-
1 method of tuning flue pipes
துளை இசைக்குழல் முறை -
2 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
-
3 difference
1) различие
2) перепад
3) разница
4) разнобойность
5) разностный
6) разность
7) приращение
8) вычислять разность
9) конечно-разностный
10) несходство
11) отличие
– backward difference
– common difference
– difference analogue
– difference approximation
– difference base
– difference equation
– difference field
– difference frequency
– difference gage
– difference in phase
– difference interval
– difference method
– difference module
– difference of latitude
– difference of longitude
– difference of phases
– difference operator
– difference quotient
– divided difference
– finite difference
– first difference
– forward difference
– it makes no difference
– parallax difference
– partial difference
– path-length difference
– phase difference
– population difference
– potential difference
– pressure difference
– propagation difference
– reciprocal difference
– weighing by difference
backward difference quotient — разностное отношение "назад"
edge difference coding — <comput.> кодирование контурных перепадов
finite difference approximation — конечно-разностное приближение
magnetic potential difference — разность магнитных потенциалов
-
4 ATM
1) Общая лексика: hum. сокр. Asynchronous Transport Mode2) Компьютерная техника: Automated Transactional Management3) Авиация: ОВД, Aircraft Transportability Manual, available ton-mile, УВД (http://moscow-translator.ru/techtranslation-english Управление воздушным движением)4) Военный термин: Air Target Materials, Air Target Mosaic, Army Training Memorandum, air task message, air traffic management, air training memorandum, air-launched training missile, antitactical missile, antitank mine, antitank missile, antitorpedo mine, тактическая противоракета5) Техника: aerial turning motor, atmosphere, standard, automatic dictation machine, automatic teaching machine, auxiliary tape memory6) Шутливое выражение: A Tremendous Migraine, All The Madness, Another Twenty Missing, Automated Theft Machine, Automatic Travel Money7) Экономика: at-the-money8) Автомобильный термин: actuator test mode9) Астрономия: Apollo Telescope Mount10) Биржевой термин: Automated Trading Machine11) Грубое выражение: Ass To Mouth12) Кино: "из попки в ротик" ass-to-mouth (Ass-to-Mouth. Porno industry term describing anal sex culmination shot. An actor withdraws from an actress & puts his penis into her mouth in one continuous shot.)13) Телекоммуникации: асинхронная система передачи14) Сокращение: Abri Technique Mobile (ISO Shelter (France)), Advanced Tactical Mini-drone (USA), Advanced Trauma Management, Air Tasking Message, Airborne Thematic Mapper, Amateur Telescope Maker, Anti-Tactical Missile, Anti-Tank Mine, Automated Teller Machine, Automatenmarken (European coin fed machines which print stamps on demand), Automatic Teller Machine (USA banks), air turbine motor, Aerial Tuning Motor, Amateur Telescope Makers' association, в данный момент(At The Moment)15) Физиология: Ataxia Telangiectasia Mutation, Awareness Through Movement16) Электроника: Automated Timing Mechanism, Automatic Timing Mechanism17) Вычислительная техника: Adobe Type Manager, система автоматического ответа, Asynchronous Transfer Mode (ATM), At The Moment (DFUE-Slang, Usenet, IRC), Abstract Test Method (ISO 9646-1), Amateur Telescope Maker (Space), автоответчик, асинхронная передача данных, торговый автомат18) Литература: Advanced Toastmaster19) Банковское дело: автоматический кассовый аппарат, банковский автомат (automatic teller machine)20) Транспорт: Automated Token Machine21) Фирменный знак: Amateur Telescope Makers, Applied Technologies Manufacturing Company22) СМИ: All Types Of Music23) Деловая лексика: After The Money, Amsterdam Treasury Bond Market, автоматическая кассовая машина (automated teller machine)24) Глоссарий компании Сахалин Энерджи: atmosphere (a unit of pressure equal to the pressure of air at sea level)25) Сетевые технологии: Application-Transaction Manager Interface, I Application-to-Transaction Manager Interface, automatic teller machine, режим асинхронной передачи (asynchronous transfer mode)26) Кабельные производство: alternative test method27) Безопасность: automatic transaction machine28) Интернет: Asynchronous Transfer Mode асинхронный режим передачи29) Расширение файла: Adobe Type Manager related file, Adobe Typeface Manager, Asynchronous Transfer Mode30) МИД: аsynchronous transfer mode31) Сотовая связь: банкомат32) Чат: Across The Miles34) Программное обеспечение: Automated Telephone Manager -
5 atm
