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(near the telescope)

  • 1 пространство

    1.space 2.area 3.zone
    пространство лишенное полей
    field-free space
    пространство между орбитой Луны и сферой действия Земли
    см. транслунное пространство
    безвоздушное пространство
    airless space
    внегалактическое пространство
    extragalactic space
    внеземное пространство
    extraterrestrial space
    внешнее пространство
    1.outside 2.outer space
    галактическое пространство
    Galactic space
    допланетное пространство
    cisplanetary space
    запланетное пространство
    extraplanetary space
    искривленное пространство
    curved space
    космическое пространство
    1.cosmos 2.outer space 3.space
    космическое пространство внутри Солнечной системы
    inner space
    космическое пространство до лунной орбиты
    cislunar space
    межгалактическое пространство
    intergalactic space
    межзвездное пространство
    interstellar space
    межзвездное пространство в пределах галактики
    middle space
    межпланетное пространство
    1.inner space 2.interplanetary space
    околозвездное пространство
    circumstellar space
    околоземное пространство
    1.circumterrestrial space 2.near-earth space 3.terrestrial space
    окололунное пространство
    lunar space
    околопланетное пространство
    1.circumplanetary space 2.planetary space
    околосолнечное пространство
    solar space
    плоское пространство
    Euclidean space
    рабочее пространство транслунное пространство
    translunar space
    транспланетное пространство
    transplanetary space
    трехмерное пространство
    three-dimensional space
    четырехмерное пространство
    1.four-dimensional space 2.Minkowski space

    Русско-английский астрономический словарь > пространство

  • 2 Galilei, Galileo

    [br]
    b. 15 February 1564 Pisa, Italy
    d. 8 January 1642 Arcetri, near Florence, Italy
    [br]
    Italian mathematician, astronomer and physicist who established the principle of the pendulum and was first to exploit the telescope.
    [br]
    Galileo began studying medicine at the University of Pisa but soon turned to his real interests, mathematics, mechanics and astronomy. He became Professor of Mathematics at Pisa at the age of 25 and three years later moved to Padua. In 1610 he transferred to Florence. While still a student he discovered the isochronous property of the pendulum, probably by timing with his pulse the swings of a hanging lamp during a religious ceremony in Pisa Cathedral. He later designed a pendulum-controlled clock, but it was not constructed until after his death, and then not successfully; the first successful pendulum clock was made by the Dutch scientist Christiaan Huygens in 1656. Around 1590 Galileo established the laws of motion of falling bodies, by timing rolling balls down inclined planes and not, as was once widely believed, by dropping different weights from the Leaning Tower of Pisa. These and other observations received definitive treatment in his Discorsi e dimostrazioni matematiche intorno a due nuove scienzi attenenti alla, meccanica (Dialogues Concerning Two New Sciences…) which was completed in 1634 and first printed in 1638. This work also included Galileo's proof that the path of a projectile was a parabola and, most importantly, the development of the concept of inertia.
    In astronomy Galileo adopted the Copernican heliocentric theory of the universe while still in his twenties, but he lacked the evidence to promote it publicly. That evidence came with the invention of the telescope by the Dutch brothers Lippershey. Galileo heard of its invention in 1609 and had his own instrument constructed, with a convex object lens and concave eyepiece, a form which came to be known as the Galilean telescope. Galileo was the first to exploit the telescope successfully with a series of striking astronomical discoveries. He was also the first to publish the results of observations with the telescope, in his Sidereus nuncius (Starry Messenger) of 1610. All the discoveries told against the traditional view of the universe inherited from the ancient Greeks, and one in particular, that of the four satellites in orbit around Jupiter, supported the Copernican theory in that it showed that there could be another centre of motion in the universe besides the Earth: if Jupiter, why not the Sun? Galileo now felt confident enough to advocate the theory, but the advance of new ideas was opposed, not for the first or last time, by established opinion, personified in Galileo's time by the ecclesiastical authorities in Rome. Eventually he was forced to renounce the Copernican theory, at least in public, and turn to less contentious subjects such as the "two new sciences" of his last and most important work.
    [br]
    Bibliography
    1610, Sidereus nuncius (Starry Messenger); translation by A.Van Helden, 1989, Sidereus Nuncius, or the Sidereal Messenger; Chicago: University of Chicago Press.
    1623, Il Saggiatore (The Assayer).
    1632, Dialogo sopre i due massimi sistemi del mondo, tolemaico e copernicano (Dialogue Concerning the Two Chief World Systems, Ptolemaic and Copernican); translation, 1967, Berkeley: University of California Press.
    1638, Discorsi e dimostrazioni matematiche intorno a due nuove scienzi attenenti alla
    meccanica (Dialogues Concerning Two New Sciences…); translation, 1991, Buffalo, New York: Prometheus Books (reprint).
    Further Reading
    G.de Santillana, 1955, The Crime of Galileo, Chicago: University of Chicago Press; also 1958, London: Heinemann.
    H.Stillman Drake, 1980, Galileo, Oxford: Oxford Paperbacks. M.Sharratt, 1994, Galileo: Decisive Innovator, Oxford: Blackwell.
    J.Reston, 1994, Galileo: A Life, New York: HarperCollins; also 1994, London: Cassell.
    A.Fantoli, 1994, Galileo: For Copemicanism and for the Church, trans. G.V.Coyne, South Bend, Indiana: University of Notre Dame Press.
    LRD

    Biographical history of technology > Galilei, Galileo

  • 3 расположен

    When installing the thermometer, the tip should be arranged (or placed, or sited) as near as possible to...

