research engineering - перевод на русский
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  • как употребляется слово
  • частота употребления
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  • варианты перевода слова
  • примеры употребления (несколько фраз с переводом)
  • этимология

research engineering - перевод на русский

NOW DISBANDED PROGRAM WHICH ATTEMPTED TO STUDY THE PARANORMAL
Princeton Engineering Anomalies Research; Princeton Engineering Anomalies Research laboratory; Princeton Engineering Anomalies Research Laboratory; PEAR lab; PEAR laboratory
Найдено результатов: 2492
research engineering      
организация научных исследований
engineering research         
технические исследования
engineering         
  • A water-powered [[mine hoist]] used for raising ore, ca. 1556
  • A drawing for a [[steam locomotive]]. Engineering is applied to [[design]], with emphasis on function and the utilization of mathematics and science.
  • fluid flow]] and the [[heat equation]]s.
  • rotor and stator]] as well as the [[steam cycle]] all need to be carefully designed and optimized.
  • Radar, [[GPS]], [[lidar]], ... are all combined to provide proper navigation and [[obstacle avoidance]] (vehicle developed for 2007 [[DARPA Urban Challenge]])
  • F}}
  • Genetically engineered mice expressing [[green fluorescent protein]], which glows green under blue light. The central mouse is [[wild-type]].
  • Relief map of the [[Citadel of Lille]], designed in 1668 by [[Vauban]], the foremost military engineer of his age.
  • Offshore platform, [[Gulf of Mexico]]
  • [[Hoover Dam]]
  • Kismet]] can produce a range of facial expressions.
  • [[Leonardo da Vinci]], seen here in a self-portrait, has been described as the epitome of the artist/engineer.<ref name="Bjerklie, David"/> He is also known for his studies on [[human anatomy]] and [[physiology]].
  • The ''[[InSight]]'' lander with solar panels deployed in a cleanroom
  • aqueducts]] to bring a steady supply of clean and fresh water to cities and towns in the empire.
  • The [[International Space Station]] is used to conduct science experiments in space
  • The application of the steam engine allowed coke to be substituted for charcoal in iron making, lowering the cost of iron, which provided engineers with a new material for building bridges.  This bridge was made of [[cast iron]], which was soon displaced by less brittle [[wrought iron]] as a structural material
  • Engineers, scientists and technicians at work on target positioner inside [[National Ignition Facility]] (NIF) target chamber
  • Graphic representation of a minute fraction of the WWW, demonstrating [[hyperlink]]s
APPLIED SCIENCE
Engineered; Engeneering; Enginering; Graduate Diploma in Engineering; Technical science; Engineerig; Engineering (profession); Engineering (practice); Engineering (skill); Enginreeing; Science and engineering; Science and Engineering; Engineering subjects; Engineering branch
engineering         
  • A water-powered [[mine hoist]] used for raising ore, ca. 1556
  • A drawing for a [[steam locomotive]]. Engineering is applied to [[design]], with emphasis on function and the utilization of mathematics and science.
  • fluid flow]] and the [[heat equation]]s.
  • rotor and stator]] as well as the [[steam cycle]] all need to be carefully designed and optimized.
  • Radar, [[GPS]], [[lidar]], ... are all combined to provide proper navigation and [[obstacle avoidance]] (vehicle developed for 2007 [[DARPA Urban Challenge]])
  • F}}
  • Genetically engineered mice expressing [[green fluorescent protein]], which glows green under blue light. The central mouse is [[wild-type]].
  • Relief map of the [[Citadel of Lille]], designed in 1668 by [[Vauban]], the foremost military engineer of his age.
  • Offshore platform, [[Gulf of Mexico]]
  • [[Hoover Dam]]
  • Kismet]] can produce a range of facial expressions.
  • [[Leonardo da Vinci]], seen here in a self-portrait, has been described as the epitome of the artist/engineer.<ref name="Bjerklie, David"/> He is also known for his studies on [[human anatomy]] and [[physiology]].
  • The ''[[InSight]]'' lander with solar panels deployed in a cleanroom
  • aqueducts]] to bring a steady supply of clean and fresh water to cities and towns in the empire.
  • The [[International Space Station]] is used to conduct science experiments in space
  • The application of the steam engine allowed coke to be substituted for charcoal in iron making, lowering the cost of iron, which provided engineers with a new material for building bridges.  This bridge was made of [[cast iron]], which was soon displaced by less brittle [[wrought iron]] as a structural material
  • Engineers, scientists and technicians at work on target positioner inside [[National Ignition Facility]] (NIF) target chamber
