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61 remote sevice
дистанционное техническое обслуживание
Техническое обслуживание объекта, проводимое под управлением персонала без его непосредственного присутствия.
[ОСТ 45.152-99 ]Параллельные тексты EN-RU из ABB Review. Перевод компании Интент
Service from afarДистанционный сервисABB’s Remote Service concept is revolutionizing the robotics industryРазработанная АББ концепция дистанционного обслуживания Remote Service революционизирует робототехникуABB robots are found in industrial applications everywhere – lifting, packing, grinding and welding, to name a few. Robust and tireless, they work around the clock and are critical to a company’s productivity. Thus, keeping these robots in top shape is essential – any failure can lead to serious output consequences. But what happens when a robot malfunctions?Роботы АББ используются во всех отраслях промышленности для перемещения грузов, упаковки, шлифовки, сварки – всего и не перечислить. Надежные и неутомимые работники, способные трудиться день и ночь, они представляют большую ценность для владельца. Поэтому очень важно поддерживать их в надлежащей состоянии, ведь любой отказ может иметь серьезные последствия. Но что делать, если робот все-таки сломался?ABB’s new Remote Service concept holds the answer: This approach enables a malfunctioning robot to alarm for help itself. An ABB service engineer then receives whole diagnostic information via wireless technology, analyzes the data on a Web site and responds with support in just minutes. This unique service is paying off for customers and ABB alike, and in the process is revolutionizing service thinking.Ответом на этот вопрос стала новая концепция Remote Service от АББ, согласно которой неисправный робот сам просит о помощи. C помощью беспроводной технологии специалист сервисной службы АББ получает всю необходимую диагностическую информацию, анализирует данные на web-сайте и через считанные минуты выдает рекомендации по устранению отказа. Эта уникальная возможность одинаково ценна как для заказчиков, так и для самой компании АББ. В перспективе она способна в корне изменить весь подход к организации технического обслуживания.Every minute of production downtime can have financially disastrous consequences for a company. Traditional reactive service is no longer sufficient since on-site service engineer visits also demand great amounts of time and money. Thus, companies not only require faster help from the service organization when needed but they also want to avoid disturbances in production.Каждая минута простоя производства может привести к губительным финансовым последствиям. Традиционная организация сервиса, предусматривающая ликвидацию возникающих неисправностей, становится все менее эффективной, поскольку вызов сервисного инженера на место эксплуатации робота сопряжен с большими затратами времени и денег. Предприятия требуют от сервисной организации не только более быстрого оказания помощи, но и предотвращения возможных сбоев производства.In 2006, ABB developed a new approach to better meet customer’s expectations: Using the latest technologies to reach the robots at customer sites around the world, ABB could support them remotely in just minutes, thereby reducing the need for site visits. Thus the new Remote Service concept was quickly brought to fruition and was launched in mid-2007. Statistics show that by using the system the majority of production stoppages can be avoided.В 2006 г. компания АББ разработала новый подход к удовлетворению ожиданий своих заказчиков. Использование современных технологий позволяет специалистам АББ получать информацию от роботов из любой точки мира и в считанные минуты оказывать помощь дистанционно, в результате чего сокращается количество выездов на место установки. Запущенная в середине 2007 г. концепция Remote Service быстро себя оправдала. Статистика показывает, что её применение позволило предотвратить большое число остановок производства.Reactive maintenance The hardware that makes ABB Remote Service possible consists of a communication unit, which has a function similar to that of an airplane’s so-called black box 1. This “service box” is connected to the robot’s control system and can read and transmit diagnostic information. The unit not only reads critical diagnostic information that enables immediate support in the event of a failure, but also makes it possible to monitor and analyze the robot’s condition, thereby proactively detecting the need for maintenance.Устранение возникающих неисправностей Аппаратное устройство, с помощью которого реализуется концепция Remote Service, представляет собой коммуникационный блок, работающий аналогично черному ящику самолета (рис. 1). Этот блок считывает диагностические данные из контроллера робота и передает их по каналу GSM. Считывается не только информация, необходимая для оказания немедленной помощи в случае отказа, но и сведения, позволяющие контролировать и анализировать состояние робота для прогнозирования неисправностей и планирования технического обслуживания.If the robot breaks down, the service box immediately stores the status of the robot, its historical data (as log files), and diagnostic parameters such as temperature and power supply. Equipped with a built-in modem and using the GSM network, the box transmits the data to a central server for analysis and presentation on a dedicated Web site. Alerts are automatically sent to the nearest of ABB’s 1,200 robot service engineers who then accesses the detailed data and error log to analyze the problem.При поломке робота сервисный блок немедленно сохраняет данные о его состоянии, сведения из рабочего журнала, а также значения диагностических параметров (температура и характеристики питания). Эти данные передаются встроенным GSM-модемом на центральный сервер для анализа и представления на соответствующем web-сайте. Аварийные сообщения автоматически пересылаются ближайшему к месту аварии одному из 1200 сервисных инженеров-робототехников АББ, который получает доступ к детальной информации и журналу аварий для анализа возникшей проблемы.A remotely based ABB engineer can then quickly identify the exact fault, offering rapid customer support. For problems that cannot be solved remotely, the service engineer can arrange for quick delivery of spare parts and visit the site to repair the robot. Even if the engineer must make a site visit, service is faster, more efficient and performed to a higher standard than otherwise possible.Специалист АББ может дистанционно идентифицировать отказ и оказать быструю помощь заказчику. Если неисправность не может быть устранена дистанционно, сервисный инженер организовывает доставку запасных частей и выезд ремонтной бригады. Даже если необходимо разрешение проблемы на месте, предшествующая дистанционная диагностика позволяет минимизировать объем работ и сократить время простоя.Remote Service enables engineers to “talk” to robots remotely and to utilize tools that enable smart, fast and automatic analysis. The system is based on a machine-to-machine (M2M) concept, which works automatically, requiring human input only for analysis and personalized customer recommendations. ABB was recognized for this innovative solution at the M2M United Conference in Chicago in 2008 Factbox.Remote Service позволяет инженерам «разговаривать» с роботами на расстоянии и предоставляет в их распоряжение интеллектуальные средства быстрого автоматизированного анализа. Система основана на основе технологии автоматической связи машины с машиной (M2M), где участие человека сводится к анализу данных и выдаче рекомендаций клиенту. В 2008 г. это инновационное решение от АББ получило приз на конференции M2M United Conference в Чикаго (см. вставку).Proactive maintenanceRemote Service also allows ABB engineers to monitor and detect potential problems in the robot system and opens up new possibilities for proactive maintenance.Прогнозирование неисправностейRemote Service позволяет инженерам АББ дистанционно контролировать состояние роботов и прогнозировать возможные неисправности, что открывает новые возможности по организации профилактического обслуживания.The service box regularly takes condition measurements. By monitoring key parameters over time, Remote Service can identify potential failures and when necessary notify both the end customer and the appropriate ABB engineer. The management and storage of full system backups is a very powerful service to help recover from critical situations caused, for example, by operator errors.Сервисный блок регулярно выполняет диагностические измерения. Непрерывно контролируя ключевые параметры, Remote Service может распознать потенциальные опасности и, при необходимости, оповещать владельца оборудования и соответствующего специалиста АББ. Резервирование данных для возможного отката является мощным средством, обеспечивающим восстановление системы в критических ситуациях, например, после ошибки оператора.The first Remote Service installation took place in the automotive industry in the United States and quickly proved its value. The motherboard in a robot cabinet overheated and the rise in temperature triggered an alarm via Remote Service. Because of the alarm, engineers were able to replace a faulty fan, preventing a costly production shutdown.Первая система Remote Service была установлена на автозаводе в США и очень скоро была оценена по достоинству. Она обнаружила перегрев материнской платы в шкафу управления роботом и передала сигнал о превышении допустимой температуры, благодаря чему инженеры смогли заменить неисправный вентилятор и предотвратить дорогостоящую остановку производства.MyRobot: 24-hour remote access
Having regular access to a robot’s condition data is also essential to achieving lean production. At any time, from any location, customers can verify their robots’ status and access maintenance information and performance reports simply by logging in to ABB’s MyRobot Web site. The service enables customers to easily compare performances, identify bottlenecks or developing issues, and initiate the mostСайт MyRobot: круглосуточный дистанционный доступДля того чтобы обеспечить бесперебойное производство, необходимо иметь регулярный доступ к информации о состоянии робота. Зайдя на соответствующую страницу сайта MyRobot компании АББ, заказчики получат все необходимые данные, включая сведения о техническом обслуживании и отчеты о производительности своего робота. Эта услуга позволяет легко сравнивать данные о производительности, обнаруживать возможные проблемы, а также оптимизировать планирование технического обслуживания и модернизации. С помощью MyRobot можно значительно увеличить выпуск продукции и уменьшить количество выбросов.Award-winning solutionIn June 2008, the innovative Remote Service solution won the Gold Value Chain award at the M2M United Conference in Chicago. The value chain award honors successful corporate adopters of M2M (machine–to-machine) technology and highlights the process of combining multiple technologies to deliver high-quality services to customers. ABB won in the categoryof Smart Services.Приз за удачное решениеВ июне 2008 г. инновационное решение Remote Service получило награду Gold Value Chain (Золотая цепь) на конференции M2M United Conference в Чикаго. «Золотая цепь» присуждается за успешное масштабное внедрение технологии M2M (машина – машина), а также за достижения в объединении различных технологий для предоставления высококачественных услуг заказчикам. АББ одержала победу в номинации «Интеллектуальный сервис».Case study: Tetley Tetley GB Ltd is the world’s second-largest manufacturer and distributor of tea. The company’s manufacturing and distribution business is spread across 40 countries and sells over 60 branded tea bags. Tetley’s UK tea production facility in Eaglescliffe, County Durham is the sole producer of Tetley tea bags 2.Пример применения: Tetley Компания TetleyGB Ltd является вторым по величине мировым производителем и поставщиком чая. Производственные и торговые филиалы компании имеются в 40 странах, а продукция распространяется под 60 торговыми марками. Чаеразвесочная фабрика в Иглсклифф, графство Дарем, Великобритания – единственный производитель чая Tetley в пакетиках (рис. 2).ABB offers a flexible choice of service agreements for both new and existing robot installations, which can help extend the mean time between failures, shorten the time to repair and lower the cost of automated production.Предлагаемые АББ контракты на выполнение технического обслуживания как уже имеющихся, так и вновь устанавливаемых роботов, позволяют значительно увеличить среднюю наработку на отказ, сократить время ремонта и общую стоимость автоматизированного производства.Robots in the plant’s production line were tripping alarms and delaying the whole production cycle. The spurious alarms resulted in much unnecessary downtime that was spent resetting the robots in the hope that another breakdown could be avoided. Each time an alarm was tripped, several hours of production time was lost. “It was for this reason that we were keen to try out ABB’s Remote Service agreement,” said Colin Trevor, plant maintenance manager.