    Loudspeakers are so disposed as to give a three-dimensional effect.

    The luminous reaction zone occurs very close to the solid surface.

    The cabins may be placed (or located, or sited) near the mill.

    The thermocouple is positioned in the outflow pipe.

    The atomizers are positioned to apply a multi-colour finish.

    The blade is set at right angles to the handle.

    The screw is situated at the rear of the clamp.

    The turns are spaced 1/8 in. apart (or at 1/8 in. intervals).

    Four sets of burners are patterned around the inner periphery of each furnace section.

    When atoms are arranged in a solid...

    Volcanic islands often occur in long, straight chains.

    The boxes are aligned (or arranged) parallel to the optic axis of the telescope.

    Русско-английский научно-технический словарь переводчика > расположен

  • 4 Porta, Giovanni Battista (Giambattista) della

    [br]
    b. between 3 October and 15 November 1535 Vico Equense, near Naples, Italy
    d. 4 February 1615 Naples, Italy
    [br]
    Italian natural philosopher who published many scientific books, one of which covered ideas for the use of steam.
    [br]
    Giambattista della Porta spent most of his life in Naples, where some time before 1580 he established the Accademia dei Segreti, which met at his house. In 1611 he was enrolled among the Oziosi in Naples, then the most renowned literary academy. He was examined by the Inquisition, which, although he had become a lay brother of the Jesuits by 1585, banned all further publication of his books between 1592 and 1598.
    His first book, the Magiae Naturalis, which covered the secrets of nature, was published in 1558. He had been collecting material for it since the age of 15 and he saw that science should not merely represent theory and contemplation but must arrive at practical and experimental expression. In this work he described the hardening of files and pieces of armour on quite a large scale, and it included the best sixteenth-century description of heat treatment for hardening steel. In the 1589 edition of this work he covered ways of improving vision at a distance with concave and convex lenses; although he may have constructed a compound microscope, the history of this instrument effectively begins with Galileo. His theoretical and practical work on lenses paved the way for the telescope and he also explored the properties of parabolic mirrors.
    In 1563 he published a treatise on cryptography, De Furtivis Liter arum Notis, which he followed in 1566 with another on memory and mnemonic devices, Arte del Ricordare. In 1584 and 1585 he published treatises on horticulture and agriculture based on careful study and practice; in 1586 he published De Humana Physiognomonia, on human physiognomy, and in 1588 a treatise on the physiognomy of plants. In 1593 he published his De Refractione but, probably because of the ban by the Inquisition, no more were produced until the Spiritali in 1601 and his translation of Ptolemy's Almagest in 1605. In 1608 two new works appeared: a short treatise on military fortifications; and the De Distillatione. There was an important work on meteorology in 1610. In 1601 he described a device similar to Hero's mechanisms which opened temple doors, only Porta used steam pressure instead of air to force the water out of its box or container, up a pipe to where it emptied out into a higher container. Under the lower box there was a small steam boiler heated by a fire. He may also have been the first person to realize that condensed steam would form a vacuum, for there is a description of another piece of apparatus where water is drawn up into a container at the top of a long pipe. The container was first filled with steam so that, when cooled, a vacuum would be formed and water drawn up into it. These are the principles on which Thomas Savery's later steam-engine worked.
    [br]
    Further Reading
    Dictionary of Scientific Biography, 1975, Vol. XI, New York: C.Scribner's Sons (contains a full biography).
    H.W.Dickinson, 1938, A Short History of the Steam Engine, Cambridge University Press (contains an account of his contributions to the early development of the steam-engine).
    C.Singer (ed.), 1957, A History of Technology, Vol. III, Oxford University Press (contains accounts of some of his other discoveries).
    I.Asimov (ed.), 1982, Biographical Encyclopaedia of Science and Technology, 2nd edn., New York: Doubleday.
    G.Sarton, 1957, Six wings: Men of Science in the Renaissance, London: Bodley Head, pp. 85–8.
    RLH / IMcN

    Biographical history of technology > Porta, Giovanni Battista (Giambattista) della

  • 5 lejano

    adj.
    1 distant, far, far away, remote.
    2 distant, far.
    * * *
    1 (tierra, país) distant, far-off, far-away; (pariente, familia) distant
    * * *
    (f. - lejana)
    adj.
    distant, far, remote
    * * *
    ADJ
    1) [en el espacio, en el tiempo] distant
    2) [pariente] distant
    * * *
    - na adjetivo
    a) < época> distant, far-off;; < lugar> remote, far-off

    en un lejano paísin a distant o far-away country (liter)