1) Общая лексика: hum. сокр. Asynchronous Transport Mode2) Компьютерная техника: Automated Transactional Management3) Авиация: ОВД, Aircraft Transportability Manual, available ton-mile, УВД (http://moscow-translator.ru/techtranslation-english Управление воздушным движением)4) Военный термин: Air Target Materials, Air Target Mosaic, Army Training Memorandum, air task message, air traffic management, air training memorandum, air-launched training missile, antitactical missile, antitank mine, antitank missile, antitorpedo mine, тактическая противоракета5) Техника: aerial turning motor, atmosphere, standard, automatic dictation machine, automatic teaching machine, auxiliary tape memory6) Шутливое выражение: A Tremendous Migraine, All The Madness, Another Twenty Missing, Automated Theft Machine, Automatic Travel Money7) Экономика: at-the-money8) Автомобильный термин: actuator test mode9) Астрономия: Apollo Telescope Mount10) Биржевой термин: Automated Trading Machine11) Грубое выражение: Ass To Mouth12) Кино: "из попки в ротик" ass-to-mouth (Ass-to-Mouth. Porno industry term describing anal sex culmination shot. An actor withdraws from an actress & puts his penis into her mouth in one continuous shot.)13) Телекоммуникации: асинхронная система передачи14) Сокращение: Abri Technique Mobile (ISO Shelter (France)), Advanced Tactical Mini-drone (USA), Advanced Trauma Management, Air Tasking Message, Airborne Thematic Mapper, Amateur Telescope Maker, Anti-Tactical Missile, Anti-Tank Mine, Automated Teller Machine, Automatenmarken (European coin fed machines which print stamps on demand), Automatic Teller Machine (USA banks), air turbine motor, Aerial Tuning Motor, Amateur Telescope Makers' association, в данный момент(At The Moment)15) Физиология: Ataxia Telangiectasia Mutation, Awareness Through Movement16) Электроника: Automated Timing Mechanism, Automatic Timing Mechanism17) Вычислительная техника: Adobe Type Manager, система автоматического ответа, Asynchronous Transfer Mode (ATM), At The Moment (DFUE-Slang, Usenet, IRC), Abstract Test Method (ISO 9646-1), Amateur Telescope Maker (Space), автоответчик, асинхронная передача данных, торговый автомат18) Литература: Advanced Toastmaster19) Банковское дело: автоматический кассовый аппарат, банковский автомат (automatic teller machine)20) Транспорт: Automated Token Machine21) Фирменный знак: Amateur Telescope Makers, Applied Technologies Manufacturing Company22) СМИ: All Types Of Music23) Деловая лексика: After The Money, Amsterdam Treasury Bond Market, автоматическая кассовая машина (automated teller machine)24) Глоссарий компании Сахалин Энерджи: atmosphere (a unit of pressure equal to the pressure of air at sea level)25) Сетевые технологии: Application-Transaction Manager Interface, I Application-to-Transaction Manager Interface, automatic teller machine, режим асинхронной передачи (asynchronous transfer mode)26) Кабельные производство: alternative test method27) Безопасность: automatic transaction machine28) Интернет: Asynchronous Transfer Mode асинхронный режим передачи29) Расширение файла: Adobe Type Manager related file, Adobe Typeface Manager, Asynchronous Transfer Mode30) МИД: аsynchronous transfer mode31) Сотовая связь: банкомат32) Чат: Across The Miles34) Программное обеспечение: Automated Telephone Manager -
6 error
1) ошибка; погрешность; отклонение2) рассогласование; расхождение•- absolute errorerror in percent — относительная погрешность; отклонение в процентах
- absolute input error
- absolute output error
- acceptable error
- accidental error
- accumulated error
- accumulative pitch error
- additional error
- adjacent pitch error
- admissible error
- alignment error
- allowable error
- appreciable error
- assembly error
- backlash error
- base pitch error
- basic error
- bias error
- calibration error
- center distance error in machining
- center distance error
- centering error
- chucking error
- combined error
- complementary error
- component error
- composite error of a worm gear
- composite error
- computer error
- concentricity error
- confidence error
- conjugate error
- connection error
- conscious error
- consistent error
- constant error
- contour error
- control error
- conventional error
- coupling error
- cumulative base pitch error
- cumulative error of contact line
- cumulative error
- cumulative gear meshing error
- cumulative pitch error of k pitches of a worm
- cumulative pitch error of k pitches of the rack
- cumulative pitch error
- cyclic error of a gear
- cyclic error
- cylindricity error
- data reduction error
- datum error
- dead-path error
- display error