  • Graphic representation of a minute fraction of the WWW, demonstrating [[hyperlink]]s
APPLIED SCIENCE
Engineered; Engeneering; Enginering; Graduate Diploma in Engineering; Technical science; Engineerig; Engineering (profession); Engineering (practice); Engineering (skill); Enginreeing; Science and engineering; Science and Engineering; Engineering subjects; Engineering branch
engineering         
  • A water-powered [[mine hoist]] used for raising ore, ca. 1556
  • A drawing for a [[steam locomotive]]. Engineering is applied to [[design]], with emphasis on function and the utilization of mathematics and science.
  • fluid flow]] and the [[heat equation]]s.
  • rotor and stator]] as well as the [[steam cycle]] all need to be carefully designed and optimized.
  • Radar, [[GPS]], [[lidar]], ... are all combined to provide proper navigation and [[obstacle avoidance]] (vehicle developed for 2007 [[DARPA Urban Challenge]])
  • F}}
  • Genetically engineered mice expressing [[green fluorescent protein]], which glows green under blue light. The central mouse is [[wild-type]].
  • Relief map of the [[Citadel of Lille]], designed in 1668 by [[Vauban]], the foremost military engineer of his age.
  • Offshore platform, [[Gulf of Mexico]]
  • [[Hoover Dam]]
  • Kismet]] can produce a range of facial expressions.
  • [[Leonardo da Vinci]], seen here in a self-portrait, has been described as the epitome of the artist/engineer.<ref name="Bjerklie, David"/> He is also known for his studies on [[human anatomy]] and [[physiology]].
  • The ''[[InSight]]'' lander with solar panels deployed in a cleanroom
  • aqueducts]] to bring a steady supply of clean and fresh water to cities and towns in the empire.
  • The [[International Space Station]] is used to conduct science experiments in space
  • The application of the steam engine allowed coke to be substituted for charcoal in iron making, lowering the cost of iron, which provided engineers with a new material for building bridges.  This bridge was made of [[cast iron]], which was soon displaced by less brittle [[wrought iron]] as a structural material
  • Engineers, scientists and technicians at work on target positioner inside [[National Ignition Facility]] (NIF) target chamber
  • Graphic representation of a minute fraction of the WWW, demonstrating [[hyperlink]]s
APPLIED SCIENCE
Engineered; Engeneering; Enginering; Graduate Diploma in Engineering; Technical science; Engineerig; Engineering (profession); Engineering (practice); Engineering (skill); Enginreeing; Science and engineering; Science and Engineering; Engineering subjects; Engineering branch
engineering         
  • A water-powered [[mine hoist]] used for raising ore, ca. 1556
  • A drawing for a [[steam locomotive]]. Engineering is applied to [[design]], with emphasis on function and the utilization of mathematics and science.
  • fluid flow]] and the [[heat equation]]s.
  • rotor and stator]] as well as the [[steam cycle]] all need to be carefully designed and optimized.
  • Radar, [[GPS]], [[lidar]], ... are all combined to provide proper navigation and [[obstacle avoidance]] (vehicle developed for 2007 [[DARPA Urban Challenge]])
  • F}}
  • Genetically engineered mice expressing [[green fluorescent protein]], which glows green under blue light. The central mouse is [[wild-type]].
  • Relief map of the [[Citadel of Lille]], designed in 1668 by [[Vauban]], the foremost military engineer of his age.
  • Offshore platform, [[Gulf of Mexico]]
  • [[Hoover Dam]]
  • Kismet]] can produce a range of facial expressions.
  • [[Leonardo da Vinci]], seen here in a self-portrait, has been described as the epitome of the artist/engineer.<ref name="Bjerklie, David"/> He is also known for his studies on [[human anatomy]] and [[physiology]].
  • The ''[[InSight]]'' lander with solar panels deployed in a cleanroom
  • aqueducts]] to bring a steady supply of clean and fresh water to cities and towns in the empire.
  • The [[International Space Station]] is used to conduct science experiments in space
  • The application of the steam engine allowed coke to be substituted for charcoal in iron making, lowering the cost of iron, which provided engineers with a new material for building bridges.  This bridge was made of [[cast iron]], which was soon displaced by less brittle [[wrought iron]] as a structural material
  • Engineers, scientists and technicians at work on target positioner inside [[National Ignition Facility]] (NIF) target chamber
  • Graphic representation of a minute fraction of the WWW, demonstrating [[hyperlink]]s
APPLIED SCIENCE
Engineered; Engeneering; Enginering; Graduate Diploma in Engineering; Technical science; Engineerig; Engineering (profession); Engineering (practice); Engineering (skill); Enginreeing; Science and engineering; Science and Engineering; Engineering subjects; Engineering branch