Установленные в технологической линии роботы выдавали аварийные сигналы, задерживающие выполнение производственного цикла. Ложные срабатывания вынуждали перезапускать роботов в надежде предотвратить возможные отказы, в результате чего после каждого аварийного сигнала производство останавливалось на несколько часов. «Именно поэтому мы решили попробовать заключить с АББ контракт на дистанционное техническое обслуживание», – сказал Колин Тревор, начальник технической службы фабрики.To prevent future disruptions caused by unplanned downtime, Tetley signed an ABB Response Package service agreement, which included installing a service box and system infrastructure into the robot control systems. Using the Remote Service solution, ABB remotely monitors and collects data on the “wear and tear” and productivity of the robotic cells; this data is then shared with the customer and contributes to smooth-running production cycles.Для предотвращения ущерба в результате незапланированных простоев Tetley заключила с АББ контракт на комплексное обслуживание Response Package, согласно которому системы управления роботами были дооборудованы сервисными блоками с необходимой инфраструктурой. С помощью Remote Service компания АББ дистанционно собирает данные о наработке, износе и производительности роботизированных модулей. Эти данные предоставляются заказчику для оптимизации загрузки производственного оборудования.Higher production uptimeSince the implementation of Remote Service, Tetley has enjoyed greatly reduced robot downtime, with no further disruptions caused by unforeseen problems. “The Remote Service package has dramatically changed the plant,” said Trevor. “We no longer have breakdown issues throughout the shift, helping us to achieve much longer periods of robot uptime. As we have learned, world-class manufacturing facilities need world-class support packages. Remote monitoring of our robots helps us to maintain machine uptime, prevent costly downtime and ensures my employees can be put to more valuable use.”Увеличение полезного времениС момента внедрения Remote Service компания Tetley была приятно удивлена резким сокращением простоя роботов и отсутствием незапланированных остановок производства. «Пакет Remote Service резко изменил ситуацию на предприятии», – сказал Тревор. «Мы избавились от простоев роботов и смогли резко увеличить их эксплуатационную готовность. Мы поняли, что для производственного оборудования мирового класса необходим сервисный пакет мирового класса. Дистанционный контроль роботов помогает нам поддерживать их в рабочем состоянии, предотвращать дорогостоящие простои и задействовать наш персонал для выполнения более важных задач».Service accessRemote Service is available worldwide, connecting more than 500 robots. Companies that have up to 30 robots are often good candidates for the Remote Service offering, as they usually have neither the engineers nor the requisite skills to deal with robotics faults themselves. Larger companies are also enthusiastic about Remote Service, as the proactive services will improve the lifetime of their equipment and increase overall production uptime.Доступность сервисаСеть Remote Service охватывает более 700 роботов по всему миру. Потенциальными заказчиками Remote Service являются компании, имеющие до 30 роботов, но не имеющие инженеров и техников, способных самостоятельно устранять их неисправности. Интерес к Remote Service проявляют и более крупные компании, поскольку они заинтересованы в увеличении срока службы и эксплуатационной готовности производственного оборудования.In today’s competitive environment, business profitability often relies on demanding production schedules that do not always leave time for exhaustive or repeated equipment health checks. ABB’s Remote Service agreements are designed to monitor its customers’ robots to identify when problems are likely to occur and ensure that help is dispatched before the problem can escalate. In over 60 percent of ABB’s service calls, its robots can be brought back online remotely, without further intervention.В условиях современной конкуренции окупаемость бизнеса часто зависит от соблюдения жестких графиков производства, не оставляющих времени для полномасштабных или периодических проверок исправности оборудования. Контракт Remote Service предусматривает мониторинг состояния роботов заказчика для прогнозирования возможных неисправностей и принятие мер по их предотвращению. В более чем 60 % случаев для устранения неисправности достаточно дистанционной консультации в сервисной службе АББ, дальнейшего вмешательства не требуется.ABB offers a flexible choice of service agreements for both new and existing robot installations, which helps extend the mean time between failures, shorten the time to repair and lower the total cost of ownership. With four new packages available – Support, Response, Maintenance and Warranty, each backed up by ABB’s Remote Service technology – businesses can minimize the impact of unplanned downtime and achieve improved production-line efficiency.Компания АББ предлагает гибкий выбор контрактов на выполнение технического обслуживания как уже имеющихся, так и вновь устанавливаемых роботов, которые позволяют значительно увеличить среднюю наработку на отказ, сократить время ремонта и эксплуатационные расходы. Четыре новых пакета на основе технологии Remote Service – Support, Response, Maintenance и Warranty – позволяют минимизировать внеплановые простои и значительно повысить эффективность производства.The benefits of Remote Sevice are clear: improved availability, fewer service visits, lower maintenance costs and maximized total cost of ownership. This unique service sets ABB apart from its competitors and is the beginning of a revolution in service thinking. It provides ABB with a great opportunity to improve customer access to its expertise and develop more advanced services worldwide.Преимущества дистанционного технического обслуживания очевидны: повышенная надежность, уменьшение выездов ремонтных бригад, уменьшение затрат на обслуживание и общих эксплуатационных расходов. Эта уникальная услуга дает компании АББ преимущества над конкурентами и демонстрирует революционный подход к организации сервиса. Благодаря ей компания АББ расширяет доступ заказчиков к опыту своих специалистов и получает возможность более эффективного оказания технической помощи по всему миру.Тематики
- тех. обсл. и ремонт средств электросвязи
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Англо-русский словарь нормативно-технической терминологии > remote sevice
62 controller
1) управляющее устройство, устройство управления2) контроллер, командоаппарат5) контрольно-измерительный прибор; контрольно-измерительное устройство•- AC controller
- adaptive controller
- adaptive variable structure controller
- adjustable controller
- adjustable-speed controller
- air-operated controller
- all-purpose controller
- analog-to-frequency controller
- area controller
- arm controller
- astatic controller
- automatic controller
- auxiliary controller
- axis controller
- behavior-based controller
- bubble memory controller
- bus-based controller
- camshaft controller
- cascade controller
- cell controller
- cell management controller
- center controller
- centering controller
- central controller
- central programmable controller
- CNC controller
- CNC/PC-backed controller
- combination controller
- communications capable controller
- compound controller
- computer-torque controller
- conductivity controller
- constant-pressure flow controller
- continuous controller
- continuous-action controller
- conventional CNC controller
- conventional numerical controller
- copy controller
- copying controller
- correlated controller
- cycle controller
- digital controller
- digital loop controller
- direct-acting controller
- discontinuous-action controller
- discrete action controller
- disk controller
- displacement controller
- distribution controller
- DNC controller
- draft controller
- dressing controller
- drum logic controller
- edge tracking controller
- elastic feedback controller
- electric contact controller
- electric controller
- electric hydraulic controller
- electromechanical controller
- electronic controller
- electropneumatic controller
- equipment level controller
- extremal controller
- factory automation controller
- feed controller
- feedback controller
- field controller
- finite-dimensional controller
- fixed-gain controller
- flexible automation controller
- flexible controller
- floating controller
- flow controller
- FMS cell controller
- FMS line controller
- follow-up controller
- freely programmable controller
- frequency controller
- gain controller
- gemdrive axis controller
- hardware controller
- hydraulic controller
- I/O controller
- IBM compatible controller
- inching controller
- indicating controller
- indirect action controller
- industrial sequence controller
- infinite-dimensional controller
- input/output controller
- integral controller
- interfaceable controller
- intermittent controller
- LAN controller
- limiting controller
- linear controller
- low-point speed controller
- machine controller
- machine tool controller
- management controller
- manual controller
- MAP/cell controller
- master controller
- master programmable controller
- material handling controller
- mechanically operated controller
- microcomputer controller
- microprocessor controller
- microprocessor-driven machine controller
- minimum error controller
- model reference adaptive process controller
- motion controller
- motor controller
- multiaction controller
- multichannel controller
- multiinput controller
- multilevel controller
- multimachine-tool controller
- multiposition controller
- multispeed controller
- multistep controller
- narrow-band controller
- NC controller
- network controller
- neural net controller
- numerical controller
- on-off controller
- open system controller
- open-cycle controller
- optimal controller
- optimizing peak-holding controller
- oscillating controller
- output sampling controller
- PC-backed controller
- pedestal controller
- Petri net controller
- photoelectric controller
- PID controller
- pilot-operated controller
- plugboard controller
- pneumatic controller
- pneumatic-hydraulic controller
- positioning controller
- power controller
- pressure controller
- probe controller
- process controller
- process cycle controller
- production controller
- production management controller
- professional graphics controller
- program controller
- programmable controller
- programmable CRT controller
- programmable industrial controller
- programmable interface controller
- programmable logic controller
- proportional action controller
- proportional controller with disturbance-variable compensation
- proportional controller
- proportional position action controller
- proportional-plus-derivative action controller
- proportional-plus-integral action controller
- proportional-plus-integral-plus-derivative controller
- protocol controller
- pulse controller
- PWM controller
- ratio controller
- relay controller
- remote controller
- rigid feedback controller
- robot arm controller
- robot cell controller
- robot/workcenter controller
- rotary and tilt controller
- sampled-data controller
- sampling controller
- secondary controller
- self-acting controller
- self-actuated controller
- self-operated controller
- semiautomatic controller
- sequential controller
- servo controller
- shift controller
- single-duty controller
- single-variable controller
- small sequential controller
- software controller
- software-based controller
- speed controller
- static controller
- stepping controller
- strip-width controller
- supervisory controller
- system's central controller
- tape controller
- teach controller
- teaching controller
- temperature controller
- thermostatic controller
- tool life controller
- torque controller
- turning controller
- two-level controller
- two-position controller
- two-speed controller
- two-stage controller
- two-step controller
- valve controller
- variable feedback controller
- vise controller
- volume controller
- wide-band controller
- wide-range controller
- workstation controllerEnglish-Russian dictionary of mechanical engineering and automation > controller
63 interface
1) интерфейс (в языках программирования - видимая пользователю, в отличие от реализации (implementation), часть описания (функции, модуля, класса), определяющая способ их использования)- interface of class
- module interface(соглашения, определяющие способ использования данного приложения другим приложением)- host adapter interface
- narrow interface
- object interface
- open datalink interface
- personalized interface
- screen interface
- server interface(предоставляемая пользователю система окон, меню и других элементов управления, позволяющая общаться с данным приложением)Syn:4) (аппаратный) интерфейс (устройство сопряжения; сопряжение; средства сопряжения)5) сопряжение; согласование || сопрягать; согласовывать6) граница между двумя системами или приборами; место стыковки•- adaptive interface
- analog interface
- assistive user interface
- attachment-unit interface
- buffered interface
- bus interface
- bussed interface
- cable interface
- channel interface
- command-driven interface
- command-rich interface
- common user interface
- communications interface
- computer graphics interface
- computer-process interface
- contact interface
- cryptic interface
- current loop interface
- data interface
- diagnose interface
- direct interface
- DMA interface
- dummy-proof interface
- expert-friendly interface
- external interface
- file-based interface
- flexible interface
- gateway/network interface
- general-purpose interface
- general interface
- general-system interface
- graphical interface
- graphic interface
- graphical user interface
- graphic user interface
- hardware interface
- host interface
- human interface
- human-computer interface
- human-engineered interface
- human-machine interface