- dividing error
- dynamic error
- error of a measuring instrument
- error of approximation
- error of division
- error of function
- error of locating
- error of measurement
- error of method
- error of total length
- experimental error
- extreme error
- fatigue-related error
- flatness error
- following error
- form error
- frictional error
- gearing error
- geometrical error
- gimbal error
- gross error
- helical surface error
- human error
- inclination error
- inconsistent error
- independent error
- indexing error
- indication error
- individual error
- initial error
- input error
- instantaneous error
- instrument error
- instrumental error
- intrinsic error
- limiting error
- linear error
- linear meshing error
- load screw error
- loading error
- long-wave error
- long-wave measuring error
- machine zero position error
- manufacturing error
- maximum composite error
- maximum error
- maximum out-off-position error in the teeth
- maximum permissible error
- mean error
- mean probable error
- meshing error
- method error
- mismatch error
- mispositioning error
- monitor error
- motion related error
- mounting distance error
- mounting error
- multiple error
- noncyclic error
- nonlinear error
- nonperpendicular error
- normal adjacent pitch error
- normal individual base pitch error
- normal tooth thickness error
- observation error
- observational error
- one-to-one error
- output error
- overcutting error
- overloading error
- overspeed error
- overwriting error
- parallax error
- parallelism error
- parasitic error
- partial error
- parts-to-platen error
- peak error
- peak negative error
- peak positive error
- phase error
- pitch error
- platen-to-machine error
- positional error
- position-following error
- positioning error
- prediction-following error
- probable error
- profile error
- program data error
- program error
- programming error
- progressive error
- quadrant error
- radial composite error
- random error
- reader error
- reconstruction error
- reduced error
- reducial error
- reference mean error
- reference-limiting error
- relative error
- relative input error
- relative output error
- relocation error
- repeatable error
- residual error
- response error
- response time error
- resultant error
- retroflectors rotational error
- reversal error
- right-angle error
- rotational error
- rounding error
- roundoff error
- running-in error
- sampling error
- scale error
- screw-sizing error
- semantic error
- separation error
- servo error
- servo excess error
- servo following error
- setting error
- setup error
- shaft angle error
- sharpening plane error
- short-wave error
- short-wave measuring error
- single error
- sizing error
- slide position error
- sliding error
- slip-stick-type error
- spacing error
- static error
- statistical error
- steady-state error
- storage error
- stored error
- straigthness error
- substitution error
- successive error of division
- syntactic error
- syntactical error
- system error
- systematic error
- tangential composite error
- tangential tooth-to-tooth composite error
- thermal growth error
- thermally induced errors
- threshold error
- tolerated error
- tool-setting error
- tooth profile error
- tooth-meshing error
- tooth-spacing error
- tooth-to-tooth composite error single flank
- total alignment error of tooth
- total composite error single flank
- total composite error
- total cumulative pitch error
- total error of distortion
- total error
- total instrument error
- total measuring device error
- total profile error
- tracking error
- transient error
- transmission error
- true error
- trueness error
- truncation error
- tuning error
- turning error
- twist errors
- velocity error
- velocity transmission error
- working error
- zero error
- zero following errorEnglish-Russian dictionary of mechanical engineering and automation > error
-
7 RTM
1) Компьютерная техника: Request Transmitting Machine, Resident Task Manager2) Военный термин: Receiver/Transmitter/Modem, Requirements Traceability Matrix, Resin Transfer Molded, radar target material, radiation test model, real-time monitor, reconnaissance tactical missile, research technical memorandum3) Техника: rapid-tuning magnetron, reactor trip module, receiver-transmitter-modulator, recording tachometer, register transfer machine, regulatory technical memorandum, response technical manual, rough track mileage, running time meter, пропитка под давлением4) Сельское хозяйство: Rotary Tiller Mixer5) Шутливое выражение: Raving Toy Maniacs6) Сокращение: Radar Terrain Mapping, Ready To Move, Remote Telemetry Module, Resin Transfer