[endʒi'ni(ə)riŋ]

общая лексика

инженерное дело

инженерный

техника

технический

машиностроение

машиностроительный

разработка

конструирование

технология

медицина

инженерия

строительное дело

строительство

проектирование

прилагательное

общая лексика

прикладной (о науке)

технический

технологический

машиностроительный

прикладной (о науке)

существительное

[endʒi'ni(ə)riŋ]

общая лексика

техника

инженерное искусство

технология

машиностроение

инженерия

разработка

проектирование

машиностроительный

неодобрительное выражение

махинации

интриги

происки

собирательное выражение

махинации, происки

engineered         
  • A water-powered [[mine hoist]] used for raising ore, ca. 1556
  • A drawing for a [[steam locomotive]]. Engineering is applied to [[design]], with emphasis on function and the utilization of mathematics and science.
  • fluid flow]] and the [[heat equation]]s.
  • rotor and stator]] as well as the [[steam cycle]] all need to be carefully designed and optimized.
  • Radar, [[GPS]], [[lidar]], ... are all combined to provide proper navigation and [[obstacle avoidance]] (vehicle developed for 2007 [[DARPA Urban Challenge]])
  • F}}
  • Genetically engineered mice expressing [[green fluorescent protein]], which glows green under blue light. The central mouse is [[wild-type]].
  • Relief map of the [[Citadel of Lille]], designed in 1668 by [[Vauban]], the foremost military engineer of his age.
  • Offshore platform, [[Gulf of Mexico]]
  • [[Hoover Dam]]
  • Kismet]] can produce a range of facial expressions.
  • [[Leonardo da Vinci]], seen here in a self-portrait, has been described as the epitome of the artist/engineer.<ref name="Bjerklie, David"/> He is also known for his studies on [[human anatomy]] and [[physiology]].
  • The ''[[InSight]]'' lander with solar panels deployed in a cleanroom
  • aqueducts]] to bring a steady supply of clean and fresh water to cities and towns in the empire.
  • The [[International Space Station]] is used to conduct science experiments in space
  • The application of the steam engine allowed coke to be substituted for charcoal in iron making, lowering the cost of iron, which provided engineers with a new material for building bridges.  This bridge was made of [[cast iron]], which was soon displaced by less brittle [[wrought iron]] as a structural material
  • Engineers, scientists and technicians at work on target positioner inside [[National Ignition Facility]] (NIF) target chamber
  • Graphic representation of a minute fraction of the WWW, demonstrating [[hyperlink]]s
APPLIED SCIENCE
Engineered; Engeneering; Enginering; Graduate Diploma in Engineering; Technical science; Engineerig; Engineering (profession); Engineering (practice); Engineering (skill); Enginreeing; Science and engineering; Science and Engineering; Engineering subjects; Engineering branch
сконструированный
engineering         
  • A water-powered [[mine hoist]] used for raising ore, ca. 1556
  • A drawing for a [[steam locomotive]]. Engineering is applied to [[design]], with emphasis on function and the utilization of mathematics and science.
  • fluid flow]] and the [[heat equation]]s.
  • rotor and stator]] as well as the [[steam cycle]] all need to be carefully designed and optimized.
  • Radar, [[GPS]], [[lidar]], ... are all combined to provide proper navigation and [[obstacle avoidance]] (vehicle developed for 2007 [[DARPA Urban Challenge]])
  • F}}
  • Genetically engineered mice expressing [[green fluorescent protein]], which glows green under blue light. The central mouse is [[wild-type]].
  • Relief map of the [[Citadel of Lille]], designed in 1668 by [[Vauban]], the foremost military engineer of his age.