- hybrid interface
- I/O interface
- input-output interface
- intelligent interface
- intergateway interface
- interlevel interface
- invocation interface
- knowledgebase interface
- language interface
- loosely-coupled interface
- machine-machine interface
- man-machine interface
- master-slave interface
- memory interface
- menu-based interface
- menu-driven interface
- mouse interface
- multimedia interface
- natural interface
- natural language interface
- network interface
- NL interface
- N-wire interface
- open prepress interface
- organization interface
- packet-switching interface
- peripheral interface
- physical interface
- pin-level interface
- power interface
- procedural language interface
- processor interface
- programmable interface
- programmer interface
- seamless interface
- serial interface
- software-to-software interface
- standardized interface
- standard interface
- stream interface
- surface-perspective interface
- sw/hw interface
- task-constrained interface
- text-oriented interface
- transparent interface
- trigger interface
- user interface
- user-friendly interface
- video interface
- virtual interface
- vision interface
- visual/iconic interface
- wimp interfaceEnglish-Russian dictionary of computer science and programming > interface
64 Meikle, Andrew
SUBJECT AREA: Agricultural and food technology[br]b. 1719 Scotlandd. 27 November 1811[br]Scottish millwright and inventor of the threshing machine.[br]The son of the millwright James Meikle, who is credited with the introduction of the winnowing machine into Britain, Andrew Meikle followed in his father's footsteps. His inventive inclinations were first turned to developing his father's idea, and together with his own son George he built and patented a double-fan winnowing machine.However, in the history of agricultural development Andrew Meikle is most famous for his invention of the threshing machine, patented in 1784. He had been presented with a model of a threshing mill designed by a Mr Ilderton of Northumberland, but after failing to make a full-scale machine work, he developed the concept further. He eventually built the first working threshing machine for a farmer called Stein at Kilbagio. The patent revolutionized farming practice because it displaced the back-breaking and soul-destroying labour of flailing the grain from the straw. The invention was of great value in Scotland and in northern England when the land was becoming underpopulated as a result of heavy industrialization, but it was bitterly opposed in the south of England until well into the nineteenth century. Although the introduction of the threshing machine led to the "Captain Swing" riots of the 1830s, in opposition to it, it shortly became universal.Meikle's provisional patent in 1785 was a natural progression of earlier attempts by other millwrights to produce such a machine. The published patent is based on power provided by a horse engine, but these threshing machines were often driven by water-wheels or even by windmills. The corn stalks were introduced into the machine where they were fed between cast-iron rollers moving quite fast against each other to beat the grain out of the ears. The power source, whether animal, water or wind, had to cause the rollers to rotate at high speed to knock the grain out of the ears. While Meikle's machine was at first designed as a fixed barn machine powered by a water-wheel or by a horse wheel, later threshing machines became mobile and were part of the rig of an agricultural contractor.In 1788 Meikle was awarded a patent for the invention of shuttered sails for windmills. This patent is part of the general description of the threshing machine, and whilst it was a practical application, it was superseded by the work of Thomas Cubitt.At the turn of the century Meikle became a manufacturer of threshing machines, building appliances that combined the threshing and winnowing principles as well as the reciprocating "straw walkers" found in subsequent threshing machines and in conventional combine harvesters to the present day. However, he made little financial gain from his invention, and a public subscription organized by the President of the Board of Agriculture, Sir John Sinclair, raised £1,500 to support him towards the end of his life.[br]Bibliography1831, Threshing Machines in The Dictionary of Mechanical Sciences, Arts and Manufactures, London: Jamieson, Alexander.7 March 1768, British patent no. 896, "Machine for dressing wheat, malt and other grain and for cleaning them from sand, dust and smut".9 April 1788, British patent no. 1,645, "Machine which may be worked by cattle, wind, water or other power for the purpose of separating corn from the straw".Further ReadingJ.E.Handley, 1953, Scottish Farming in the 18th Century, and 1963, The Agricultural Revolution in Scotland (both place Meikle and his invention within their context).G.Quick and W.Buchele, 1978, The Grain Harvesters, American Society of Agricultural Engineers (gives an account of the early development of harvesting and cereal treatment machinery).KM / AP65 language
[ˈlæŋɡwɪdʒ]algorithmic language вчт. алгоритмический язык algorithmical language вчт. алгоритмическый язык applicative language вчт. функциональный язык artifical language вчт. искусственный язык artificial language вчт. искусственный язык assembler language вчт. язык ассемблера assembly language вчт. язык ассемблера authoring language вчт. язык для автоматизации творческой работы block-structured language вчт. язык с блочной структурой boolean-based language вчт. язык булевых операторов command language вчт. командный язык compiled language вчт. транслируемый язык compiler language вчт. язык транслятора computer language вчт. машинный язык computer-dependent language вчт. машинно-зависимый язык computer-oriented language вчт. машинно-ориентированный язык computer-sensitive language вчт. машинно-зависимый язык constraint language вчт. декларативный язык context-free language вчт. контекстно-свободный язык conversational language вчт. диалоговый язык conversational language вчт. язык диалога data definition language вчт. язык определения данных data description language вчт. язык описания данных data description language вчт. язык определения данных data language вчт. язык описания данных data manipulation language вчт. язык манипулирования данными data-base language вчт. язык базы данных data-query language вчт. язык запросов declarative language вчт. декларативный язык design language вчт. язык проектирования end-user language вчт. язык конечного пользователя extensible language вчт. расширяемый язык language язык; речь; finger language язык жестов, язык глухонемых foreign language иностранный язык formal language формальный язык frame language вчт. фреймовый язык high-level language вчт. язык высокого уровня host language вчт. включающий язык human language естественный язык language разг. брань (тж. bad language); I won't have any language here прошу не выражаться inflected language флективный язык information retrieval language информационно- поисковый язык information retrieval language информационно-поисковый язык input language вчт. входной язык interactive language вчт. диалоговый язык interpreted language вчт. интерпретируемый язык kernel language вчт. базовый язык knowledge representation language вчт. язык представления знаний language разг. брань (тж. bad language); I won't have any language here прошу не выражаться language стиль; язык писателя; the language of Shakespeare язык Шекспира language язык language язык; речь; finger language язык жестов, язык глухонемых language стиль; язык писателя; the language of Shakespeare язык Шекспира language of the case язык судебного делопроизводства legal language юридический язык legal language язык права low-level language вчт. язык низкого уровня machine language вчт. машинный язык machine-dependent language вчт. машинно-зависимый язык machine-independent language вчт. машинно-независимый язык machine-oriented language вчт. машинно-ориентрированный язык macro language вчт. макроязык macroinstruction language вчт. язык макрокоманд memory management language вчт. язык управления памятью meta language вчт. метаязык minority language язык национального меньшинства mnemonic language вчт. символический язык national language государственный язык native language вчт. собственный язык машины natural language вчт. естественный язык nonprocedural language вчт. непроцедурный язык object language вчт. объектный язык official language официальный язык original language исходный язык parallel language вчт. язык параллельного программирования predicate language вчт. язык предикатов problem statement language вчт. язык постановки задачи problem-oriented language вчт. проблемно-ориентированный язык procedural language вчт. процедурный язык procedural language процедурный язык procedure-oriented language вчт. процедурно ориентированный язык production language вчт. продукционный язык program language вчт. язык программирования programming language вчт. язык программирования query language вчт. язык запросов register transfer language вчт. язык межрегистровых пересылок regular language вчт. регулярный язык relational language вчт. реляционный язык representation language вчт. язык представлений restricted language вчт. упрощенная версия языка rule language вчт. язык правил rule-based language вчт. язык продукционных правил rule-oriented language вчт. язык логического программирования script language вчт. язык сценариев serial language вчт. язык последовательного программирования source language вчт. исходный язык source language cmp. исходный язык specification language вчт. язык спецификаций subset language вчт. подмножество языка symbolic language вчт. символический язык symbolic language comp. символический язык system language вчт. системный язык tabular language вчт. табличный язык target language вчт. выходной язык target language выходной язык target language объектный язык threaded language вчт. язык транслируемый в шитый код typed language вчт. широко используемый язык typeless language вчт. безтиповый язык unchecked language вчт. язык без контроля типов untyped language вчт. язык без контроля типов update language вчт. язык корректирующих запросов user language вчт. язык пользователя world language международный язык66 control
1) управление; регулирование; регулировка || управлять; регулировать; задавать2) контроль; проверка || контролировать; проверять3) орган управления; орган регулировки, регулятор; орган настройки4) устройство управления; блок управления6) рукоятка или рычаг управления7) профилактические мероприятия, надзор•"operation is under control" — всё предусмотрено для нормальной работы;to gain control — вчт. получать управление:to go out of control — становиться неуправляемым;to operate ( to handle) the flight controls — оперировать органами управления полётом;to pass control — вчт. передавать управление;to return control — вчт. возвращать управление;to take over control — брать управление на себя;to transfer control — вчт. передавать управление-
cascaded control-
cathode control-
CO/O2 combustion control-
communications control-
computer control-
contactor-type control-
continuous-path control-
course gage control-
current-mode control-
dispatcher control-
focusing control-
holding control-
horizontal-frequency control-
hue range control-
long-distance control-
managerial control-
microprogramming control-
numerical program control-
on-off action control-
position-based control-
slide control-
step-by-step control-
time-pattern control67 work
1. nounat work — (engaged in working) bei der Arbeit; (fig.): (operating) am Werk (see also academic.ru/23063/e">e)
be at work on something — an etwas (Dat.) arbeiten; (fig.) auf etwas (Akk.) wirken
set to work — [Person:] sich an die Arbeit machen
set somebody to work — jemanden an die Arbeit schicken
all work and no play — immer nur arbeiten
have one's work cut out — viel zu tun haben; sich ranhalten müssen (ugs.)
2) (thing made or achieved) Werk, dasis that all your own work? — hast du das alles selbst gemacht?
work of art — Kunstwerk, das
a work of reference/literature/art — ein Nachschlagewerk/literarisches Werk/Kunstwerk
5) (employment) Arbeit, dieout of work — arbeitslos; ohne Arbeit
7) in pl. (Mil.) Werke; Befestigungen8) in pl. (operations of building etc.) Arbeitenthe [whole/full] works — der ganze Kram (ugs.)
2. intransitive verb,give somebody the works — (fig.) (give somebody the best possible treatment) jemandem richtig verwöhnen (ugs.); (give somebody the worst possible treatment) jemanden fertig machen (salopp)
1) arbeitenwork for a cause — etc. für eine Sache usw. arbeiten
work against something — (impede) einer Sache (Dat.) entgegenstehen
2) (function effectively) funktionieren; [Charme:] wirken (on auf + Akk.)make the washing machine/television work — die Waschmaschine/den Fernsehapparat in Ordnung bringen
3) [Rad, Getriebe, Kette:] laufen4) (be craftsman)work in a material — mit od. (fachspr.) in einem Material arbeiten
5) [Faktoren, Einflüsse:] wirken (on auf + Akk.)work against — arbeiten gegen; see also work on
6) (make its/one's way) sich schieben3. transitive verb,work round to a question — (fig.) sich zu einer Frage vorarbeiten
1) (operate) bedienen [Maschine]; fahren [Schiff]; betätigen [Bremse]2) (get labour from) arbeiten lassen3) (get material from) ausbeuten [Steinbruch, Grube]4) (operate in or on) [Vertreter:] bereisen5) (control) steuern6) (effect) bewirken [Änderung]; wirken [Wunder]work it or things so that... — (coll.) es deichseln, dass... (ugs.)