Moulding, read the manual7) Электроника: Rapid Thermal Multiprocessing8) Вычислительная техника: Registered Transfer Module, Release To Manufacture / Market, Remote Test Module, Response Time Monitor, real-time manager, диспетчер исполняющей системы9) Геофизика: reverse time migration10) Транспорт: Revenue Ton - Mile, Route To Market11) СМИ: Random Thought Moment12) Деловая лексика: Release To Manufacturer, Released To Manufacturing, Requirements Traceability And Management, Results Through Motivation13) Полимеры: resin transfer moulding, РТМ (технологический процесс производства композиционных материалов, специалисты используют акроним: РТМ)14) Автоматика: rotary transfer machine15) Пластмассы: Resin Transfer Molding16) Кабельные производство: reference test method17) Расширение файла: Response Time Module, Runtime Manager (Borland)18) Аэропорты: Rotterdam, Netherlands19) Программное обеспечение: Release To Manufacturing20) Музеи: Rail Transport Museum -
8 TM
1) Компьютерная техника: Technical Machine, Template Manager, Text Memory, Translation Memory2) Авиация: Trend Monitoring3) Медицина: барабанная перепонка ( tympanic membrane)4) Американизм: Technical Memo5) Спорт: Tournament Mission6) Военный термин: Landsat Thematic Mapper, Target Material, Task Message, Team Materials, Technical Memos, Theater Missile, Threat Manager, Town Major, tactical missile, tactical monitor, target management, target marker, target marking, target missile, team member, technical manager, technical memorandum, temporary mission, test manager, test manual, traffic manager, traffic model, trailer-mounted, training management, training manual, training memorandum, training mission, trench mortar7) Техника: Thread Mount, telemetering, telemetry, temperature, mean, temporary memory, test mode, time meter, time monitor, time multiplexing, tons per minute, top margin, transmitting mirror, transverse-magnetized, true motion radar, tuning meter8) Химия: Titanium Metallic, Transition Metal9) Математика: Threshold Method, машина Тьюринга (Turing machine)10) Железнодорожный термин: Texas Mexican Railway Company11) Биржевой термин: Trading Member12) Грубое выражение: Tiny Manhood13) Телекоммуникации: Terminal Multiplexer14) Сокращение: Technical Maintenance / Manual, Telemetry, Terrain Masking, The X Window System, Theatre Missile, Thematic Mapper, Time, Transverse Magnetic, Turkmenistan, takeoff mass, team, technician-mechanic, telemetering, temperature meter, tone modulation, trademark, transcendental meditation, Turing Machine, ton-miles, многоадресная телеграмма (multiple telegram)15) Текстиль: Thin Model16) Физика: Translation Modified17) Физиология: Temperature by mouth, Tympanic Membrane18) Электроника: Transport Module, Tri Mode, Ttl Master19) Вычислительная техника: Traffic Management, tape mark, tape module, transverse magnetized, TeleMail (BBS, Berlin, DFUE), Terminal Manager (Bull, DSA), Tools for MIME (EMACS, GNU, MIME), Transaction Monitor (TP)20) Литература: Toastmaster21) Нефть: time modulation22) Космонавтика: technology demonstration mission, ТМ23) Картография: transverse Mercator (projection)24) Транспорт: To The MaxiMUM, Transportation Mobility25) Фирменный знак: Treasured Memories26) СМИ: Tall Mike, Temporal Morphologies27) Деловая лексика: Technology Migration, Time Management28) Бурение: тонно-мили (ton-miles), фирменный знак (trade mark)29) Менеджмент: Team Management30) Образование: Teaching Machine31) Сетевые технологии: transaction manager, администратор транзакций32) Полимеры: technical manual, tetramethylthiurammonosulphide, throughput maximization, trade-mark, transfer molding, twist multiple33) Автоматика: tool monitor, tracer machining, truing motor34) Контроль качества: test model, trial modification35) Пластмассы: Transfer Molded36) Сахалин Ю: medium pressure condensate37) Химическое оружие: Task Manager, Army Technical Manual (US)38) Макаров: переходный металл39) Золотодобыча: thematic maper40) Расширение файла: EOSAT Landsat Thematic Mapper data file41) Нефть и газ: estimated equivalent first-order lag constant42) Электротехника: temperature monitor43) Фантастика Time Machine44) Имена и фамилии: Ted Mcrae, Tequila Mockingbird, Thomas Merton, Tin Man, Troy Montero45) Молекулярная биология: transmembrane46) Должность: Task Master, Time Missed, Trail Master, Typing Moms47) Чат: Thanks Much, Thoroughly Mesmerizing, Trust Me, Turd Monster48) NYSE. Toyota Motor Corporation49) НАСА: Test Mobile50) Программное обеспечение: Tools For Mime51) Единицы измерений: Ten Minute52) СМС: Too Much53) Международная торговля: Trade Mission -