    b) < pariente> distant
    * * *
    = far-flung, outlying, remote, far [farther/further -comp., farthest/furthest -sup.], distant, far away, from afar, far off, distanced.
    Ex. Books by authors of all origins, African, Chinese, Hindu, Muslim, have now become commonplace in even the most far-flung libraries of Europe and America.
    Ex. Attempts were made to reach beyond the larger cities through the use of mobile vans to visit outlying towns and rural areas.
    Ex. The computer, once instructed on the desired filing order, is eminently suitable for filing, achieving a level of consistency which was a remote dream in the days of human filers.
    Ex. A public libary's site communicates at two levels: as a site for the building and as a qualification of the site as far/near, accessible/inaccessible, inviting/uninviting, etc.
    Ex. She had a distant fleeting vision of a workplace in which people acted like free and sensible human beings, instead of like the martyrized and victimized puppets of a terrible system called 'one-upmanship'.
    Ex. She saw everything as if it were happening in a small room far away, or as if she were looking at it through the wrong end of a telescope.
    Ex. Experts from afar can be drawn into virtual classrooms to stimulate deeper learning from extended interaction.
    Ex. Resolution of copyright issues seems still far off.
    Ex. The author explores issues relating to the development of self service skills and competencies by distanced users.
    ----
    * de tierras lejanas = from distant shores.
    * emplazado en un lugar lejano = outstation.
    * en el futuro lejano = further in the future.
    * en un futuro más o menos lejano = in the near future.
    * en un futuro no muy lejano = in the not too distant future, in the near future.
    * en un pasado muy lejano = in the dim and distant past.
    * en un pasado no muy lejano = in the not too distant past.
    * en un pasado oscuro y lejano = in the dim and distant past.
    * en un período más o menos lejano = in the near future.
    * estar muy lejano = be far off.
    * Lejano Oeste, el = Wild West, the.
    * Lejano Oriente, el = Far East, the.
    * muy lejano = far off.
    * pasado lejano, el = distant past, the.
    * situado en un lugar lejano = outstation.
    * tan lejano como = as far afield as.
    * * *
    - na adjetivo
    a) < época> distant, far-off;; < lugar> remote, far-off

    en un lejano paísin a distant o far-away country (liter)

    b) < pariente> distant
    * * *
    = far-flung, outlying, remote, far [farther/further -comp., farthest/furthest -sup.], distant, far away, from afar, far off, distanced.

    Ex: Books by authors of all origins, African, Chinese, Hindu, Muslim, have now become commonplace in even the most far-flung libraries of Europe and America.

    Ex: Attempts were made to reach beyond the larger cities through the use of mobile vans to visit outlying towns and rural areas.
    Ex: The computer, once instructed on the desired filing order, is eminently suitable for filing, achieving a level of consistency which was a remote dream in the days of human filers.
    Ex: A public libary's site communicates at two levels: as a site for the building and as a qualification of the site as far/near, accessible/inaccessible, inviting/uninviting, etc.
    Ex: She had a distant fleeting vision of a workplace in which people acted like free and sensible human beings, instead of like the martyrized and victimized puppets of a terrible system called 'one-upmanship'.
    Ex: She saw everything as if it were happening in a small room far away, or as if she were looking at it through the wrong end of a telescope.
    Ex: Experts from afar can be drawn into virtual classrooms to stimulate deeper learning from extended interaction.
    Ex: Resolution of copyright issues seems still far off.
    Ex: The author explores issues relating to the development of self service skills and competencies by distanced users.
    * de tierras lejanas = from distant shores.
    * emplazado en un lugar lejano = outstation.
    * en el futuro lejano = further in the future.
    * en un futuro más o menos lejano = in the near future.
    * en un futuro no muy lejano = in the not too distant future, in the near future.
    * en un pasado muy lejano = in the dim and distant past.
    * en un pasado no muy lejano = in the not too distant past.
    * en un pasado oscuro y lejano = in the dim and distant past.
    * en un período más o menos lejano = in the near future.
    * estar muy lejano = be far off.
    * Lejano Oeste, el = Wild West, the.
    * Lejano Oriente, el = Far East, the.
    * muy lejano = far off.
    * pasado lejano, el = distant past, the.
    * situado en un lugar lejano = outstation.
    * tan lejano como = as far afield as.

    * * *
    lejano -na
    1 ‹lugar/época› far-off
    en un lejano país vivía un rey in a distant o far-away o far-off country there lived a king ( liter)
    un pueblo lejano a remote village
    en épocas lejanas in the distant past, in far-off times, long ago
    cada vez se sentían más lejanos el uno del otro they felt increasingly distant from each other, they felt they were growing further and further apart
    2 ‹pariente› distant
    hay un lejano parentesco entre ellos they are distantly related
    Compuestos:
    masculine Far West
    masculine Far East
    * * *

    lejano
    ◊ -na adjetivo

    a)época/futuro distant;

    lugarremote, far-off;

    b) pariente distant

    lejano,-a adjetivo distant, far-off
    el Lejano Oeste, the Far West
    primos lejanos, distant cousins
    ' lejano' also found in these entries:
    Spanish:
    extrema
    - extremo
    - lejana
    - parentesco
    - regresar
    - rincón
    - diablo
    - escondido
    - oriental
    - pariente
    English:
    distant
    - far
    - faraway
    - furthermost
    - furthest
    - move away
    - remote
    - remotely
    - slight
    - Wild West
    - saloon
    - wild
    * * *
    lejano, -a adj
    1. [en el espacio] distant;
    un país lejano a distant land o country
    el Lejano Oeste the Far West;
    el Lejano Oriente the Far East
    2. [en el tiempo]
    su boda queda ya muy lejana her wedding was a long time ago;
    no está lejano el día de su triunfo her hour of glory is not far off
    3. [familiar] distant
    * * *
    adj distant
    * * *
    lejano, -na adj
    : remote, distant, far away
    * * *
    lejano adj distant