work one's way up/into something — sich hocharbeiten/in etwas (Akk.) hineinarbeiten
8) (get gradually) bringenwork something into something — etwas zu etwas verarbeiten; (mix in) etwas unter etwas (Akk.) rühren
10) (gradually excite)work oneself into a state/a rage — sich aufregen/in einen Wutanfall hineinsteigern
12) (purchase, obtain with labour) abarbeiten; (fig.)she worked her way through college — sie hat sich (Dat.) ihr Studium selbst verdient; see also passage 6)
Phrasal Verbs:- work in- work off- work on- work out- work up* * *[wə:k] 1. noun1) (effort made in order to achieve or make something: He has done a lot of work on this project) die Arbeit2) (employment: I cannot find work in this town.) die Arbeit3) (a task or tasks; the thing that one is working on: Please clear your work off the table.) die Arbeit4) (a painting, book, piece of music etc: the works of Van Gogh / Shakespeare/Mozart; This work was composed in 1816.) das Werk5) (the product or result of a person's labours: His work has shown a great improvement lately.) die Arbeit6) (one's place of employment: He left (his) work at 5.30 p.m.; I don't think I'll go to work tomorrow.) die Arbeit2. verb1) (to (cause to) make efforts in order to achieve or make something: She works at the factory three days a week; He works his employees very hard; I've been working on/at a new project.) arbeiten2) (to be employed: Are you working just now?) arbeiten3) (to (cause to) operate (in the correct way): He has no idea how that machine works / how to work that machine; That machine doesn't/won't work, but this one's working.) funktionieren4) (to be practicable and/or successful: If my scheme works, we'll be rich!) klappen5) (to make (one's way) slowly and carefully with effort or difficulty: She worked her way up the rock face.) sich arbeiten6) (to get into, or put into, a stated condition or position, slowly and gradually: The wheel worked loose.) sich arbeiten7) (to make by craftsmanship: The ornaments had been worked in gold.) arbeiten•- -work- workable
- worker
- works 3. noun plural2) (deeds, actions etc: She's devoted her life to good works.) das Werk•- work-basket- work-box
- workbook
- workforce
- working class
- working day
- work-day
- working hours
- working-party
- work-party
- working week
- workman
- workmanlike
- workmanship
- workmate
- workout
- workshop
- at work
- get/set to work
- go to work on
- have one's work cut out
- in working order
- out of work
- work of art
- work off
- work out
- work up
- work up to
- work wonders* * *[wɜ:k, AM wɜ:rk]I. NOUNto be at \work am Werk seinforces of destruction are at \work here hier sind zerstörerische Kräfte am Werkvarious factors are at \work in this situation in dieser Situation spielen verschiedene Faktoren eine Rollegood \work! gute Arbeit!there's a lot of \work to be done yet es gibt noch viel zu tunthe garden needs a lot of \work im Garten muss [so] einiges gemacht werden\work on the tunnel has been suspended die Arbeiten am Tunnel wurden vorübergehend eingestelltdid you manage to get a bit of \work done? konntest du ein bisschen arbeiten?construction/repair \work Bau-/Reparaturarbeiten plresearch \work Forschungsarbeit fit's hard \work doing sth (strenuous) es ist anstrengend, etw zu tun; (difficult) es ist schwierig, etw zu tunto be at \work doing sth [gerade] damit beschäftigt sein, etw zu tunto make \work for sb jdm Arbeit machenwhat sort of \work do you have experience in? über welche Berufserfahrung verfügen Sie?she's got \work as a translator sie hat Arbeit [o eine Stelle] als Übersetzerin gefundento look for \work auf Arbeitssuche seinhe's looking for \work as a system analyst er sucht Arbeit [o eine Stelle] als Systemanalytikerto be in \work Arbeit [o eine Stelle] habento be out of \work arbeitslos seinto be late for \work zu spät zur Arbeit kommento have to stay late at \work lange arbeiten müssento be at \work bei der Arbeit seinto be off \work frei haben; (without permission) fehlento be off \work sick sich akk krankgemeldet habento commute to \work pendelnto get to \work by car/on the train mit dem Auto/mit dem Zug zur Arbeit fahrento go/travel to \work zur Arbeit gehen/fahrento be injured at \work einen Arbeitsunfall habento ring sb from \work jdn von der Arbeit [aus] anrufen4. (construction, repairs)▪ \works pl Arbeiten plbuilding/road \works Bau-/Straßenarbeiten plthis is the \work of professional thieves das ist das Werk professioneller Diebegood \works REL gute Werke6. ART, LIT, MUS Werk nt‘The Complete W\works of William Shakespeare’ ‚Shakespeares gesammelte Werke‘\works of art Kunstwerke pl\work in bronze Bronzearbeiten pl\work in leather aus Leder gefertigte Arbeitensb's early/later \work jds Früh-/Spätwerk ntto show one's \work in a gallery seine Arbeiten in einer Galerie ausstellen7. (factory)▪ \works + sing/pl vb Werk nt, Fabrik fsteel \works Stahlwerk nttwo large pizzas with the \works, please! esp AM zwei große Pizzen mit allem bitte!11. MIL▪ \works pl Befestigungen pl12.II. NOUN MODIFIER\work clothes Arbeitskleidung f\work speed Arbeitstempo nt2.\works premises Werksgelände ntIII. INTRANSITIVE VERB1. (do a job) arbeitenwhere do you \work? wo arbeiten Sie?to \work as an accountant als Buchhalter arbeitento \work a twelve-hour day/a forty-hour week zwölf Stunden am Tag/vierzig Stunden in der Woche arbeitento \work from home zu Hause [o von zu Hause aus] arbeitento \work at the hospital/abroad im Krankenhaus/im Ausland arbeitento \work hard hart arbeitento \work together zusammenarbeiten▪ to \work with sb mit jdm zusammenarbeitenwe're \working to prevent it happening again wir bemühen uns [o arbeiten daran], so etwas in Zukunft zu verhindernto \work towards a degree in biology einen Hochschulabschluss in Biologie anstrebenwe're \working on it wir arbeiten daranto \work at a problem an einem Problem arbeitento \work hard at doing sth hart daran arbeiten, etw zu tun3. (have an effect) sich auswirkento \work both ways sich sowohl positiv als auch negativ auswirken▪ to \work in sb's favour sich zu jds Gunsten auswirkenmy cell phone doesn't \work mein Handy geht nichtthe boiler seems to be \working okay der Boiler scheint in Ordnung zu seinI can't get this washing machine to \work ich kriege die Waschmaschine irgendwie nicht zum Laufento \work off batteries batteriebetrieben seinto \work off the mains BRIT mit Netzstrom arbeitento \work off wind power mit Windenergie arbeitento \work in practice [auch] in der Praxis funktionieren7. (be based)to \work on the assumption/idea that... von der Annahme/Vorstellung ausgehen, dass...8. (move)to \work free/loose sich lösen/lockernto \work windward NAUT gegen den Wind segeln10. NAUTto \work windward [hart] am Wind segeln11.▶ to \work like a charm [or like magic] Wunder bewirkenIV. TRANSITIVE VERB1. (make work)to \work sb/oneself hard jdm/sich viel abverlangen2. (operate)to be \worked by electricity/steam elektrisch/dampfgetrieben seinto be \worked by wind power durch Windenergie angetrieben werden3. (move)to \work one's way through an article/a book sich akk durch einen Artikel/ein Buch durcharbeitento \work one's way through a crowd/out of a crowded room sich dat einen Weg durch die Menge/aus einem überfüllten Zimmer bahnento \work one's way down a list eine Liste durchgehento \work one's way up sich akk hocharbeitenhe's \worked his way up through the firm er hat sich in der Firma hochgearbeitetto \work sth free/loose etw losbekommen/lockernto \work sth [backwards and forwards] etw [hin- und her]bewegen4. (bring about)▪ to \work sth etw bewirkenI don't know how she \worked it! ich weiß nicht, wie sie das geschafft hat!to \work oneself into a more positive frame of mind sich dat eine positivere Lebenseinstellung erarbeitento \work a cure eine Heilung herbeiführento \work a miracle ein Wunder vollbringento \work miracles [or wonders] [wahre] Wunder vollbringen5. (get)to \work oneself into a state sich akk aufregento \work sb into a state of jealousy jdn eifersüchtig machen6. (shape)▪ to \work sth etw bearbeitento \work clay Ton formen▪ to \work sth into sth etw in etw akk einarbeiten; food etw mit etw dat vermengen; (incorporate) etw in etw akk einbauen [o einfügen]to \work the ingredients together die Zutaten [miteinander] vermengento \work sth into the skin (rub) die Haut mit etw dat einreiben; (massage) etw in die Haut einmassieren8. (embroider)▪ to \work sth etw [auf]sticken9. (cultivate)to \work the land das Land bewirtschaften; (exploit)to \work a mine/quarry eine Mine/einen Steinbruch ausbeuten10. (cover)to \work the inner city [area]/the East Side für die Innenstadt/die East Side zuständig sein11. (pay for by working)to \work one's passage sich dat seine Überfahrt durch Arbeit auf dem Schiff verdienento \work one's way through university sich dat sein Studium finanzieren12.▶ to \work one's fingers to the bone [for sb] ( fam) sich dat [für jdn] den Rücken krumm arbeiten fam* * *[wɜːk]1. nto be at work (on sth) ( — an etw dat ) arbeiten
there are forces at work which... — es sind Kräfte am Werk, die...
nice or good work! — gut or super (inf) gemacht!
we've a lot of work to do before this choir can give a concert — wir haben noch viel zu tun, ehe dieser Chor ein Konzert geben kann
you need to do some more work on your accent/your technique — Sie müssen noch an Ihrem Akzent/an Ihrer Technik arbeiten
to get or set to work on sth — sich an etw (acc) machen
to put a lot of work into sth — eine Menge Arbeit in etw (acc) stecken
to make short or quick work of sb/sth — mit jdm/etw kurzen Prozess machen
time/the medicine had done its work — die Zeit/Arznei hatte ihr Werk vollbracht/ihre Wirkung getan
it was hard work for the old car to get up the hill — das alte Auto hatte beim Anstieg schwer zu schaffen
2) (= employment, job) Arbeit fhow long does it take you to get to work? — wie lange brauchst du, um zu deiner Arbeitsstelle zu kommen?
at work — an der Arbeitsstelle, am Arbeitsplatz
3) (= product) Arbeit f; (ART, LITER) Werk ntgood works — gute Werke pl
a chance for artists to show their work — eine Gelegenheit für Künstler, ihre Arbeiten or Werke zu zeigen
5) pl (MECH) Getriebe, Innere(s) nt; (of watch, clock) Uhrwerk nt6) sing or pl (Brit: factory) Betrieb m, Fabrik fgas/steel works — Gas-/Stahlwerk nt
7) (inf)pl alles Drum und Dranwe had fantastic food, wine, brandy, the works — es gab tolles Essen, Wein, Kognak, alle Schikanen (inf)
he was giving his opponent the works — er machte seinen Gegner nach allen Regeln der Kunst fertig (inf)
2. vi1) person arbeiten (at an +dat)to work toward(s)/for sth — auf etw (acc) hin/für etw arbeiten
or favor (US) — diese Faktoren, die gegen uns/zu unseren Gunsten arbeiten
2) (= function, operate) funktionieren; (plan) funktionieren, klappen (inf); (medicine, spell) wirken; (= be successful) klappen (inf)"not working" (lift etc) — "außer Betrieb"
but this arrangement will have to work both ways — aber diese Abmachung muss für beide Seiten gelten
3) (yeast) arbeiten, treiben5)(= move gradually)
to work loose — sich lockernto work round (wind, object) — sich langsam drehen (to nach)
he worked (a)round to asking her — er hat sich aufgerafft, sie zu fragen
OK, I'm working (a)round to it — okay, das mache ich schon noch
3. vtto work oneself/sb hard — sich/jdn nicht schonen
to work sth by electricity/hand — etw elektrisch/mit Hand betreiben
3) (= bring about) change, cure bewirken, herbeiführento work it ( so that...) (inf) — es so deichseln(, dass...) (inf)
See:→ work upwork the flour in gradually/the ingredients together — mischen Sie das Mehl allmählich unter/die Zutaten (zusammen)
6) (= exploit) mine ausbeuten, abbauen; land bearbeiten; smallholding bewirtschaften; (salesman) area bereisen7) muscles trainieren8)(= move gradually)
to work one's hands free — seine Hände freibekommenhe worked his way across the rock face/through the tunnel — er überquerte die Felswand/kroch durch den Tunnel
to work oneself into sb's confidence — sich in jds Vertrauen (acc) einschleichen
* * *A s1. allg Arbeit f:a) Beschäftigung f, Tätigkeit fb) Aufgabe fc) Hand-, Nadelarbeit f, Stickerei f, Näherei fd) Leistung fe) Erzeugnis n:work done geleistete Arbeit;a beautiful piece of work eine schöne Arbeit;a) bei der Arbeit,b) am Arbeitsplatz,c) in Tätigkeit, in Betrieb (Maschine etc);be at work on arbeiten an (dat);do work arbeiten;I’ve got some work to do ich muss arbeiten;do the work of three (men) für drei arbeiten;be in (out of) work (keine) Arbeit haben;(put) out of work arbeitslos (machen);set to work an die Arbeit gehen, sich an die Arbeit machen;take some work home Arbeit mit nach Hause nehmen;have one’s work cut out (for one) zu tun haben, schwer zu schaffen haben;make work Arbeit verursachen;make light work of spielend fertig werden mit;make sad work of arg wirtschaften oder hausen mit;2. PHYS Arbeit f:3. auch koll (künstlerisches etc) Werk:4. Werk n (Tat und Resultat):this is your work!;5. pla) ARCH Anlagen pl, (besonders öffentliche) Bauten plb) Baustelle f (an einer Autobahn etc)c) MIL (Festungs)Werk n, Befestigungen pl7. pl TECH (Räder-, Trieb)Werk n, Getriebe n:9. REL (gutes) Werkgive sb the works umg jemanden fertigmachen;B v/i prät und pperf worked, besonders obs oder poet wrought [rɔːt]1. (at, on) arbeiten (an dat), sich beschäftigen (mit):work at a social reform an einer Sozialreform arbeiten;make one’s money work sein Geld arbeiten lassen2. arbeiten, Arbeit haben, beschäftigt seinagainst gegen;for für eine Sache):work toward(s) hinarbeiten auf (akk)4. TECHa) funktionieren, gehen (beide auch fig)b) in Betrieb oder Gang sein:our stove works well unser Ofen funktioniert gut;your method won’t work mit Ihrer Methode werden Sie es nicht schaffen;get sth to work etwas reparieren5. fig klappen, gehen, gelingen, sich machen lassenthe poison began to work das Gift begann zu wirken8. sich gut etc bearbeiten lassen9. sich (hindurch-, hoch- etc) arbeiten:work into eindringen in (akk);work loose sich losarbeiten, sich lockern;her tights worked down die Strumpfhose rutschte ihr herunter10. in (heftiger) Bewegung sein, arbeiten, zucken ( alle:12. gären, arbeiten (beide auch fig: Gedanke etc)C v/t1. arbeiten an (dat)2. verarbeiten:a) TECH bearbeitenb) einen Teig kneteninto zu):work cotton into cloth Baumwolle zu Tuch verarbeiten4. (an-, be)treiben:worked by electricity elektrisch betrieben7. Bergbau: eine Grube abbauen, ausbeuten9. jemanden, Tiere (tüchtig) arbeiten lassen, (zur Arbeit) antreibenfor wegen):11. a) work one’s way sich (hindurch- etc) arbeitenb) erarbeiten, verdienen: → passage1 512. MATH lösen, ausarbeiten, errechnenwork o.s. into a rage sich in eine Wut hineinsteigern14. bewegen, arbeiten mit:he worked his jaws seine Kiefer mahlten15. fig (prät oft wrought) hervorbringen, -rufen, zeitigen, Veränderungen etc bewirken, Wunder wirken oder tun, führen zu, verursachen:work hardship on sb für jemanden eine Härte bedeuten17. work intoa) eine Arbeit etc einschieben in (akk),18. sl etwas herausschlagen19. US sl jemanden bescheißen20. herstellen, machen, besonders stricken, nähen21. zur Gärung bringenw. abk1. weight2. wide3. width4. wife5. withwk abk1. week Wo.2. work* * *1. noun1) no pl., no indef. art. Arbeit, dieat work — (engaged in working) bei der Arbeit; (fig.): (operating) am Werk (see also e)
be at work on something — an etwas (Dat.) arbeiten; (fig.) auf etwas (Akk.) wirken
set to work — [Person:] sich an die Arbeit machen
have one's work cut out — viel zu tun haben; sich ranhalten müssen (ugs.)