  • Offshore platform, [[Gulf of Mexico]]
  • [[Hoover Dam]]
  • Kismet]] can produce a range of facial expressions.
  • [[Leonardo da Vinci]], seen here in a self-portrait, has been described as the epitome of the artist/engineer.<ref name="Bjerklie, David"/> He is also known for his studies on [[human anatomy]] and [[physiology]].
  • The ''[[InSight]]'' lander with solar panels deployed in a cleanroom
  • aqueducts]] to bring a steady supply of clean and fresh water to cities and towns in the empire.
  • The [[International Space Station]] is used to conduct science experiments in space
  • The application of the steam engine allowed coke to be substituted for charcoal in iron making, lowering the cost of iron, which provided engineers with a new material for building bridges.  This bridge was made of [[cast iron]], which was soon displaced by less brittle [[wrought iron]] as a structural material
  • Engineers, scientists and technicians at work on target positioner inside [[National Ignition Facility]] (NIF) target chamber
  • Graphic representation of a minute fraction of the WWW, demonstrating [[hyperlink]]s
APPLIED SCIENCE
Engineered; Engeneering; Enginering; Graduate Diploma in Engineering; Technical science; Engineerig; Engineering (profession); Engineering (practice); Engineering (skill); Enginreeing; Science and engineering; Science and Engineering; Engineering subjects; Engineering branch
формат упаковочной бумаги 55,8x76,1 см
engineered         
  • A water-powered [[mine hoist]] used for raising ore, ca. 1556
  • A drawing for a [[steam locomotive]]. Engineering is applied to [[design]], with emphasis on function and the utilization of mathematics and science.
  • fluid flow]] and the [[heat equation]]s.
  • rotor and stator]] as well as the [[steam cycle]] all need to be carefully designed and optimized.
  • Radar, [[GPS]], [[lidar]], ... are all combined to provide proper navigation and [[obstacle avoidance]] (vehicle developed for 2007 [[DARPA Urban Challenge]])
  • F}}
  • Genetically engineered mice expressing [[green fluorescent protein]], which glows green under blue light. The central mouse is [[wild-type]].
  • Relief map of the [[Citadel of Lille]], designed in 1668 by [[Vauban]], the foremost military engineer of his age.
  • Offshore platform, [[Gulf of Mexico]]
  • [[Hoover Dam]]
  • Kismet]] can produce a range of facial expressions.
  • [[Leonardo da Vinci]], seen here in a self-portrait, has been described as the epitome of the artist/engineer.<ref name="Bjerklie, David"/> He is also known for his studies on [[human anatomy]] and [[physiology]].
  • The ''[[InSight]]'' lander with solar panels deployed in a cleanroom
  • aqueducts]] to bring a steady supply of clean and fresh water to cities and towns in the empire.
  • The [[International Space Station]] is used to conduct science experiments in space
  • The application of the steam engine allowed coke to be substituted for charcoal in iron making, lowering the cost of iron, which provided engineers with a new material for building bridges.  This bridge was made of [[cast iron]], which was soon displaced by less brittle [[wrought iron]] as a structural material
  • Engineers, scientists and technicians at work on target positioner inside [[National Ignition Facility]] (NIF) target chamber
  • Graphic representation of a minute fraction of the WWW, demonstrating [[hyperlink]]s
APPLIED SCIENCE
Engineered; Engeneering; Enginering; Graduate Diploma in Engineering; Technical science; Engineerig; Engineering (profession); Engineering (practice); Engineering (skill); Enginreeing; Science and engineering; Science and Engineering; Engineering subjects; Engineering branch