9 Tm
1) Компьютерная техника: Technical Machine, Template Manager, Text Memory, Translation Memory2) Авиация: Trend Monitoring3) Медицина: барабанная перепонка ( tympanic membrane)4) Американизм: Technical Memo5) Спорт: Tournament Mission6) Военный термин: Landsat Thematic Mapper, Target Material, Task Message, Team Materials, Technical Memos, Theater Missile, Threat Manager, Town Major, tactical missile, tactical monitor, target management, target marker, target marking, target missile, team member, technical manager, technical memorandum, temporary mission, test manager, test manual, traffic manager, traffic model, trailer-mounted, training management, training manual, training memorandum, training mission, trench mortar7) Техника: Thread Mount, telemetering, telemetry, temperature, mean, temporary memory, test mode, time meter, time monitor, time multiplexing, tons per minute, top margin, transmitting mirror, transverse-magnetized, true motion radar, tuning meter8) Химия: Titanium Metallic, Transition Metal9) Математика: Threshold Method, машина Тьюринга (Turing machine)10) Железнодорожный термин: Texas Mexican Railway Company11) Биржевой термин: Trading Member12) Грубое выражение: Tiny Manhood13) Телекоммуникации: Terminal Multiplexer14) Сокращение: Technical Maintenance / Manual, Telemetry, Terrain Masking, The X Window System, Theatre Missile, Thematic Mapper, Time, Transverse Magnetic, Turkmenistan, takeoff mass, team, technician-mechanic, telemetering, temperature meter, tone modulation, trademark, transcendental meditation, Turing Machine, ton-miles, многоадресная телеграмма (multiple telegram)15) Текстиль: Thin Model16) Физика: Translation Modified17) Физиология: Temperature by mouth, Tympanic Membrane18) Электроника: Transport Module, Tri Mode, Ttl Master19) Вычислительная техника: Traffic Management, tape mark, tape module, transverse magnetized, TeleMail (BBS, Berlin, DFUE), Terminal Manager (Bull, DSA), Tools for MIME (EMACS, GNU, MIME), Transaction Monitor (TP)20) Литература: Toastmaster21) Нефть: time modulation22) Космонавтика: technology demonstration mission, ТМ23) Картография: transverse Mercator (projection)24) Транспорт: To The MaxiMUM, Transportation Mobility25) Фирменный знак: Treasured Memories26) СМИ: Tall Mike, Temporal Morphologies27) Деловая лексика: Technology Migration, Time Management28) Бурение: тонно-мили (ton-miles), фирменный знак (trade mark)29) Менеджмент: Team Management30) Образование: Teaching Machine31) Сетевые технологии: transaction manager, администратор транзакций32) Полимеры: technical manual, tetramethylthiurammonosulphide, throughput maximization, trade-mark, transfer molding, twist multiple33) Автоматика: tool monitor, tracer machining, truing motor34) Контроль качества: test model, trial modification35) Пластмассы: Transfer Molded36) Сахалин Ю: medium pressure condensate37) Химическое оружие: Task Manager, Army Technical Manual (US)38) Макаров: переходный металл39) Золотодобыча: thematic maper40) Расширение файла: EOSAT Landsat Thematic Mapper data file41) Нефть и газ: estimated equivalent first-order lag constant42) Электротехника: temperature monitor43) Фантастика Time Machine44) Имена и фамилии: Ted Mcrae, Tequila Mockingbird, Thomas Merton, Tin Man, Troy Montero45) Молекулярная биология: transmembrane46) Должность: Task Master, Time Missed, Trail Master, Typing Moms47) Чат: Thanks Much, Thoroughly Mesmerizing, Trust Me, Turd Monster48) NYSE. Toyota Motor Corporation49) НАСА: Test Mobile50) Программное обеспечение: Tools For Mime51) Единицы измерений: Ten Minute52) СМС: Too Much53) Международная торговля: Trade Mission -
10 tm
1) Компьютерная техника: Technical Machine, Template Manager, Text Memory, Translation Memory2) Авиация: Trend Monitoring3) Медицина: барабанная перепонка ( tympanic membrane)4) Американизм: Technical Memo5) Спорт: Tournament Mission6) Военный термин: Landsat Thematic Mapper, Target Material, Task Message, Team Materials, Technical Memos, Theater Missile, Threat Manager, Town Major, tactical missile, tactical monitor, target management, target marker, target marking, target missile, team member, technical manager, technical memorandum, temporary mission, test manager, test manual, traffic manager, traffic model, trailer-mounted, training management, training manual, training memorandum, training mission, trench mortar7) Техника: Thread Mount, telemetering, telemetry, temperature, mean, temporary memory, test mode, time meter, time monitor, time multiplexing, tons per minute, top margin, transmitting mirror, transverse-magnetized, true motion radar, tuning