2) (thing made or achieved) Werk, daswork of art — Kunstwerk, das
3) (book, piece of music) Werk, dasa work of reference/literature/art — ein Nachschlagewerk/literarisches Werk/Kunstwerk
4) in pl. (of author or composer) Werke5) (employment) Arbeit, dieout of work — arbeitslos; ohne Arbeit
at work — (place of employment) auf der Arbeit (see also a)
7) in pl. (Mil.) Werke; Befestigungen8) in pl. (operations of building etc.) Arbeitenthe [whole/full] works — der ganze Kram (ugs.)
2. intransitive verb,give somebody the works — (fig.) (give somebody the best possible treatment) jemandem richtig verwöhnen (ugs.); (give somebody the worst possible treatment) jemanden fertig machen (salopp)
1) arbeitenwork for a cause — etc. für eine Sache usw. arbeiten
work against something — (impede) einer Sache (Dat.) entgegenstehen
2) (function effectively) funktionieren; [Charme:] wirken (on auf + Akk.)make the washing machine/television work — die Waschmaschine/den Fernsehapparat in Ordnung bringen
3) [Rad, Getriebe, Kette:] laufenwork in a material — mit od. (fachspr.) in einem Material arbeiten
5) [Faktoren, Einflüsse:] wirken (on auf + Akk.)work against — arbeiten gegen; see also work on
6) (make its/one's way) sich schieben3. transitive verb,work round to a question — (fig.) sich zu einer Frage vorarbeiten
1) (operate) bedienen [Maschine]; fahren [Schiff]; betätigen [Bremse]2) (get labour from) arbeiten lassen3) (get material from) ausbeuten [Steinbruch, Grube]4) (operate in or on) [Vertreter:] bereisen5) (control) steuern6) (effect) bewirken [Änderung]; wirken [Wunder]work it or things so that... — (coll.) es deichseln, dass... (ugs.)
7) (cause to go gradually) führenwork one's way up/into something — sich hocharbeiten/in etwas (Akk.) hineinarbeiten
8) (get gradually) bringen9) (knead, stir)work something into something — etwas zu etwas verarbeiten; (mix in) etwas unter etwas (Akk.) rühren
work oneself into a state/a rage — sich aufregen/in einen Wutanfall hineinsteigern
11) (make by needlework etc.) arbeiten; aufsticken [Muster] (on auf + Akk.)12) (purchase, obtain with labour) abarbeiten; (fig.)she worked her way through college — sie hat sich (Dat.) ihr Studium selbst verdient; see also passage 6)
Phrasal Verbs:- work in- work off- work on- work out- work up* * *(hard) for expr.erarbeiten v.sich etwas erarbeiten ausdr. v.arbeiten v.funktionieren v. n.Arbeit -en f.Werk -e n.68 Cotton, William
SUBJECT AREA: Textiles[br]b. 1819 Seagrave, Leicestershire, Englandd. after 1878[br]English inventor of a power-driven flat-bed knitting machine.[br]Cotton was originally employed in Loughborough and became one of the first specialized hosiery-machine builders. After the introduction of the latch needle by Matthew Townsend in 1856, knitting frames developed rapidly. The circular frame was easier to work automatically, but attempts to apply power to the flat frame, which could produce fully fashioned work, culminated in 1863 with William Cotton's machine. In that year he invented a machine that could make a dozen or more stockings or hose simultaneously and knit fashioned garments of all kinds. The difficulty was to reduce automatically the number of stitches in the courses where the hose or garment narrowed to give it shape. Cotton had early opportunities to apply himself to the improvement of hosiery machines while employed in the patent shop of Cartwright \& Warner of Loughborough, where some of the first rotaries were made. He remained with the firm for twenty years, during which time sixty or seventy of these machines were turned out. Cotton then established a factory for the manufacture of warp fabrics, and it was here that he began to work on his ideas. He had no knowledge of the principles of engineering or drawing, so his method of making sketches and then getting his ideas roughed out involved much useless labour. After twelve years, in 1863, a patent was issued for the machine that became the basis of the Cotton's Patent type. This was a flat frame driven by rotary mechanism and remarkable for its adaptability. At first he built his machine upright, like a cottage piano, but after much thought and experimentation he conceived the idea of turning the upper part down flat so that the needles were in a vertical position instead of being horizontal, and the work was carried off horizontally instead of vertically. His first machine produced four identical pieces simultaneously, but this number was soon increased. Cotton was induced by the success of his invention to begin machine building as a separate business and thus established one of the first of a class of engineering firms that sprung up as an adjunct to the new hosiery manufacture. He employed only a dozen men and turned out six machines in the first year, entering into an agreement with Hine \& Mundella for their exclusive use. This was later extended to the firm of I. \& R.Morley. In 1878, Cotton began to build on his own account, and the business steadily increased until it employed some 200 workers and had an output of 100 machines a year.[br]Bibliography1863, British patent no. 1,901 (flat-frame knitting machine).Further ReadingF.A.Wells, 1935, The British Hosiery and Knitwear Industry: Its History and Organisation, London (based on an article in the Knitters' Circular (Feb. 1898).A brief account of the background to Cotton's invention can be found in T.K.Derry and T.I. Williams, 1960, A Short History of Technology from the Earliest Times to AD 1900, Oxford; C. Singer (ed.), 1958, A History of Technology, Vol. V, Oxford: Clarendon Press.F.Moy Thomas, 1900, I. \& R.Morley. A Record of a Hundred Years, London (mentions cotton's first machines).RLH69 Dore (Dorr), Samuel Griswold
SUBJECT AREA: Textiles[br]b. USAd. 1794 England[br]American inventor of the first rotary shearing machine.[br]To give a smooth surface to cloth such as the old English broadcloth, the nap was raised and then sheared off. Hand-operated shears of enormous size cut the fibres standing proud of the surface while the cloth was laid over a curved table top. Great skill was required to achieve a smooth finish. Various attempts, such as that in 1784 by James Harmer, a clergyman of Sheffield, were made to mechanize the process by placing several pairs of shears in a frame and operating them by cranks, but these were not successful. The first version of a rotary machine was made by Samuel Griswold Dore (sometimes spelt Dorr), an American from Albany, New York. His first frame, patented in 1792 in America, consisted of a wheel of twelve "spring knives" that were fixed like spokes and set at an angle of about 45° to the horizontal. Under this wheel, and on the same axle, rode a second one, carrying four "tangent knives" that lay almost flat upon the cloth. As the two wheels rotated above the cloth's surface, they acted in "the manner of shears". The principle used in Dore's machine is certainly different from that in the later, successful machine of John Lewis. The machine was thought to be too complicated and expensive for American woollen manufacturers and was much better suited to circumstances in the English industry, Dore therefore moved to England. However, in his British patent in 1793, he introduced a different design, which was more like that on which both Lewis's machine and the lawnmower were based, with knives set across the periphery of a hollow cylinder or barrel. Little more was heard of his machine in Britain, possibly because of Dore's death, which is mentioned in his patent of 1794, although it was used in America and France. Dore's son and others improved the machine in America and brought new specifications to England in 1811, when several patents were taken out.[br]Bibliography1792. US patent (rotary shearing machine).1793. British patent no. 1,945 (rotary shearing machine). 1794. British patent no. 1,985.Further ReadingD.J.Jeremy, 1981, Transatlantic Industrial Revolution. The Diffusion of Textile Technologies Between Britain and America, 1790–1830s, Oxford (examines Dore's inventions and their transfer to Britain).Mention of Dore can be found in: J. de L.Mann, 1971, The Cloth Industry in the West of England from 1660 to 1880, Oxford; K.G.Ponting, 1971, The Woollen Industry of South-West England, Bath.C.Singer (ed.), 1958, A History of Technology, Vol. IV, Oxford: Clarendon Press (discusses Dore's inventions).RLHBiographical history of technology > Dore (Dorr), Samuel Griswold
70 operation
[ɒpə'reɪʃn] noun1) (causing to work) (of machine) Bedienung, die; (of lever, brake) Betätigung, die; (of factory, mine, etc.) Betrieb, der; (of bus service etc.) Unterhaltung, die2) (way something works) Arbeitsweise, die3) (being operative)come into operation — [Gesetz, Gebühr usw.:] in Kraft treten
be in operation — [Maschine, Gerät usw.:] in Betrieb sein; [Service:] zur Verfügung stehen; [Gesetz:] in Kraft sein
be out of operation — [Maschine, Gerät usw.:] außer Betrieb sein
4) (performance) Tätigkeit, dierepeat the operation — das Ganze [noch einmal] wiederholen
5) (Med.) Operation, diehave an operation [on one's foot] — [am Fuß] operiert werden
6) (Mil.) Einsatz, der* * *1) (an action or process, especially when planned: a rescue operation.) das Unternehmen2) (the process of working: Our plan is now in operation.) der Betrieb3) (the act of surgically cutting a part of the body in order to cure disease: an operation for appendicitis.) die Operation4) ((often in plural) the movement, fighting etc of armies: The general was in command of operations in the north.) der Einsatz* * *op·era·tion[ˌɒpərˈeɪʃən, AM ˌɑ:pəˈreɪ-]nthe \operation of communism requires people to give up their individual identities der Kommunismus kann nur dann funktionieren, wenn die Menschen ihre Eigenständigkeit aufgebenthe \operation of gravity keeps us standing on the ground dank der Schwerkraft bleiben wir auf dem Boden stehenday-to-day [or everyday] \operation gewöhnlicher Betriebsablauf, Geschäftsgang mhours of \operation Geschäftszeiten plby \operation of law kraft Gesetzesdaily/hourly \operation täglicher/stündlicher Betriebthe bus service is in hourly \operation during off-peak times außerhalb der Stoßzeiten fahren die Busse stündlichto come into \operation machines in Gang kommen [o Betrieb genommen werden]; plan, rule, law in Kraft treten, wirksam werdento put sth into \operation machine etw in Betrieb nehmen; regulations etw anwenden; scheme, plan etw in die Tat umsetzenrepairing this old watch is a very delicate \operation das Reparieren dieser alten Uhr ist eine sehr diffizile Angelegenheitto undertake an \operation etwas vornehmen, an eine Sache herangehenhow is the \operation going these days? wie läuft denn der Betrieb jetzt so?the company's \operations in West Africa.. die Geschäfte der Firma in West Afrika...; MIL Operation f, Einsatz mO\operation Desert Storm Operation Wüstensturmrescue \operation Rettungsaktion fsecurity \operation Sicherheitsmaßnahmen pl, Einsatz m von Sicherheitskräftenhumanitarian \operation humanitärer Einsatzto launch an \operation mit einer Aktion beginnento start \operations on sth die Arbeit an etw dat aufnehmenheart/lung \operation Herz-/Lungenoperation fto perform an \operation eine Operation durchführen7. FIN [finanzielle] Transaktionmathematical \operation mathematische Operation, Rechenvorgang m* * *["ɒpə'reISən]n1) (= act of operating as in vi) (of machine, mechanism, system) Funktionieren nt; (of plan) Durchführung f; (of theory) Anwendung f; (= method of functioning) (of machine, organization) Arbeitsweise f; (of system, organ) Funktionsweise f; (of law) Wirkungsweise fto be in operation (machine) — in Betrieb sein; (law) in Kraft sein; (plan) durchgeführt werden
to be out of operation — außer Betrieb sein; ( fig : person ) nicht einsatzfähig sein
to come into operation (machine) — in Gang kommen; (law) in Kraft treten; (plan) zur Anwendung gelangen
2) (= act of operating as in vt) (of machine etc) Bedienung f, Handhabung f; (of small mechanism) Betätigung f; (of business) Betreiben nt, Führen nt; (of system, policy) Anwendung f; (of plan, law) Durchführung f; (of route) Bedienung f; (of bus service etc) Unterhaltung f; (of tours) Veranstaltung fto have a serious/heart operation — sich einer schweren Operation/einer Herzoperation unterziehen
4) (= enterprise) Unternehmen nt, Unternehmung f, Operation f; (= task, stage in undertaking) Arbeitsgang m; (MATH) Rechenvorgang m, Operation fto cease/resume operations — den Geschäftsverkehr einstellen/wieder aufnehmen
* * *on auf akk)by operation of law kraft Gesetzes;come into operation wirksam werden, in Kraft treten;be in operation in Kraft oder wirksam sein3. TECH Betrieb m, Tätigkeit f, Lauf m (einer Maschine etc):in operation in Betrieb;put ( oder set) in (out of) operation in (außer) Betrieb setzen; → academic.ru/60521/ready">ready A 1a) Wirkungs-, Arbeitsweise fb) Arbeits(vor)gang m, Verfahren n, (Arbeits)Prozess m:operation of thinking fig Denkvorgang, -prozess;chemical operation chemischer Prozess;operations scheduling Arbeitsvorbereitung f, zeitliche Arbeitsplanung5. TECH Inbetriebsetzung f, Handhabung f, Bedienung f (einer Maschine etc)6. Arbeit f:building operations Bauarbeiten7. WIRTSCHa) Betrieb m:continuous operation durchgehender (Tag- und Nacht)Betrieb;in operation in Betriebb) Unternehmen n, -nehmung f, Betrieb m:c) Geschäft n8. MATH Operation f, Ausführung f (einer Rechenvorschrift)9. MED Operation f, (chirurgischer) Eingriff:operation for appendicitis Blinddarmoperation;have an operation operiert werden;perform an operation (on sb) (an jemandem) einen (chirurgischen) Eingriff vornehmen;major (minor) operationa) größere (kleinere oder harmlose) Operation,b) umg große Sache, schwere Geburt (Kleinigkeit f)10. MIL Operation f, Einsatz m, Unternehmung f, (Angriffs)Unternehmen n:op. abk1. opera2. operation3. operator4. opposite5. optical opt.6. opus Op.* * *[ɒpə'reɪʃn] noun1) (causing to work) (of machine) Bedienung, die; (of lever, brake) Betätigung, die; (of factory, mine, etc.) Betrieb, der; (of bus service etc.) Unterhaltung, die2) (way something works) Arbeitsweise, diecome into operation — [Gesetz, Gebühr usw.:] in Kraft treten