общая лексика

сконструированный

разработанный

спроектированный

engineering         
  • A water-powered [[mine hoist]] used for raising ore, ca. 1556
  • A drawing for a [[steam locomotive]]. Engineering is applied to [[design]], with emphasis on function and the utilization of mathematics and science.
  • fluid flow]] and the [[heat equation]]s.
  • rotor and stator]] as well as the [[steam cycle]] all need to be carefully designed and optimized.
  • Radar, [[GPS]], [[lidar]], ... are all combined to provide proper navigation and [[obstacle avoidance]] (vehicle developed for 2007 [[DARPA Urban Challenge]])
  • F}}
  • Genetically engineered mice expressing [[green fluorescent protein]], which glows green under blue light. The central mouse is [[wild-type]].
  • Relief map of the [[Citadel of Lille]], designed in 1668 by [[Vauban]], the foremost military engineer of his age.
  • Offshore platform, [[Gulf of Mexico]]
  • [[Hoover Dam]]
  • Kismet]] can produce a range of facial expressions.
  • [[Leonardo da Vinci]], seen here in a self-portrait, has been described as the epitome of the artist/engineer.<ref name="Bjerklie, David"/> He is also known for his studies on [[human anatomy]] and [[physiology]].
  • The ''[[InSight]]'' lander with solar panels deployed in a cleanroom
  • aqueducts]] to bring a steady supply of clean and fresh water to cities and towns in the empire.
  • The [[International Space Station]] is used to conduct science experiments in space
  • The application of the steam engine allowed coke to be substituted for charcoal in iron making, lowering the cost of iron, which provided engineers with a new material for building bridges.  This bridge was made of [[cast iron]], which was soon displaced by less brittle [[wrought iron]] as a structural material
  • Engineers, scientists and technicians at work on target positioner inside [[National Ignition Facility]] (NIF) target chamber
  • Graphic representation of a minute fraction of the WWW, demonstrating [[hyperlink]]s
APPLIED SCIENCE
Engineered; Engeneering; Enginering; Graduate Diploma in Engineering; Technical science; Engineerig; Engineering (profession); Engineering (practice); Engineering (skill); Enginreeing; Science and engineering; Science and Engineering; Engineering subjects; Engineering branch

Определение

Объединённый институт ядерных исследований
(ОИЯИ)

международный научный ядерно-физический центр социалистических стран. Расположен в г. Дубна (Московская область). Соглашение об учреждении ОИЯИ было подписано в Москве 26 марта 1956. В состав ОИЯИ (1974) входят учёные и специалисты 10 стран-членов: НРБ, ВНР, ДРВ, ГДР, КНДР, МНР, ПНР, СРР, СССР, ЧССР.

В соответствии с уставом, принятым 23 сентября 1956, основными задачами института являются: обеспечение совместного проведения фундаментальных теоретических и экспериментальных исследований в области ядерной физики учёными государств-членов, содействие развитию ядерной физики в этих странах, поддержание связи с заинтересованными национальными и международными организациями в деле развития ядерной физики и изыскания новых возможностей мирного применения атомной энергии. Финансирование деятельности института (научной работы, нового строительства и т.д.) производится за счёт взносов стран-членов. Независимо от размера взноса все страны-члены имеют равные права в проведении научных исследований и в управлении институтом.

Высший орган управления - Комитет полномочных представителей (в его составе 10 человек - по одному представителю от каждой страны-члена); научной деятельностью руководит Учёный совет, в который входят ведущие учёные этих стран. Директор института, 2 вице-директора, руководители лабораторий и их заместители избираются на определённые сроки Комитетом полномочных представителей или Учёным советом. Первым директором ОИЯИ был член-корреспондент АН СССР Д. И. Блохинцев, в 1964 директором избран академик Н. Н. Боголюбов. Вице-директорами избирались профессора В. Вотруба (ЧССР), Н. Содном (МНР), X. Христов (НРБ), А. Хрынкевич (ПНР), Ш. Цицейка (СРР) и др. В ОИЯИ работают (1974): академики Б. М. Понтекорво, Г. Н. Флёров, И. М. Франк, член-корреспонденты АН СССР А. М. Балдин, Н. Н. Говорун, В. П. Джелепов, М. Г. Мещеряков, Д. В. Ширков. Большой вклад в организацию и развитие ОИЯИ внесли академик В. И. Векслер и член-корреспондент АН СССР Ф. Л. Шапиро.