meter8) Химия: Titanium Metallic, Transition Metal9) Математика: Threshold Method, машина Тьюринга (Turing machine)10) Железнодорожный термин: Texas Mexican Railway Company11) Биржевой термин: Trading Member12) Грубое выражение: Tiny Manhood13) Телекоммуникации: Terminal Multiplexer14) Сокращение: Technical Maintenance / Manual, Telemetry, Terrain Masking, The X Window System, Theatre Missile, Thematic Mapper, Time, Transverse Magnetic, Turkmenistan, takeoff mass, team, technician-mechanic, telemetering, temperature meter, tone modulation, trademark, transcendental meditation, Turing Machine, ton-miles, многоадресная телеграмма (multiple telegram)15) Текстиль: Thin Model16) Физика: Translation Modified17) Физиология: Temperature by mouth, Tympanic Membrane18) Электроника: Transport Module, Tri Mode, Ttl Master19) Вычислительная техника: Traffic Management, tape mark, tape module, transverse magnetized, TeleMail (BBS, Berlin, DFUE), Terminal Manager (Bull, DSA), Tools for MIME (EMACS, GNU, MIME), Transaction Monitor (TP)20) Литература: Toastmaster21) Нефть: time modulation22) Космонавтика: technology demonstration mission, ТМ23) Картография: transverse Mercator (projection)24) Транспорт: To The MaxiMUM, Transportation Mobility25) Фирменный знак: Treasured Memories26) СМИ: Tall Mike, Temporal Morphologies27) Деловая лексика: Technology Migration, Time Management28) Бурение: тонно-мили (ton-miles), фирменный знак (trade mark)29) Менеджмент: Team Management30) Образование: Teaching Machine31) Сетевые технологии: transaction manager, администратор транзакций32) Полимеры: technical manual, tetramethylthiurammonosulphide, throughput maximization, trade-mark, transfer molding, twist multiple33) Автоматика: tool monitor, tracer machining, truing motor34) Контроль качества: test model, trial modification35) Пластмассы: Transfer Molded36) Сахалин Ю: medium pressure condensate37) Химическое оружие: Task Manager, Army Technical Manual (US)38) Макаров: переходный металл39) Золотодобыча: thematic maper40) Расширение файла: EOSAT Landsat Thematic Mapper data file41) Нефть и газ: estimated equivalent first-order lag constant42) Электротехника: temperature monitor43) Фантастика Time Machine44) Имена и фамилии: Ted Mcrae, Tequila Mockingbird, Thomas Merton, Tin Man, Troy Montero45) Молекулярная биология: transmembrane46) Должность: Task Master, Time Missed, Trail Master, Typing Moms47) Чат: Thanks Much, Thoroughly Mesmerizing, Trust Me, Turd Monster48) NYSE. Toyota Motor Corporation49) НАСА: Test Mobile50) Программное обеспечение: Tools For Mime51) Единицы измерений: Ten Minute52) СМС: Too Much53) Международная торговля: Trade Mission -
11 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
-
12 Braun, Karl Ferdinand
[br]b. 6 June 1850 Fulda, Hesse, Germanyd. 20 April 1918 New York City, New York, USA[br]German physicist who shared with Marconi the 1909 Nobel Prize for Physics for developments in wireless telegraphy; inventor of the cathode ray oscilloscope.[br]After obtaining degrees from the universities of Marburg and Berlin (PhD) and spending a short time as Headmaster of the Thomas School in Berlin, Braun successively held professorships in theoretical physics at the universities of Marburg (1876), Strasbourg (1880) and Karlsruhe (1883) before becoming Professor of Experimental Physics at Tübingen in 1885 and Director and Professor of Physics at Strasbourg in 1895.During this time he devised experimental apparatus to determine the dielectric constant of rock salt and developed the Braun high-tension electrometer. He also discovered that certain mineral sulphide crystals would only conduct electricity in one direction, a rectification effect that made it possible to detect and demodulate radio signals in a more reliable manner than was possible with the coherer. Primarily, however, he was concerned with improving Marconi's radio transmitter to increase its broadcasting range. By using a transmitter circuit comprising a capacitor and a spark-gap, coupled to an aerial without a spark-gap, he was able to obtain much greater oscillatory currents in the latter, and by tuning the transmitter so that the oscillations occupied only a narrow frequency band he reduced the interference with other transmitters. Other achievements include the development of a directional aerial and the first practical wavemeter, and the measurement in Strasbourg of the strength of radio waves received from the Eiffel Tower transmitter in Paris. For all this work he subsequently shared with Marconi the 1909 Nobel Prize for Physics.Around 1895 he carried out experiments using