be in operation — [Maschine, Gerät usw.:] in Betrieb sein; [Service:] zur Verfügung stehen; [Gesetz:] in Kraft sein
be out of operation — [Maschine, Gerät usw.:] außer Betrieb sein
4) (performance) Tätigkeit, dierepeat the operation — das Ganze [noch einmal] wiederholen
5) (Med.) Operation, diehave an operation [on one's foot] — [am Fuß] operiert werden
6) (Mil.) Einsatz, der* * *(surgery) n.Operation (Chirurgie) f. n.Arbeitsablauf m.Arbeitsgang m.Bedienung f.Betrieb -e m.Gang ¨-e m.Operation f.Tätigkeit f.Verfahren n.71 inspection
1) инспекция2) контроль, приёмочный контроль; проверка; осмотр; надзор; браковка3) обследование; рассмотрение•- analytical tooth element inspection
- average total inspection
- body-in-white inspection
- CAD-directed inspection
- CAM inspection
- casual inspection
- CMM inspection
- complete inspection
- continuous inspection
- cursory inspection
- curtailed inspection
- de-skilling inspection
- destructive inspection
- dimensional inspection
- drunkness inspection
- explicit inspection
- field inspection
- final inspection
- finished good inspection
- first-article inspection
- first-off inspection
- first-part inspection
- first-piece inspection
- flaw inspection
- flexible inspection
- functional inspection
- human tool inspection
- implicit inspection
- incoming inspection
- infrared inspection
- in-machine inspection
- in-process inspection
- inspection of measuring instruments
- interoperational inspection
- interstage inspection
- lab-quality inspection
- laser structure inspection
- line inspection
- machine vision inspection
- magnetic inspection
- magnetic particle inspection
- magnetic powder inspection
- noncontact inspection
- nondestructive inspection
- normal inspection
- one-hundred percent inspection
- on-going inspection
- on-line inspection
- on-location inspection
- on-machine inspection
- on-receipt inspection
- operational inspection
- optical nondestructive inspection
- organoleptic inspection
- outer inspection
- penetrant inspection
- percentage inspection
- periodic inspection
- periodical inspection
- piecepart inspection
- point-of-production inspection
- postmachining inspection
- postoperative inspection
- postprocess inspection
- postprocessing inspection
- preassembly inspection
- preprocess inspection
- preproduction inspection
- probe inspection
- process inspection
- production inspection
- qualification inspection
- quality conformance inspection
- quality inspection
- radium inspection
- random inspection
- receiving inspection
- reduced inspection
- remote inspection
- routine inspection
- sample inspection
- sampling inspection
- screening inspection
- step-by-step inspection
- stroboscopic inspection
- submicron inspection
- surface inspection
- surface-mount-component inspection
- technical state inspection
- tightened inspection
- tool inspection
- trial running inspection
- ultrasonic inspection
- view room inspection
- vision-based inspection
- vision-based robotic inspection
- visual inspection
- X-ray inspectionEnglish-Russian dictionary of mechanical engineering and automation > inspection
72 clay
nGEN arcilla f, barro m73 station
1) станция; пункт3) геофиз. пункт наблюдений5) устройство; блок7) горн. околоствольный двор8) ж.-д. станционные сооружения11) мор. точка пересечения шпангоута с основной линией12) устанавливать, ставить13) экол. ареал•station on stream — работающая ( насосная или компрессорная) станция на трубопроводе-
aboveground power station
-
aboveground station
-
accepting station
-
accumulator station
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actinometric station
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aerobraked OTV-serviced space station
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aerodynamic broadcast station
-
aeronautical meteorological station
-
affiliated station
-
air monitoring station
-
airborne early-warning station
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alighting station
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anchor station
-
AOTV-serviced space station
-
array station
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arrival station
-
assembly station
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assembly work station
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astronaut tended space station
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astronaut-inhabited space station
-
atomic power station
-
attended station
-
automatic unified orbital station
-
automatic water-stage recording station
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automatic welding station
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auxiliary power station
-
avalanche station
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backhaul station
-
back-to-back high-voltage direct-current converter station
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bagging station
-
base compressor station
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base pumping station
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base station
-
baseline station
-
base-load power station
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beacon station
-
beet pulp drying station
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beet receiving station
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beet washing station
-
benchmark station
-
block-signal station
-
boarding station
-
boiling station
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booster station
-
broadcasting station
-
broadcast station
-
bulk flour station
-
buoy-based station
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captain's station
-
captain station
-
car inspection station
-
cathodic protection station
-
central electric station
-
central heat supply station
-
charging station
-
check station
-
circle station
-
circulating pumping station
-
civilian-manned space station
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clean work station
-
climatological station
-
coal-fired power station
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coast station
-
coastal direction finding station
-
coke-screening station
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communication relay station
-
compressor station
-
concrete coating station
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connecting station
-
conning station
-
conservated space station
-
control radio station
-
control station
-
converter station
-
co-orbiting space stations
-
coordinate inspection station
-
cream station
-
crusher station
-
cube station
-
current-meter gaging station
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current-meter station
-
customs station
-
data return capsule-carried space station
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data station
-
dead station
-
deburring station
-
deconservated space station
-
dedicated milling station
-
deorbited space station
-
design station
-
destination station
-
diesel power station
-
diffusion station
-
direction and guidance radar station
-
direction-finding station
-
discharge station
-
dispatch station
-
dispatching control station
-
display station
-
distribution station
-
diversion power station
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diversion station
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docking station
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drainage station
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drift station
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drive station
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dry station
-
dual-keel space station
-
dual-purpose station
-
dumping station
-
early-warning radar station
-
earth station
-
earthquake-detection station
-
electric power station
-
electric station
-
electrode building station
-
engine changing station
-
engineered work station
-
engineman's station
-
enlarged space station
-
entry station
-
evaporation station
-
exposure station
-
extended duration space station
-
feed station
-
filling station
-
film take-up station
-
fish rearing station
-
fixed ship station
-
fixed station
-
fixturing station
-
flexible machining station
-
flexible space station
-
flight engineer station
-
floating diesel station
-
floating power station
-
floating station
-
floating weather station
-
fossil-fueled power station
-
free-standing pallet station
-
frontier station
-
fuel station
-
gaging station
-
gas engine compressor station
-
gas gathering station
-
gas station
-
gas-compressor station
-
gas-distributing station
-
gas-lift compressor station
-
gas-turbine power station
-
generating station
-
GEO space station
-
geothermal power station
-
grain-collecting station
-
greasing station
-
grid-connected photovoltaic station
-
ground station
-
group pumping station
-
growth station
-
guidance station
-
half-open-air hydroelectric station
-
hammer station
-
head-end station
-
heat-electric generating station
-
high altitude space station
-
high-latitude station
-
high-level station
-
high-lift pump station
-
high-power station
-
holding station
-
home station
-
homing station
-
horizontal designed space station
-
hot-metal station
-
hydraulic experimental station
-
hydroelectric power station
-
hydroelectric pumped storage power station
-
hydrological station
-
hydrometric station
-
ice lookout station
-
ice pilot station
-
ice-based station
-
impact station
-
inhabited space station
-
inland station
-
in-machine station
-
inquiry station
-
insertion station
-
inspection station
-
integrated sewing station
-
interchange station
-
interlocking station
-
intermediate station
-
international space station
-
interplanetary station
-
inverter station
-
irrigation pumping station
-
island station
-
issuing station
-
junction station
-
knitting station
-
knocking-out station
-
ladle bricking station
-
ladle preparation station
-
land station
-
landing direction-finding station
-
large-size power station
-
large power station
-
LEO space station
-
lightning direction-finding station
-
lightship station
-
line booster pump station
-
liquefied natural gas station
-
load station
-
load/unload station
-
loading station
-
local station
-
localizer station
-
logic programming station
-
long-functioning space station
-
long-term space station
-
long-term station
-
loop station
-
low-altitude space station
-
low-latitude station
-
low-lift pump station
-
lubrication station
-
machine tool station
-
machining work station
-
machining station
-
magazine station
-
magnetic station
-
magnetotelluric station
-
main pumping station
-
manned station
-
manual part control station
-
man-visited space station
-
master station
-
material handling work station
-
measuring station
-
medium-size power station
-
medium power station
-
medium-head hydroelectric station
-
melt station
-
mesonet station
-
microwave relay station
-
milk collecting station
-
mine-mouth power station
-
mixed pumped-storage station
-
mobile electric power station
-
mobile power station
-
mobile ship station
-
mobile station
-
mobile television station
-
mold lubricating station
-
monitoring station
-
moonbounce station
-
multiband station
-
multimodule space station
-
multiparameter station
-
multiple docking ports-equipped space station
-
multiple modules-docked space station
-
multiple pressurized modules space station
-
multipurpose space station
-
multisolar-panels-consisted station
-
NC control station
-
newsroom station
-
node station
-
nuclear heat-only station
-
nuclear power station
-
nuclear steam station
-
observational station
-
observation station
-
ocean weather station
-
off-line station
-
oil-burning power station
-
oil-fired power station
-
oil-gathering station
-
oil-marketing station
-
OMV-equipped space station
-
on-orbit power generation station
-
open-air hydroelectric station
-
orbital laser power station
-
orbital station
-
origin station
-
oxy-gas cutoff station
-
ozonometry station
-
package power station
-
packing station
-
pan station
-
partial-record station
-
passenger station
-
passing station
-
passive seismic station
-
payoff station
-
peak-load power station
-
pendent control station
-
periodically tended space station
-
permanent seismograph station
-
permanent space station
-
photovoltaic pumping station
-
pier-type hydroelectric station
-
pilot solar power station
-
pipe welding station
-
pipeline-up station
-
pluviometric station
-
pole-mounted station
-
postprocess gaging station
-
power station
-
precipitation station
-
primary station
-
principal station
-
probe station
-
public service power station
-
public utility power station
-
pumped-storage station
-
pumping station
-
punch station
-
purely civilian-manned space station
-
push-button pipeline pumping station
-