ОИЯИ организован на базе института ядерных проблем АН СССР и Электрофизической лаборатории АН СССР. Они стали первыми лабораториями ОИЯИ - Лабораторией ядерных проблем (ЛЯП) и Лабораторией высоких энергий (ЛВЭ). При создании ОИЯИ была организована Лаборатория теоретической физики (ЛТФ), принято решение об организации Лаборатории ядерных реакций (ЛЯР) и Лаборатории нейтронной физики (ЛНФ), в которых с 1960 начаты исследования. В 1966 была организована Лаборатория вычислительной техники и автоматизации (ЛВТА). Лаборатории ОИЯИ по масштабам и объёму научных работ являются крупными научно-исследовательскими институтами.

Исследования в области физики высоких энергий и элементарных частиц ведутся в ЛЯП на синхроциклотроне на энергию протонов 680 Мэв (запущен в 1949) и в ЛВЭ на синхрофазотроне на энергию протонов 10 Гэв (запущен в 1957). Эксперименты в этих лабораториях проводятся на пучках различных частиц: нуклонов, пи-мезонов, мюонов, К-мезонов, а также дейтронов и альфа-частиц. С помощью уникальной аппаратуры выполнены опыты по изучению важнейших свойств ядерных сил, экспериментальной проверке основных принципов современной физической теории, открыто более 100 новых изотопов химических элементов. В 1960 обнаружена новая частица - антисигма-минусгиперон.

ЛЯР проводит исследования ядерных превращений под действием ускоренных тяжёлых ионов на мощном циклотроне У-300 (запущен в 1960), а также циклотроне У-200, в которых ускоряются различные многозарядные ионы, включая 136Хе+30. Здесь синтезированы изотопы химических элементов с порядковыми номерами 102, 103, 104, 105, открыты явления ядерной изомерии с аномально коротким периодом спонтанного деления ядер и явление протонной радиоактивности. В ЛНФ в 1960 был построен оригинальный импульсный ("мигающий") реактор на быстрых нейтронах (ИБР), реконструированный в 1969 в ИБР-30 мощностью 30 квт (и мощностью в импульсе 150 Мвт). В лаборатории решаются многие задачи нейтронной спектрометрии ядер, изучаются структура и свойства конденсированных сред и ядерные реакции с заряженными частицами.

ЛВТА располагает крупным вычислительным центром, связанным в единую систему с ЭВМ, находящимися в измерительных центрах др. лабораторий. В этой лаборатории ведётся автоматизированная обработка снимков, полученных с пузырьковых и искровых камер, а также работы по автоматизации физического эксперимента.

ЛТФ проводит исследования в главных направлениях физической теории - теории поля, структуры элементарных частиц и теории их взаимодействия, теории ядра и ядерных реакций и т.д.

ОИЯИ - ведущий центр по разработке новых методов ускорения заряженных частиц, ускорительной и криогенной техники.

ОИЯИ осуществляет широкое научное сотрудничество с национальными институтами многих стран, организует международные научные совещания, конференции, школы и т.д. Труды учёных института публикуются во многих журналах мира, оперативные публикации (препринты и сообщения ОИЯИ) о выполненных здесь работах, рассылаются по 1000 адресам в 50 стран. С 1970 институт издаёт периодический журнал "Физика элементарных частиц и атомного ядра".

Лит.: Соглашение об организации ОИЯИ "Правда", 1956, 12 июля; Бирюков В. А., Лебеденко М. М., Рыжов А. М., Объединенный институт ядерных исследований, М., 1960; Объединенный институт ядерных исследований, М., 1970-71,

В. А. Бирюков.

Википедия

Princeton Engineering Anomalies Research Lab

The Princeton Engineering Anomalies Research (PEAR) was a research program at Princeton University that studied parapsychology. Established in 1979 by then Dean of Engineering Robert G. Jahn, PEAR conducted formal studies on two primary subject areas, psychokinesis (PK) and remote viewing. Owing to the controversial nature of the subject matter, the program had a strained relationship with Princeton and was considered by the administration and some faculty to be an embarrassment to the university. Critics suggested that it lacked scientific rigor, used poor methodology, and misused statistics, and characterized it as pseudoscience. PEAR closed in February 2007, being incorporated into the "International Consciousness Research Laboratories" (ICRL).

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