a torsion balance in order to measure the universal gravitational constant, g, but the work for which he is probably best known is the addition of deflecting plates and a fluorescent screen to the Crooke's tube in 1897 in order to study the characteristics of high-frequency currents. The oscilloscope, as it was called, was not only the basis of a now widely used and highly versatile test instrument but was the forerunner of the cathode ray tube, or CRT, used for the display of radar and television images.At the beginning of the First World War, while in New York to testify in a patent suit, he was trapped by the entry of the USA into the war and remained in Brooklyn with his son until his death.[br]Principal Honours and DistinctionsNobel Prize for Physics (jointly with Marconi) 1909.Bibliography1874, "Assymetrical conduction of certain metal sulphides", Pogg. Annal. 153:556 (provides an account of the discovery of the crystal rectifier).1897, "On a method for the demonstration and study of currents varying with time", Wiedemann's Annalen 60:552 (his description of the cathode ray oscilloscope as a measuring tool).Further ReadingK.Schlesinger \& E.G.Ramberg, 1962, "Beamdeflection and photo-devices", Proceedings of the Institute of Radio Engineers 50, 991.KF -
13 Chevenard, Pierre Antoine Jean Sylvestre
SUBJECT AREA: Metallurgy[br]b. 31 December 1888 Thizy, Rhône, Franced. 15 August 1960 Fontenoy-aux-Roses, France[br]French metallurgist, inventor of the alloys Elinvar and Platinite and of the method of strengthening nickel-chromium alloys by a precipitate ofNi3Al which provided the basis of all later super-alloy development.[br]Soon after graduating from the Ecole des Mines at St-Etienne in 1910, Chevenard joined the Société de Commentry Fourchambault et Decazeville at their steelworks at Imphy, where he remained for the whole of his career. Imphy had for some years specialized in the production of nickel steels. From this venture emerged the first austenitic nickel-chromium steel, containing 6 per cent chromium and 22–4 per cent nickel and produced commercially in 1895. Most of the alloys required by Guillaume in his search for the low-expansion alloy Invar were made at Imphy. At the Imphy Research Laboratory, established in 1911, Chevenard conducted research into the development of specialized nickel-based alloys. His first success followed from an observation that some of the ferro-nickels were free from the low-temperature brittleness exhibited by conventional steels. To satisfy the technical requirements of Georges Claude, the French cryogenic pioneer, Chevenard was then able in 1912 to develop an alloy containing 55–60 per cent nickel, 1–3 per cent manganese and 0.2–0.4 per cent carbon. This was ductile down to −190°C, at which temperature carbon steel was very brittle.By 1916 Elinvar, a nickel-iron-chromium alloy with an elastic modulus that did not vary appreciably with changes in ambient temperature, had been identified. This found extensive use in horology and instrument manufacture, and even for the production of high-quality tuning forks. Another very popular alloy was Platinite, which had the same coefficient of thermal expansion as platinum and soda glass. It was used in considerable quantities by incandescent-lamp manufacturers for lead-in wires. Other materials developed by Chevenard at this stage to satisfy the requirements of the electrical industry included resistance alloys, base-metal thermocouple combinations, magnetically soft high-permeability alloys, and nickel-aluminium permanent magnet steels of very high coercivity which greatly improved the power and reliability of car magnetos. Thermostatic bimetals of all varieties soon became an important branch of manufacture at Imphy.During the remainder of his career at Imphy, Chevenard brilliantly elaborated the work on nickel-chromium-tungsten alloys to make stronger pressure vessels for the Haber and other chemical processes. Another famous alloy that he developed, ATV, contained 35 per cent nickel and 11 per cent chromium and was free from the problem of stress-induced cracking in steam that had hitherto inhibited the development of high-power steam turbines. Between 1912 and 1917, Chevenard recognized the harmful effects of traces of carbon on this type of alloy, and in the immediate postwar years he found efficient methods of scavenging the residual carbon by controlled additions of reactive metals. This led to the development of a range of stabilized austenitic stainless steels which were free from the problems of intercrystalline corrosion and weld decay