    Spanish-English dictionary > lejano

  • 6 скорость


    speed
    в механике - одна из основных характеристик движения материальной точки. — rate of motion. speed and velocity are often used interchangeably although some authorities maintain that velocity should be used only for the vector quantity.
    - (вектор) (рис.124) — velocity (vel)
    величина скорости в данном направлении, — а vector quantity equal to speed in a given direction.
    - (темп изменения величины)rate
    - аварийного слива топлива (в воздухе) — fuel dumping /jettison/ rate. jettison rate for all tanks and all boost pumps operating is... kg per minute.
    - аварийного слива топлива (производительность слива) порядка 2000 л/мин — fuel dump rate of 2000 liters per minute
    - азимутальной коррекции (гироскопа)azimuth erection rate
    -, безопасная — safety speed
    - бокового движения (вертолета)sideward flight speed
    - бокового перемещения (скольжения)lateral velocity
    скорость относительно невозмущенного воздуха в направлении поперечной оси. — the velocity relative to the undisturbed air in the direction of the lateral axis.
    -, большая — high speed
    -, большая (стеклоочистителя) — fast rate (fast)
    "- велика" (надпись на указателе отклонения от заданной скорости прибора пкп) — fast
    -, вертикальная — vertical speed
    - вертикальная (для ссос) — descent /sink/ rate
    -, вертикальная (при посадке) — descent velocity

