuous combustion chamber was achieved. However, the details of the specification, for example the use of cooling water jackets and injection, suggest that considerable experimentation had taken place.To be active in the taking out of patents over a period of 26 years is remarkable; that the best came after bankruptcy is more so. There is nothing to suggest that the cost of his experiments was the cause of his financial troubles.[br]Further ReadingA.K.Bruce, 1944, "John Barber and the gas turbine", Engineer 29 December: 506–8; 8 March (1946):216, 217.C.Lyle Cummins, 1976, Internal Fire, Carnot Press.JB -
18 control
управление; регулирование; контроль; орган [рычаг] управления; руль; pl. система управления или регулирования; управлять; регулироватьback seat flight control — управление ЛА из задней кабины [с места заднего лётчика]; pl. дублирующие органы управления в задней кабине
be out of control — терять управление [управляемость]; выходить из-под управления [контроля]
continuously variable thrust control — плавное [бесступенчатое] регулирование тяги
control c.g. control — регулирование центровки (ЛА)
control of missile attitude — стабилизация ракеты; управление пространственным положением ракеты
control of the air — превосходство или господство в воздухе; превосходство в области авиации [в авиационной технике]; контроль воздушного пространства
control of the yoke — разг. управление штурвалом
control of thrust orientation — управление ориентированием [направлением вектора] тяги
flight deck lighting controls — органы управления [ручки регулировки] освещением кабины экипажа
fling the controls over — перебрасывать органы управления (в противоположную сторону),
flow control with altitude compensation — регулятор расхода [подачи] с высотным корректором
fuel dump valve control — кран [рычаг крана] аварийного слива топлива
gas jet attitude control — управление пространственным положением с помощью системы газоструйных рулей
go out of control — терять управление, выходить из-под управления [контроля]
ground rollout rudder steering control — управление пробегом [на пробеге] с помощью руля направления
interconnected fuel and propeller controls — объединённая система регулирования подачи топлива и шага винта
jet tab thrust vector control — управление вектором тяги с помощью газовых рулей; дефлекторное управление вектором тяги
jet(-deflection, -direction) control — реактивное [струйное] управление; управление изменением направления тяги; струйный руль
manual mixture shut-off control — рычаг отсечки подачи горючей смеси, рычаг останова [выключения] двигателя
maximum boundary layer control — управление пограничным слоем при наибольшей эффективности [производительности, интенсивности работы] системы
recover the control — восстанавливать управление [управляемость]
respond to the controls — реагировать [отвечать] на отклонение рулей [органов управления]
space shuttle orbiter control — управление орбитальной ступенью челночного воздушно-космического аппарата
throttle and collective pitch control — верт. рычаг «шаг — газ»
-
19 cartridge
патрон; заряд в картузе; кассета— blasting cartridge— flechette shot cartridge— low-powered cartridge— multiple-flechette cartridge— rimmed cartridge— triple bullet cartridge— triplex bullet cartridge -
20 turbine
turbine nтурбинаair turbineвоздушная турбинаaviation turbine fuelавиационное топливо для турбореактивных двигателейaxial-flow итьбю.gas turbine engineгазотурбинный двигатель с осевым компрессоромaxial-flow turbineосевая турбинаbefore the turbineперед турбинойconstant speed drive turbineтурбина привода постоянных оборотовcooling turbineтурбохолодильникfan turbineтурбина вентилятораfree power turbineсвободная турбинаfree turbineсвободная турбинаgas turbineгазотурбинный двигательgas turbine engineгазотурбинный двигательgas turbine power plantгазотурбинная силовая установкаhigh-pressure turbineтурбина высокого давленияimpulse turbineактивная турбинаlow pressure turbineтурбина низкого давленияmultistage turbineмногоступенчатая турбинаpast the turbineза турбинойpower recovery turbineтурбина с приводом от выхлопных газовradial-flow turbineцентробежная турбинаram-air turbineтурбина с приводом от набегающего потокаreaction turbineреактивная турбинаreverse-flow turbineпротивоточная турбинаsingle-shaft turbine engineодновальный газотурбинный двигательsingle-stage turbineодноступенчатая турбинаturbine blade twistкрутка лопатки турбиныturbine boreканал в ступице турбиныturbine disc hubступица диска турбиныturbine disk rimвенец диска турбиныturbine engineгазотурбинный двигательturbine entry temperatureтемпература газов на входе в турбинуturbine exhaust fairingстекатель газов, выходящих за турбинойturbine exhaust pressureдавление газов за турбинойturbine gas temperatureтемпература выходящих газов за турбинойturbine inlet pressureдавление газовturbine inlet temperatureтемпература на входе в турбинуturbine rotor bladeрабочая лопатка турбиныturbine stageступень турбиныturbine starterтурбостартерturbine wheelрабочее колесо турбиныturbine wheels spacerпромежуточное кольцо между рабочими колесами турбиныtwo-shaft turbine engineдвухвальный газотурбинный двигательtwo-stage turbineдвухступенчатая турбина
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Impulse — I (Roget s Thesaurus) < N PARAG:Impulse >N GRP: N 1 Sgm: N 1 impulse impulse impulsion impetus Sgm: N 1 momentum momentum Sgm: N 1 push push pulsion thrust shove jog jolt … English dictionary for students
Engine — This article is about a machine to convert energy into useful mechanical motion. For other uses of engine, see Engine (disambiguation). For other uses of motor, see Motor (disambiguation). A V6 internal combustion engine from a Mercedes car An… … Wikipedia
Impulse drive — In the fictional Star Trek universe, the impulse drive is the method of propulsion that starships and other spacecraft use when they are travelling below the speed of light. [] Typically powered by nuclear fusion reactions, impulse engines let… … Wikipedia
engine — Synonyms and related words: AC motor, Corliss engine, Otto engine, Wankel engine, aeromotor, air engine, alembic, anvil, apparatus, appliance, arc jet engine, axial flow turbojet, beam engine, bearings, blowing engine, boiler, caldron, cam, cam… … Moby Thesaurus
Impulse excitation technique — PracticalThe impulse excitation technique is a nondestructive test method that uses natural frequency, dimensions and mass of a test piece to determine Young s modulus, Shear modulus, Poisson s ratio and damping coefficient.Dimensions and mass of … Wikipedia
Specific impulse — (usually abbreviated I sp) is a way to describe the efficiency of rocket and jet engines. It represents the impulse (change in momentum) per unit of propellant. The higher the specific impulse, the less propellant is needed to gain a given amount … Wikipedia
Rocket engine — RS 68 being tested at NASA s Stennis Space Center. The nearly transparent exhaust is due to this engine s exhaust being mostly superheated steam (water vapor from its propellants, hydrogen and oxygen) … Wikipedia
Variable Specific Impulse Magnetoplasma Rocket — Artist s impression of several VASIMR engines propelling a craft through space The Variable Specific Impulse Magnetoplasma Rocket (VASIMR) is an electro magnetic thruster for spacecraft propulsion. It uses radio waves to ionize and heat a… … Wikipedia