rack-mounted station
-
radar station
-
radio station
-
radio-beacon station
-
radio-compass station
-
radio-positioning station
-
radio-range station
-
radio-relay station
-
radiosonde station
-
rating station
-
rawinsonde receiving station
-
rawinsonde station
-
read station
-
receiving station
-
reclamation station
-
reconservated space station
-
recording station
-
rectifier station
-
reference station
-
reforwarding station
-
refrigerating station
-
refuge station
-
relay pump station
-
relay station
-
relift station
-
remote methane measurement station
-
remote monitoring station
-
remote station
-
remote tool transfer station
-
repeater station
-
representative station
-
repressuring station
-
rescue station
-
reservoired power station
-
resupply space station
-
river station
-
robot station
-
robot weather station
-
roll-welding station
-
run-of-river power station
-
run-of-river station
-
sample station
-
satellite solar power station
-
scrubbing station
-
secondary station
-
seismic station
-
seismograph station
-
seismological station
-
self-service station
-
sending station
-
sewage pumping station
-
shaft station
-
ship station
-
shipboard power station
-
ship-handling station
-
shore collection station
-
shore station
-
short-lived station
-
short-term space station
-
short-term station
-
skimming station
-
slave station
-
small-size power station
-
small power station
-
solar power station
-
solar radio station
-
solar station
-
solar-diesel hybrid power station
-
solar-powered service station
-
solid-fuel power station
-
source pump station
-
space station
-
space tug-equipped orbital station
-
space-based laser station
-
stage station
-
stationary relay station
-
steering station
-
storage power station
-
stream-gaging station
-
stuffing station
-
stunning station
-
subscriber heat supply station
-
subscriber station
-
suburban station
-
surface synoptic station
-
surveillance radar station
-
switching station
-
synoptic station
-
tank oil filling station
-
tapping station
-
telemetering station
-
telemetry station
-
television transmitting station
-
temperature-regulating station
-
terminal pump station
-
terminal station
-
terrestrial station
-
test station
-
tethered space station
-
thermal power station
-
thermal station
-
tidal power station
-
toll station
-
tool adjustment station
-
tool change station
-
tool measuring-and-adjustment station
-
tool presetting station
-
tool station
-
torch-cutting station
-
total energy power station
-
totally autonomous manned space station
-
tracker station
-
transfer pumping station
-
transfer station
-
transforming station
-
transit station
-
transmitting station
-
transport station
-
transportable earth station
-
transportable station
-
trigeneration power station
-
trim station
-
two docking ports-equipped space station
-
underground power station
-
underground station
-
unload station
-
unmanned pumping station
-
unmanned station
-
upper-air station
-
user station
-
vacuum-compressor station
-
variable-head station
-
versatile space station
-
visited space station
-
wall-mounted station
-
washing station
-
water injection pumping station
-
water monitoring station
-
water power station
-
water rating station
-
water station
-
water treatment station
-
water-balance station
-
water-pumping station
-
water-purification floating station
-
wayside station
-
weather station
-
weighing station
-
weir station
-
well test station
-
wind power station
-
windup station
-
working station
-
work station
-
workpiece preparatory station74 CBT
1) Морской термин: танк чистого балласта (Clean Ballast Tank), ТЧБ, clean ballast tank2) Военный термин: Combating Terrorism, Compulsory Basic Training3) Техника: circuit board tester, computer-based training4) Шутливое выражение: Charlie Big Time5) Религия: Continuously Being Thankful6) Юридический термин: Cognitive Behavioral Therapy7) Биржевой термин: Cash Before Trade, computer-based terminal8) Психология: cognitive behavioural therapy9) Сокращение: Computer Based Test (administered by NTAC), Computer Based Training (obsolete - see CBIT), Computer-Based Trainer, Core-Based Trees10) Физиология: Center for Biological Timing11) Сленг: Cock and Ball Torture, пытки полового члена и яичек12) Вычислительная техника: Canon Buffer Transmission (Fax), Core Based Tree (multicast protocol, IP, RFC 1949/2189, ST, Multicast)13) Нефть: cement bond tool14) Банковское дело: Чикагская товарная биржа (Chicago Board of Trade)15) СМИ: Computer Based Training16) Деловая лексика: Customer Based Training, Чикагская срочная товарная биржа (Chicago Board of Trade)17) Образование: Competency Based Training, Computer Based Testing18) Инвестиции: Chicago Board of Trade19) Автоматика: centerless bar turning machine20) Расширение файла: Core Block Table, Computer Based Training (many)21) Нефть и газ: АКЦ + ФКД, акустический цементомер22) Майкрософт: компьютеризированное обучение23) NYSE. Cabot Corporation75 cbt
1) Морской термин: танк чистого балласта (Clean Ballast Tank), ТЧБ, clean ballast tank2) Военный термин: Combating Terrorism, Compulsory Basic Training3) Техника: circuit board tester, computer-based training4) Шутливое выражение: Charlie Big Time5) Религия: Continuously Being Thankful6) Юридический термин: Cognitive Behavioral Therapy7) Биржевой термин: Cash Before Trade, computer-based terminal8) Психология: cognitive behavioural therapy9) Сокращение: Computer Based Test (administered by NTAC), Computer Based Training (obsolete - see CBIT), Computer-Based Trainer, Core-Based Trees10) Физиология: Center for Biological Timing11) Сленг: Cock and Ball Torture, пытки полового члена и яичек12) Вычислительная техника: Canon Buffer Transmission (Fax), Core Based Tree (multicast protocol, IP, RFC 1949/2189, ST, Multicast)13) Нефть: cement bond tool14) Банковское дело: Чикагская товарная биржа (Chicago Board of Trade)15) СМИ: Computer Based Training16) Деловая лексика: Customer Based Training, Чикагская срочная товарная биржа (Chicago Board of Trade)17) Образование: Competency Based Training, Computer Based Testing18) Инвестиции: Chicago Board of Trade19) Автоматика: centerless bar turning machine20) Расширение файла: Core Block Table, Computer Based Training (many)21) Нефть и газ: АКЦ + ФКД, акустический цементомер22) Майкрософт: компьютеризированное обучение23) NYSE. Cabot Corporation76 approach
1) приближение2) подход3) принцип; метод•- algorithm-specific approach
- all-or-nothing approach
- axiomatic approach
- Bayesian approach
- bilingual approach
- botton-up approach
- brute-force approach
- building-block approach
- comprehensive approach
- context-based approach
- contingency approach
- cross-impact approach
- cut-and-try approach
- database approach
- disaggregated approach
- divide-and-conquer approach
- engineering approach
- entity-relationship approach
- entropy forward approach
- fault-intolerance approach
- fault-tolerance approach
- formal approach
- fulcrum approach
- function-specific approach
- game-model approach
- game-theory approach
- graphic approach
- hardware-intensive approach
- heuristic approach
- hierarchical approach
- holistic approach
- integrated approach
- interactive approach
- interdisciplinary approach
- knowledge-based approach
- line-oriented approach
- modular approach
- module-by-module approach
- multilingual approach
- multiple incarnations approach
- novel approach
- omnibus approach
- performance sampling approach
- pitch-synchronous approach
- probabilistic approach
- Reiter's approach
- scan path approach
- servomechanism approach
- set-theoretical approach
- set-theoretic approach
- simulation approach
- single-task-machine approach
- software-intensive approach
- standards approach
- state-machine approach
- step-by-step approach
- systems approach
- systolic approach
- technically sound approach
- top-down approach
- transition function-based approach
- trial-and-error approach
- turnkey approachEnglish-Russian dictionary of computer science and programming > approach
77 ink
1) чернила2) (печатная) краска || покрывать краской3) тушь- ink up- book ink- dry ink- dye ink- flat ink- foam ink- gold ink- lake ink- long ink- mat ink- soft ink- thin inkАнгло-русский словарь по полиграфии и издательскому делу > ink
78 system
system of axes3-component LDV system3-D LDV system4-D system4-D flight-management system4-D guidance systemAC electrical systemactuation systemaerial delivery systemaerostat systemAEW systemafterburning control systemAI-based expert systemaileron-to-rudder systemair bleed offtake systemair cushion systemair cycle systemair data systemair defence systemair induction systemair refueling systemair traffic control systemair-combat advisory systemair-conditioning systemair-path axis systemair-turbine starting systemairborne early warning systemaircooling systemaircraft reference axis systemaircraft weight-and-balance measuring systemaircraft-autopilot systemaircraft-based systemaircraft-bifilar-pendulum systemaircraft-carried earth axis systemaircraft-carried normal earth axis systemaircrew escape systemairfield lighting control systemairframe/rotor systemairspeed systemalcohol-wash systemalignment control systemall-electronic systemall-weather mission systemaltitude loss warning systemangle-of-attack command systemanti-collision systemanti-g systemantitorque systemanti-icing systemantiskid systemarea-navigation systemARI systemartificial feel systemartificial intelligence-based expert systemartificially augmented flight control systemATC systemattitude and heading reference systemaudio systemaudiovisual systemauto-diagnosis systemauto-hover systemautolanding systemautomatic cambering systemautomatic trim systemautostabilization systemautotrim systemaxis systemB systembalance-fixed coordinate systembase-excited systembasic axis systembeam-foundation systembifilar pendulum suspension systembladder systemblowing systemblowing boundary layer control systemblown flap systembody axis systembody axis coordinate systembody-fitted coordinate systembody-fixed reference systemboom systemboosted flight control systembraking systembreathing systembuddy-buddy refuelling systemcabin pressurization systemcable-mount systemCAD systemcanopy's jettison systemcardiovascular systemcargo loading systemcargo-handling systemcarrier catapult systemcartesian axis systemCat III systemcentral nervous systemCGI systemcirculating oil systemclosed cooling systemclosed-loop systemcockpit systemcockpit management systemcollision avoidance systemcombined cooling systemcommand-by-voice systemcommand/vehicle systemcommercial air transportation systemcompensatory systemcomputer-aided design systemcomputer-assisted systemcomputer-generated image systemcomputer-generated visual systemconcentrated-mass systemconflict-alert systemconservative systemconstant bandwidth systemconstant gain systemconsultative expert systemcontrol systemcontrol augmented systemcontrol loader systemcooling systemcoordinate systemcounterstealth systemcoupled systemcoupled fire and flight-control systemcovert mission systemcrew systemscueing systemcurvilinear coordinate systemdamped systemdata systemdata acquisition systemdata handling systemdata transfer systemdata-gathering systemDC electrical systemdecision support systemdefensive avionics systemdeicing systemdemisting systemdeparture prevention systemdeterministic systemdual-dual redundant system4-D navigation system6-DOF motion systemdiagnosable systemdial-a-flap systemdirect impingement starting systemdisplacement control systemdisplay systemdisplay-augmented systemdivergent systemDLC systemdogfight systemdoor-to-door systemDoppler ground velocity systemdouble-balance systemdrive systemdrive train/rotor systemdry air refueling systemdual-field-of-view systemdual-wing systemdynamic systemearly-warning systemEarth-centered coordinate systemearth-fixed axis systemearth/sky/horizon projector systemejection systemejection display systemejection seat escape systemejection sequence systemejector exhaust systemejector lift systemelection safety systemelectric starting systemelectro-expulsive deicing systemelectro-impulse deicing systemelectro-vibratory deicing systemelectronic flight instrumentation systemElint systememergency power systememitter locator systemEMP-protected systemengine monitoring systemengine-propeller systemengine-related systemenhanced lift systemenvelope-limiting systemenvironmental control systemescape systemexcessive pitch attitude warning systemexhaust systemFADEC systemfault-tolerant systemFBW systemfeathering systemfeedback systemfeel systemfin axis systemfire detection systemfire suppression systemfire-extinguishing systemfire-protection systemfive-point restraint systemfixed-structure control systemflap systemflap/slat systemflash-protection systemflexible manufacturing systemflight control systemflight control actuation systemflight director systemflight inspection systemflight management systemflight path systemflight path axis systemflight test systemflight-test instrumentation systemflotation systemfluid anti-icing systemflutter control systemflutter margin augmentation systemflutter suppression systemfluttering systemfly-by-light systemfly-by-light control systemfly-by-wire systemfly-by-wire/power-by-wire control systemfoolproof systemforce-excited systemforce-feel systemforward vision augmentation systemfuel conservative guidance systemfuel management systemfuel transfer systemfull-vectoring systemfull-authority digital engine control