    with а limit descent velocity of... f.p.s. at the design landing weight...
    - ветра (величина)wind speed (ws)
    скорость массы воздуха в горизонтальном направлении. — ws is horizontal velocity of а mass of air.
    - ветра (величина и направление) (рис.124) — wind velocity
    фактическая скорость ветра на высоте 50 фт. по сообщению) диспетчера. зафиксировать скорость и направление ветра. — the actual wind velocity at 50 foot height reported from the tower. record wind velocity and direction.
    - ветра (название шкалы на графике)wind
    - ветра (сообщаемая диспетчерским пунктом или по метеосводке)reported wind (speed)
    - в зависимости от высоты и веса, вертикальная — vertical speed for altitude and weight
    - взлета, безопасная (v2) — takeoff safety speed (v2)
    скорость, достигаемая на первом этапе взлета, и выбираемая таким образом, чтобы обеспечить безопасное получение нормируемых градиентов набора высоты на втором этапе взлета. — the scheduled target speed to be attained at the 35 feet height with one engine inoperative.
    - взлета, минимальная безопасная (v2 min) — minimum takeoff safety speed (v2 min)
    наименьшая допустимая скорость на 1-м этапе взлета.
    - взлета, минимально эволютивная (vmin эв) — air minimum control speed (v мса)
    - в зоне ожиданияholding speed
    - в момент отказа критического двигателя (при взлете)critical engine failure speed (v1)
    - в момент принятия решения (при взлете)decision speed (v1)
    -, воздушная — airspeed
    скорость полета ла относительно воздуха, независимо от пути, пройденного относительно земной поверхности, — the rate of speed at which an aircraft is traveling through the atmosphere (air), and is independent of any distance covered on the surface of the earth.
    - возникновения бафтингаbuffet (onset) speed
    - возникновения бафтинга, предшествующего срыву — pre-stall buffet speed
    - возникновения предупреждающей тряски (vтp)pre-stall warning speed
    скорость, при которой возникают заметные естественные или искусственно созданные признаки близости сваливания.
    - возникновения флаттераflutter (onset) speed
    - восстановления (гироскопа) большаяfast erection rate
    - вращения — rotational speed (n, n)
    оборотов за единицу времени. — revolutions per unit time.
    - вращения земли, угловая — earth('s) angular velocity
    - вращения колеса (напр., при взлете) — tire speed. ; maximum takeoff weight restricted by tire speed
    - в точке принятия решенияdecision speed
    - в точке принятия решения (при отказе критического двигателя)critical engine failure speed
    - встречного ветраheadwind speed
    - встречного ветра (название шкалы на графике)headwind
    - в условиях турбулентностиrough air speed (vra)
    - входа в зону турбулентности, заданная — target (air)speed for turbulent air penetration
    -, выбранная заявителем — speed selected by the applicant
    - выпуска (или уборки) шасси, максимальная — landing gear operating speed (vlo)
    максимальная скорость полета, при которой разрешается выпускать или убирать шасси. — maximum speed at which it is safe to extend or retract the landing gear.
    - выхода (гидросамолета, са молета-амфибии) на редан — hump speed. the speed at which the water resistance of a seaplane or amphibian is hignest.
    - газового потока (через двиг.) — gas flow velocity
    - герметизации кабиныcabin pressurization rate
    -, гиперзвуковая — hypersonic speed
    скорости от м-5 и выше. — pertaining to speeds of mach 5 or greater.
    - горизонтального полета — level flight speed, speed in level flight
    - горизонтального полета на максимальном продолжительном режиме (двиг.), максимальная — maximum speed in level flight with maximum continuous power
    - горизонтального полета на расчетном режиме работы двигателей, максимальная — maximum speed in level flight with rated rpm and power
    - движения назад (вертолета)rearward (flight) speed
    -, демонстрационная — demonstrated speed
    - дисс (доплеровского измерителя скорости и сноса)doppler velocity
    - для определения характеристик устойчивости, максимальная — maximum speed for stability characteristic (vfc)
    - горизонтального полета на режиме максимальной продолжительной мощности (тяги) — maximum speed in level flight with maximum continuous power (or thrust) (vh)
    -, дозвуковая — subsonic speed
    -, докритическая — pre-stall speed
    -, допустимая — allowable speed
    -, допустимая (ограниченная) — limiting speed
    -, заданная воздушная — target airspeed
    - заданная подвижным индексом — bug speed. fuel dumping may be necessary to reduce the bug speed.
    - заправки топливом — fueling rate, fuel delivery rate
    - захода на посадку (vзп)approach speed (vapp)
    - захода на посадку при всех работающих двигателяхapproach speed with all engines operating
    - захода на посадку при одном неработающем двигателеapproach speed with one engine inoperative
    - захода на посадку с убранными закрылкамиno flap approach speed
    - захода на посадку с убранными закрылками и предкрылками — no flap-no slat approach speed. аn approach speed of 15 knots below no flap-no slat approach speeds can be used.
    - захода на посадку с убранными предкрылками — no slat approach speed. with the leading edge slats extended, an approach speed of 15 knots below no flap - no slat approach speeds can be used.
    -, звуковая — sonic speed
    скорость ла или его части. равная скорости звука в данных условиях. — the speed of sound. when an object travels in air at the same speed as that of sound in the same medium.
    -, земная индикаторная (v13) (из) — calibrated airspeed (cas)
    - изменения (величины)rate (of change)
    - изменения бокового отклонения — crosstrack (distance) deviation rate, xtk deviation rate
    - изменения шага (винта)pitch-change rate
    -, индикаторная воздушная — equivalnet airspeed (eas)
    -, индикаторная земная (v13, из) (сша) — calibrated airspeed (cas)
    равна показанию указателя скорости (приборной скорости) с учетом аэродинамической поправки (и инструментальной погрешности). напр., 150 км/ч из. — airspeed indicator reading, as installed in airplane, corrected for (static source) position (and instrument) error. cas is equal to the tas in standard atmosphere at sea level.
    -, индикаторная земная (англ.) — rectified air speed (ras). ras is the indicated airspeed corrected for instrument and position errors.
    - истечения выходящих газов (из реактивного сопла газотурбинного двигателя) — exhaust velocity, speed of ехhaust gases. the velocity of gaseous or other particles (exhaust stream) that exhaust through the nozzle.
    -, истинная воздушная (ис) — true airspeed (tas)
    скорость самолета относительно невозмущенного воздуха, равная скорости. — the speed of the airplane relative to undisturbed air.
    -, истинная воздушная (по числу m) — true mach number (m)
    показания указателя числа м c учетом аэродинамической поправки для приемника статического давления. — machmeter reading corrected for static source position error.
    - касания (при посадке)touch-down speed
    - коррекции гироскопаgyro erection rate
    - коррекции гироскопа в азимутеgyro azimuth erection rate
    - коррекции гироскопа по крену и тангажу — gyro roll/pitch erection rate
    - крейсерскаяcruising speed
    скорость полета, не превышающая 90 % расчетной скорости горизонтального полета. — а speed not greater than 90 % of the design level speed.
    -, крейсерская расчетная — design cruising speed (vc)
    - крена, угловая — rate of roll, roll rate
    -, критическая (сваливания) — stalling speed (vs)
    -, линейная — linear velocity
    скорость в заданном направлении для определения скорости. — speed acting in one specified direction defines velocity.
    -, линейная (скорость движения no прямой) — linear speed. rate of motion in a straight iine.
    -, максимальная допустимая эксплуатационная (no терминологии икао) — maximum permissible operating speed
    -, максимальная маневренная — maneuvering speed (va)
    нe допускать максимального отклонения поверхности управления при превышении максимальной маневренной скорости. — maximum deflection of flight controls should not be used above va.
    -, максимальная посадочная (vп max) — maximum landing speed
    -, максимальная предельнодопустимая — maximum operating limit speed
    -, максимальная предельнодопустимая, приборная — maximum operating limit indicated airspeed (ias)
    -, максимальная эксплуатационная — maximum operating limit speed (vmo)
    - максимально допустимая (vмд)maximum operating limit speed (vmo)
    - максимальной продопжительности (полета)high-endurance cruise speed
    "- мала" (надпись на указателе отклонения от заданной скорости прибора пкп) — slow
    -, малая — low speed
    -, малая (стеклоочистителя) — slow rate (slow)
    -, минимальная — minimum speed
    наименьшая установившаяся скорость горизонтального полета на высоте, значительно превышающей размер крыла, при любом режиме работы двигателей, — the lowest steady speed which can be maintained by an airplane in level flight at an altitude large in comparison with the dimension of the wings, with any throttle setting.
    -, минимальная (полетная) — minimum flying speed
    наименьшая установившаяся скорость, выдерживаемая при любом режиме работы двигателей в горизонтальном полете на высоте, превышающей размах крыла, — the lowest steady speed that can be maintained with any throttle setting whatsoever, by an airplane in level flight at an altitude above the ground, greater than the span of the wing.
    -, минимальная посадочная (vп min) — minimum landing speed
    -, минимально эволютивная (vminэ) — minimum control speed (vmc)
    скорость, при которой в случае отказа критического двигателя обеспечивается возможность управления самолетом для выдерживания прямолинейного полета на данной скорости, при нулевом рыскании и угле крена не более 5°. — vmc is the speed at which, when the critical engine is suddenly made inoperative at that speed, it is possible to recover control of the airplane with the engine still inoperative and to maintain it in straight flight at that speed, either with zero yaw or with an angle of bank not in excess of 5°.
    -, минимально эволютивная (в воздухе) (vminэв) — air minimum control speed (vmca)
    минимальная скорость полета, при которой обеспечивается управление самолетом с макс. креном до 5° в случае отказа критического двигателя и при работе остальных двигателей на взлетном режиме. — the minimum flight speed at which the airplane is controllable with а maximum of 5 deg. bank when the critical engine suddenly becomes inoperative with the remaining engines at take-off thrust.
    -, минимально эволютивная (на земле) (vmin эр) — ground minimum control speed (vmcg)
    минимальная скорость разбега, обеспечивающая продолжение взлета, с использеванием только аэродинамических поверхностей правления, в случае отказа критич. двиг. и при работе остальных двигателей на взлетном режиме. — the minimum speed on the ground at which the takeoff can be continued, utilizing aerodynamic controls alone, when the critical engine suddenly becomes inoperative with the remaining engines at takeoff thrust.
    -, минимально эволютивная (при начальном наборе высоты) — minimum control speed (at takeoff climb)
    -, минимально эволютивная (у земли) — minimum control speed near ground
    -, минимально допустимая эксплуатационная — minimum operating speed
    - набора высоты (вдоль траектории)climb speed
    - набора высоты (вертикальная)rate of climb
    при проверке летных характеристик - вертикальная составляющая возд. скор. в условиях станд. атмосферы. в обычном полете - скорость удаления от земной поверхности. — in performance testing, the vertical component of the air speed in standard atmosphere. in general flying, the rate of ascent from tfle earth.
    - набора высоты на маршрутеenroute climb speed
    - набора высоты, начальная — initial climb-out speed
    - набора высоты с убранными закрылками — flaps up climb(ing) speed, no flap climb speed
    - на высоте 15м, посадочная — landing reference speed (vref)
    минимальная скорость на высоте 15м при нормальной посадке. — the minimum speed at the 50 foot height in a normal landing.
    - нагреваheating rate
    - наибольшей дальностиbest range cruise speed
    - наибольшей продолжительности полетаhigh-endurance cruise speed
    - наивыгоднейшего набора высотыspeed for best rate of climb (vy)
    - наивыгоднейшего угла траектории набора высотыspeed for best angle of climb (vx)
    - на маршрутееп route speed
    - на режиме максимальной дальности, крейсерская — long-range cruise speed
    - на режиме наибольшей дальностиbest range cruise speed
    - на режиме наибольшей продолжительностиhigh-endurance cruise speed
    - начала изменения положения механизации (при взлете,v3) — speed at start of extendable (high-lift) devices retraction (v3)
    - начала подъема передней опоры (при взлете)rotation speed (vr)
    - начала торможения (vн.т.) — brake application speed, speed at start of (wheel) brakes application
    - начального набора высоты — initial climb speed, climb-out speed
    - начального набора высоты (v4) (в конце полной взлетной дистанции)initial climb speed (v4)
    - начального набора высоты, установившаяся — steady initial climb speed. take-off safety speed, v2, at 35 feet shall be consistent with achievement of smooth transition to steady initial climb speed, v4 at height of 400 feet.
    - (максимальная), непревышаемая — never exceed speed (vne)
    -, нормируемая — rated speed
    - обнаружения (искомого) светила (звезды) телескопом (астрокорректора)star-detection rate of telescope
    - образования (напр., льда) — rate of (ice) formation
    -, ограниченная заявителем — speed selected by the applicant