that then caused so much difficulty to the manufacturers of chemical plant.Chevenard soon concluded that only the nickel-chromium system could provide a satisfactory basis for the subsequent development of high-temperature alloys. The first published reference to the strengthening of such materials by additions of aluminium and/or titanium occurs in his UK patent of 1929. This strengthening approach was adopted in the later wartime development in Britain of the Nimonic series of alloys, all of which depended for their high-temperature strength upon the precipitated compound Ni3Al.In 1936 he was studying the effect of what is now known as "thermal fatigue", which contributes to the eventual failure of both gas and steam turbines. He then published details of equipment for assessing the susceptibility of nickel-chromium alloys to this type of breakdown by a process of repeated quenching. Around this time he began to make systematic use of the thermo-gravimetrie balance for high-temperature oxidation studies.[br]Principal Honours and DistinctionsPresident, Société de Physique. Commandeur de la Légion d'honneur.Bibliography1929, Analyse dilatométrique des matériaux, with a preface be C.E.Guillaume, Paris: Dunod (still regarded as the definitive work on this subject).The Dictionary of Scientific Biography lists around thirty of his more important publications between 1914 and 1943.Further Reading"Chevenard, a great French metallurgist", 1960, Acier Fins (Spec.) 36:92–100.L.Valluz, 1961, "Notice sur les travaux de Pierre Chevenard, 1888–1960", Paris: Institut de France, Académie des Sciences.ASDBiographical history of technology > Chevenard, Pierre Antoine Jean Sylvestre
См. также в других словарях:
Ziegler–Nichols method — The Ziegler–Nichols tuning method is a heuristic method of tuning a PID controller. It was developed by John G. Ziegler and Nathaniel B. Nichols. It is performed by setting the I and D gains to zero. The P gain is then increased (from zero) until … Wikipedia
Piano tuning — is the act of making minute adjustments to the tensions of the strings of a piano to properly align the intervals between their tones so that the instrument is in tune. The meaning of the term in tune in the context of piano tuning is not simply… … Wikipedia
Pythagorean tuning — is a system of musical tuning in which the frequency relationships of all intervals are based on the ratio 3:2. Its name comes from medieval texts which attribute its discovery to Pythagoras, but its use has been documented as long ago as 3500… … Wikipedia
MAFless Tuning — is a method of operating the fuel injection system on a gasoline powered motor vehicle whereby the mass airflow meter, or MAF, is removed. Contents 1 The MAF 2 Removing the MAF 3 Advantages 4 Disadv … Wikipedia
Coefficient diagram method — (CDM), developed and introduced by Prof. Shunji Manabe in 1991. CDM is an algebraic approach applied to a polynomial loop in the parameter space, where a special diagram called a coefficient diagram is used as the vehicle to carry the necessary… … Wikipedia
Bass guitar tuning — refers to the pitch adjustments carried out on the individual strings of a bass guitar in order to achieve a prescribed arrangement of notes on the open (unfretted) strings.The electric bass guitar (or electric bass ) is a bass string instrument… … Wikipedia
O'Connor Method — Music education Major methodologies Kodály Method Orff Schulwerk Dalcroze Eurhythmics Suzuki method Instructional settings … Wikipedia
Performance tuning — is the improvement of system performance. This is typically a computer application, but the same methods can be applied to economic markets, bureaucracies or other complex systems. The motivation for such activity is called a performance problem … Wikipedia
Fifths tuning — is a non standard tuning for the double bass, used primarily in classical and jazz music. In this tuning, the double bass is tuned like a cello but an octave lower (C G D A low to high). Although fifths tuning was once the most common double bass … Wikipedia
B♭ tuning — is a method of guitar tuning in which all the strings on a six string guitar are moved down by 3 steps. For example,1 step = E → D, 2 steps = D → C,3 steps = C → B #x266D;,Tuning all the strings would result in: E → B #x266D;,A → E #x266D;,D → A… … Wikipedia
From Method to Madness — Infobox Television episode Title =From Method to Madness Series =Family Guy Caption =Stewie and Olivia perform. Season =3 Episode =18 Airdate =January 24, 2002 Production =3ACX11 Writer =Mike Barker Matt Weitzmann Director =Bert Ring Guests =Fred … Wikipedia