systemfull-motion systemfull-state systemfull-time systemfully articulated rotor systemfuselage axis systemg-command systemg-cueing systemg-limiting systemgas generator control systemgas turbine starting systemglobal positioning systemgoverning systemground collision avoidance systemground proximity warning systemground-axes systemground-fixed coordinate systemground-referenced navigation systemgust alleviation systemgust control systemgyroscopic systemgyroscopically coupled systemhalon fire-extinguishing systemhalon gas fire-fighting systemhands-off systemhead-aimed systemheadup guidance systemhelmet pointing systemhelmet-mounted visual systemhierarchical systemhigh-damping systemhigh-authority systemhigh-lift systemhigh-order systemhigh-pay-off systemhigh-resolution systemhigher harmonic control systemhose-reel systemhot-gas anti-icing systemhub plane axis systemhub plane reference axis systemhub-fixed coordinate systemhydraulic systemhydraulic starting systemhydropneumatic systemhydrostatic motion systemhysteretic systemice-protection systemicing cloud spray systemicing-protection systemidentification friend or foe systemimage generator systemin-flight entertainment systemincidence limiting systeminert gas generating systeminertial coordinate systeminertial navigation systeminertial reference systeminfinite-dimensional systeminformation management systeminlet boundary layer control systeminlet control systeminput systeminstruction systeminstrument landing systeminstrumentation systemintelligence systemintelligent systeminterconnection systemintermediate axis systemintrusion alarm systemintrusion detection systeminverted fuel systemlanding guidance systemlarge-travel motion systemlaser-based visual systemlateral attitude control systemlateral control systemlateral feel systemlateral seat restraint systemlateral-directional stability and command augmentation systemlead compensated systemleft-handed coordinate systemleg restraint systemlife support systemliferaft deployment systemlift-distribution control systemlighter-than-air systemlightly damped systemlightning protection systemlightning sensor systemlightning warning systemlimited-envelope flight control systemlinear vibrating systemliquid oxygen systemload control systemload indication systemlocal-horizon systemloom systemlow-damping systemlow-order systemLQG controlled systemlubrication systemlumped parameter systemMach number systemmain transmission systemmaintenance diagnostic systemmaintenance record systemman-in-the-loop systemman-machine systemmaneuver demand systemmaneuvering attack systemmass-spring-dashpot systemmass-spring-damper systemmast-mounted sight systemmechanical-hydraulic flight control systemmicrowave landing systemMIMO systemmine-sweeping systemmissile systemmissile-fixed systemmission-planning systemmobile aircraft arresting systemmodal cancellation systemmodal suppression systemmode-decoupling systemmodel reference systemmodel-based visual systemmodel-following systemmodelboard systemmolecular sieve oxygen generation systemmonopulse systemmotion systemmotion generation systemmulti-input single-output systemmulti-input, multi-output systemmultimode systemmultibody systemmultidegree-of-freedom systemmultiloop systemmultiple-input single output systemmultiple-input, multiple-output systemmultiple-loop systemmultiple-redundant systemmultiply supported systemmultishock systemmultivariable systemnavigation management systemnavigation/attack systemnavigation/bomb systemNDT systemneuromuscular systemnight/dusk visual systemportable aircraft arresting systemnitrogen inerting systemno-tail-rotor systemnonminimum phase systemnonoscillatory systemnonconservative systemnormal earth-fixed axis systemNotar systemnozzle control systemnuclear-hardened systemobserver-based systemobstacle warning systemoil systemon-board inert gas generation systemon-board maintenance systemon-board oxygen generating systemon-off systemone degree of freedom systemone-shot lubrication systemopen cooling systemopen seat escape systemopen-loop systemoperability systemoptic-based control systemoptimally controlled systemorthogonal axis systemoxygen generation systemparachute systempartial vectoring systempartial vibrating systemperformance-seeking systemperturbed systempilot reveille systempilot vision systempilot-aircraft systempilot-aircraft-task systempilot-in-the-loop systempilot-manipulator systempilot-plus-airplane systempilot-vehicle-task systempilot-warning systempilot/vehicle systempitch change systempitch compensation systempitch stability and command augmentation systempitch rate systempitch rate command systempitch rate flight control systempneumatic deicing systempneumatic ice-protection systempneumodynamic systemposition hold systempower systempower-assisted systempower-boosted systempowered high-lift systempowered-lift systemprecognitive systempressurization systempreview systemprobabilistically diagnosable systemprobe refuelling systempronated escape systempropeller-fixed coordinate systempropulsive lift systemproximity warning systempursuit systempush-rod control systemquantized systemrandom systemrating systemreconfigurable systemrectangular coordinate systemreduced-gain systemreference axis systemrefuelling systemremote augmentor lift systemremote combustion systemresponse-feedback systemrestart systemrestraint systemrestructurable control systemretraction systemride-control systemride-quality systemride-quality augmentation systemride-smoothing systemright-handed axis systemright-handed coordinate systemrigid body systemrobotic refueling systemrod-mass systemroll augmentation systemroll rate command systemrotating systemrotor systemrotor isolation systemrotor-body systemrotor-wing lift systemroute planner systemrudder trim systemrudder-augmentation systemsampled-data systemscheduling systemschlieren systemsea-based systemseat restraint systemseatback video systemself-adjoint systemself-contained starting systemself-diagnosable systemself-excited systemself-repairing systemself-sealing fuel systemself-tuning systemshadow-mask systemshadowgraph systemship-fixed coordinate systemshock systemshort-closed oil systemsighting systemsimulation systemsimulator-based learning systemsingle degree of freedom systemsingle-input multiple-output systemsingularly perturbed systemsituational awareness systemsix-axis motion systemsix-degree-of-freedom motion systemsix-puck brake systemski-and-wheel systemskid-to-turn systemsnapping systemsoft mounting systemsoft ride systemsound systemspeed-stability systemspherical coordinate systemspin recovery systemspin-prevention systemspring-mass-dashpot systemstability and control augmentation systemstability augmentation systemstability axis coordinate systemstability enhancement systemstall detection systemstall inhibitor systemstall protection systemstall warning systemstarting systemstealth systemstochastic systemstorage and retrieval systemstore alignment systemstores management systemstrap-down inertial systemstructural systemstructural-mode compensation systemstructural-mode control systemstructural-mode suppression systemSTT systemsuppression systemsuspension systemtactile sensory systemtail clearance control systemtail warning systemtask-tailored systemterrain-aided navigation systemterrain-referencing systemtest systemthermal control systemthermal protection systemthreat-warning systemthree-axis augmentation systemthree-body tethered systemthree-control systemthree-gyro systemthrough-the-canopy escape systemthrust modulation systemthrust-vectoring systemtilt-fold-rotor systemtime-invariant systemtime-varying systemtip-path-plane coordinate systemtorque command/limiting systemtractor rocket systemtrailing cone static pressure systemtraining systemtrajectory guidance systemtranslation rate command systemtranslational acceleration control systemtrim systemtrim tank systemtriple-load-path systemtutoring systemtwin-dome systemtwo degree of freedom systemtwo-body systemtwo-input systemtwo-input two-output systemtwo-pod systemtwo-shock systemtwo-step shock absorber systemunpowered flap systemunpowered high-lift systemutility services management systemvapor cycle cooling systemvariable feel systemvariable stability systemvariable structure systemvestibular sensory systemvibrating systemvibration isolation systemvibration-control systemvibration-damping systemvideo-disc-based visual systemvisor projection systemvisual systemvisual display systemvisual flying rules systemvisual sensory systemvisual simulation systemvisually coupled systemvoice-activated systemvortex systemvortex attenuating systemVTOL control systemwake-imaging systemwarning systemwater injection cooling systemwater-mist systemwater-mist spray systemweather systemwheel steering systemwide angle visual systemwind coordinate systemwind shear systemwind-axes systemwind-axes coordinate systemwind-fixed coordinate systemwing axis systemwing flap systemwing sweep systemwing-load-alleviation systemwing-mounted systemwing/propulsion systemwiring systemyaw vane system79 Johnson, Eldridge Reeves
SUBJECT AREA: Recording[br]b. 18 February 1867 Wilmington, Delaware, USAd. 14 November 1945 Moorestown, New Jersey, USA[br]American industrialist, founder and owner of the Victor Talking Machine Company; developer of many basic constructions in mechanical sound recording and the reproduction and manufacture of gramophone records.[br]He graduated from the Dover Academy (Delaware) in 1882 and was apprenticed in a machine-repair firm in Philadelphia and studied in evening classes at the Spring Garden Institute. In 1888 he took employment in a small Philadelphia machine shop owned by Andrew Scull, specializing in repair and bookbinding machinery. After travels in the western part of the US, in 1891 he became a partner in Scull \& Johnson, Manufacturing Machinists, and established a further company, the New Jersey Wire Stitching Machine Company. He bought out Andrew Scull's interest in October 1894 (the last instalment being paid in 1897) and became an independent general machinist. In 1896 he had perfected a spring motor for the Berliner flat-disc gramophone, and he started experimenting with a more direct method of recording in a spiral groove: that of cutting in wax. Co-operation with Berliner eventually led to the incorporation of the Victor Talking Machine Company in 1901. The innumerable court cases stemming from the fact that so many patents for various elements in sound recording and reproduction were in very many hands were brought to an end in 1903 when Johnson was material in establishing cross-licencing agreements between Victor, Columbia Graphophone and Edison to create what is known as a patent pool. Early on, Johnson had a thorough experience in all matters concerning the development and manufacture of both gramophones and records. He made and patented many major contributions in all these fields, and his approach was very business-like in that the contribution to cost of each part or process was always a decisive factor in his designs. This attitude was material in his consulting work for the sister company, the Gramophone Company, in London before it set up its own factories in 1910. He had quickly learned the advantages of advertising and of providing customers with durable equipment and records. This motivation was so strong that Johnson set up a research programme for determining the cause of wear in records. It turned out to depend on groove profile, and from 1911 one particular profile was adhered to and processes for transforming the grooves of valuable earlier records were developed. Without precise measuring instruments, he used the durability as the determining factor. Johnson withdrew more and more to the role of manager, and the Victor Talking Machine Company gained such a position in the market that the US anti-trust legislation was used against it. However, a generation change in the Board of Directors and certain erroneous decisions as to product line started a decline, and in February 1926 Johnson withdrew on extended sick leave: these changes led to the eventual sale of Victor. However, Victor survived due to the advent of radio and the electrification of replay equipment and became a part of Radio Corporation of America. In retirement Johnson took up various activities in the arts and sciences and financially supported several projects; his private yacht was used in 1933 in work with the Smithsonian Institution on a deep-sea hydrographie and fauna-collecting expedition near Puerto Rico.[br]BibliographyJohnson's patents were many, and some were fundamental to the development of the gramophone, such as: US patent no. 650,843 (in particular a recording lathe); US patent nos. 655,556, 655,556 and 679,896 (soundboxes); US patent no. 681,918 (making the original conductive for electroplating); US patent no. 739,318 (shellac record with paper label).Further ReadingMrs E.R.Johnson, 1913, "Eldridge Reeves Johnson (1867–1945): Industrial pioneer", manuscript (an account of his early experience).E.Hutto, Jr, "Emile Berliner, Eldridge Johnson, and the Victor Talking Machine Company", Journal of AES 25(10/11):666–73 (a good but brief account based on company information).E.R.Fenimore Johnson, 1974, His Master's Voice was Eldridge R.Johnson, Milford, Del.(a very personal biography by his only son).GB-NBiographical history of technology > Johnson, Eldridge Reeves
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