    the approach and landing speeds must be selected by the applicant.
    -, ограниченная энергоемкостью тормозов — maximum brake energy speed (vmbe)
    максимальная скорость движения самолета по земле, при которой энергоемкость тормозов сможет обеспечить полную остановку самолета, — the maximum speed on the ground from which a stop can be accomplished within the energy capabilities of the brakes.
    -, околозвуковая — transonic speed
    скорость в диапазоне от м = 0,8 - 1,2. — speed in а range of mach 0.8 to 1.2.
    -, окружная — circumferential speed
    -, окружная (конца лопасти) — tip speed
    -, окружная (тангенциальная, касательная) — radial velocity. doppler effect in terms of radial velocity of a target.
    -, опасная (самолета, превышающая vмо/mмо) — aircraft overspeed (а/с ovsp). speed exceeding vmo/mmo
    - определяется для гладкой, сухой впп с жестким покрытием — vi speed is based on smooth, dry, hard surfaced runways
    -, оптимальная — best speed
    - отказа критического двигателя (при взлете)critical engine failure speed (v1)
    скорость, при которой после обнаружения отказавшего двигателя, дистанция продолжительного взлета до высоты 10,7 м не превышает располагаемой дистанции взлета, или дистанция до полной остановки не превышает располагаемой дистанции прерванного взлета, — the speed at which, when an engine failure is recognized, the distance to continue the takeoff to а height of 35 feet will not exceed the usable takeoff distance or, the distance to bring the airplane to а full stop will not exceed the accelerate-stop distance available.
    - (сигнал) от доплеровской системыdoppler velocity
    - от измерителя дисс (доплеровский измеритель путевой скорости и сноса), путевая — gappier ground speed (gsd)
    - откачки (слива) топлива (на земле) — defueling rate, fuel off-loading rate
    - отклонения закрылковrate of the flaps motion
    - отклонения от глиссадыglide slope deviation rate
    - отклонения поверхности ynравленияcontrol surface deflection rate
    -, относительная — relative speed, speed of relative movement

    motion of an aircraft relative to another.
    - отработки (скорость изменения индикации прибора в зависимости от изменения параметра) — response rate /speed/, rate of response
    - отработки астропоправки по курсу — rate /speed/ of response to celestial correction to azimuth e rror
    - отработки поправки — correction response rate /speed/
    - отработки сигналаsignal response rate
    - отрыва (ла) — lirt-off speed (vlof:)
    скорость в момент отрыва основных опорных устройств самолета от впп по окончании разбега при взлете (vотр.). — vlof is the speed at which the airplane first becomes airborne.
    - отрыва колеса (характеристика тормозного колеса)wheel unstick speed
    -, отрыва, минимальная — minimum unstick speed (vmu)
    устаназливается разработчиком (заявителем), как наименьшая скор, движения самолета на взлете, при которой еще можно производить отрыв самолета и затем продолжать взлет без применения особых методов пилотирования. — the speed selected by the applicant at and above which the airplane can be made to lift off the ground and сопtinue the take-off without displaying any hazardous characteristics.
    - отрыва носового колеса (или передней стойки шасси) (vп.oп) — rotation speed (vr)
    скорость начала преднамеренного увеличения угла тангажа при разбеге (рис. 113). — the speed at which the airplane rotation is initiated during the takeoff.

    vr is the speed at which the nosewheel is raised and the airplane is rotated to the lift off attitude.
    - отрыва передней опоры при взлете (vп.оп) — rotation speed
    - перевода в набор высоты (после взлета)initial climb speed
    - перемещения органа управления — rate of control movement /displacement/
    - пересечения входной кромки впп (vвк)threshold speed (vt)
    скорость самолета, с которой он пролетает над входной кромкой впп.
    - пересечения входной кромки впп, демонстрационная — demonstrated threshold speed
    - пересечения входной кромки впп, максимальная (vвк max.) — maximum threshold speed (vmt)
    - пересечения входной кромки впп, намеченная (заданная) — target threshold speed (vtt). target threshold speed is the speed which the pilot aims to reach when the airplane crosses the threshold.
    - пересечения входной кромки впп при нормальной работе всех двигателей (vвкn) — threshold speed with all еngines operating
    - пересечения входной кромки впп при нормальной работе всех двигателей, намеченная (заданная) — target threshold speed with all engines operating
    - пересечения входной кромки впп с двумя неработающими двигателями (vвк n-2) — threshold speed with two еngines inoperative
    - пересечения входной кромки впп с одним неработающим двиг. (vвкn-1) — threshold speed with one еngine inoperative
    - пересечения входной кромки впп с одним неработающим двигателем, намеченная (заданная) — target threshold speed with one engine inoperative
    - пикированияdiving speed
    - пикирования, демонстрационная — demonstrated flight diving speed (vdf)
    -, пикирования, расчетная — design diving speed (vd)
    - планированияgliding speed
    - планирования при заходе на посадкуgliding approach speed
    - по азимуту, угловая — rate of turn
    - поворота, угловая — rate of turn
    - подъема передней опоры (стойки) шассиrotation speed (vr)
    скорость начала увеличения yгла тангажа на разбеге, преднамеренно создаваемого отклонением штурвала на себя для вывода самолета на взлетный угол атаки (vп.ст.). — the speed at which the airplane rotation is initiated during the takeoff, to lift /to rise/ the nose gear off the runway.
    - поиска (искомой) звезды телескопом(target) star detection rate of telescope

    detection rate is the ratio of field of view to detection time.
    -пo курсу, угловая — rate of turn
    - полетаflight speed
    - полета в болтанкуrough air speed (vra)
    - полета в зоне ожиданияholding speed
    - полета в неспокойном (турбулентном) воздухеrough air speed (vra)
    - полета для длительных режимов, наибольшая (vнэ) — normal operating limit speed (vno)
    - полета, максимальная — maximum flying speed
    - полета на наибольшую дальность крейсерскаяbest range cruise speed
    - полета на наибольшую продолжительностьhigh-endurance cruise speed
    - полета на режиме максимальной продолжительной мощностиspeed (in flight) with maximum continuous power (or thrust)
    - полета при болтанкеrough air speed (vra)
    - полета с максимальной крейсерской тягой — speed (in flight) with maximum cruise /cruising/ thrust
    -, пониженная — reduced (air) speed
    при невозможности уборки створок реверса тяги продолжайте полет на пониженной скорости. — if reverser cannot be stowed, continue (flight) at reduced speed.
    - по прибору (пр)indicated airspeed (ias)
    - попутного ветраtailwind speed
    - попутного ветра (название шкалы на графике)tailwind
    - порыва ветраgust velocity
    -, посадочная (vп) — landing speed
    скорость самолета в момент касания основными его опорными устройствами поверхности впп — the minimum speed of an airplane at the instant of contact with the landing area in a normal landing.
    -, посадочная (на высоте 15м) — landing reference speed (vref)
    минимальная скорость на высоте 50 фт в условиях нормальной посадки, равная 1.3 скорости сваливания в посадочной конфигурации ла. — the minimum speed at 50 foot height in normal langin. equal to (1.3) times the stall speed in landing configuration.
    -, постоянная — constant speed
    -, поступательная (скорость движения вертолета вперед) — forward speed. steady angle of helicopter glide must be determined in autorotation, and with the optimum forward speed.
    - по тангажу, угловая — rate of pitch
    - потока газа (проходящего через двигатель, в фт/сек) — gas flow velocity (fps), vel f.p.s.
    -, предельная (vпред.) — maximum operating limit speed (vmo)
    скорость, преднамеренное превышение которой не допускается на всех режимах полета (набор высоты, крейсерский полет, снижение), кроме особо оговоренных случаев, допускаемых при летных испытаниях или тренировочных полетах. — speed that may not be deliberately exceeded in any regime of normal flight (climb, cruise or descent), unless а higher speed is authorized for flight test or pilot training operations.
    -, предельно (свободно падающего тела) — terminal velocity
    -, предельная (скорость самолета, превышающая допустимые ограничения vmo/mmo) — aircraft overspeed (а/с ovsp) а/с ovsp annunciator warns of exceeding air speed limitations (vmo/mmo)
    -, предельно допустимая эксплуатационная (vпред.) — maximum operating limit speed (vmo)
    - прецессии (гироскопа)precession rate
    - приближения (сближения)closure rate
    - приближения к земле (чрезмерная) — (excessive) closure rate to terrain, excessive rate of descent with respect to terrain
    -,приборная воздушная (vпр) (пр) — indicated airspeed (ias)
    показания указателя скорости, характеризующие величину скоростного напора, а не скорость перемещения самолета (напр.,150 км/ч пр). — airspeed indicator reading, as installed in the airplane, uncorrected for airspeed indicator system errors.
    - приборная исправленная с учетом аэродинамической поправки и инструментальной погрешности прибора — calibrated airspeed (cas)
    - при включении и выключении реверса тяги, максимальная — maximum speed for extending and retracting the thrust reverser, thrust reverser operating speed
    - при включении стеклоочистителей лобовых стеколwindshield wiper operation speed
    (т.е., скорость полета, при которой разрешается включать стеклоочистители) — do not operate the w/s wipers at speed in excess of... km/hr.
    - при включении тормозов (при пробеге)brake-on speed
    - при выпуске воздушных тормозовspeed brake operating speed (vsb)
    - при выпуске (уборке) посадочной фарыlanding light operation speed
    - при выпущенных интерцепторах (спойлерах), расчетная максимальная — design speller extended speed
    - при выпуске (уборке) шасси, максимальная — maximum landing gear operating speed (vlo)
    - при заходе на посадку и посадке, минимальная эволютивная — minimum control speed at арpreach and landing (vmcl)
    - при (напр., взлетной) конфигурации самолета — speed in (takeaff) configuration
    - при максимальной силе порыва ветра, расчетная — design speed for maximum gust intensity (vb)
    - при максимальных порывах ветра, расчетная — design speed for maximum gust intensity
    - при наборе высотыclimb speed
    - при наборе высоты, наивыгоднейшая (оптимальная) — best climb speed
    - при наборе высоты по маршруту на конечном участке чистой траекторииеn route climb speed at final net flight path segment
    - принятия решения (v1) — (takeoff) decision speed (v1), critical engine failure speed (v1)
    наибольшая скорость разбега самолета, при которой в случае отказа критич. двиг. (отказ распознается на этой скорости) возможно как безопасное прекращение, так и безопасное продолжение взлета. (рис. 113) — the speed at which, when an engine failure is recognized, the distance to continue the takeoff to а height of 35 feet will not exceed the usable takeoff distance, or, the distance to bring the airplane to а full stop will not exceed the accelerate-stop distance available.
    - принятия решения относительная (v1/vr) — engine failure speed ratio (v1/vr ratio)
    отношение скорости принятия решения v1 к скорости подъема передней стойки шасси vr. — the ratio of the engine failure speed, v1, for actual runway dimensions and conditions, to the rotation speed, vr
    - принятия решения (v1), принятая при расчете макс. допустимого взлетного веса — critical engine failure speed (v1) assumed for max. allowable take-off weight max, allowable т.о. wt is derived from the corresponding critical engine failure speed (v1).
    - при отказе критического двигателя (при взлете)critical engine failure speed (v1)
    - при отрыве носового колеса (см. скорость подъема передней опоры) (рис. 113) — rotation speed (vr)
    - при предпосадочном маневре — (approach) pattern speed. overshooting the turn on final approach may occur with the higher (approach) pattern speed.
    - при сниженииspeed in descent
    - при экстремальном сниженииemergency descent speed
    - проваливания (резкая потеря высоты)sink rate
    - продольной составляющей ветра (график)wind component parallel to flight path
    - прохождения порога, максимальная — maximum threshold speed
    - путевая (w)ground speed (gs)
    скорость перемещения самолета относительно земной поверхности, измеряемая вдоль линии пути. — aircraft velocity relative to earth surface measured along the present track.
    - разбега, мннимально-эволю тивная (vmin эр) — round minimum control speed vmcg)
    - разгерметизацииrate of decompression
    - раскрытия (парашюта), критическая — critical opening speed
    - рассогласованияrate of disagreement
    -, расчетная — design speed
    -, расчетная предельная (пикирования) — design diving speed (vd)
    -, расчетная крейсерская — design cruising speed (vc)
    -, расчетная маневренная — design maneuvering speed (va)
    максимальная скорость, при которой максимальное отклонение поверхностей управления (элеронов,ph. рв) не вызывает опасных напряжений в конструкции ла. — the maximum speed at which application of full available aileron, rudder or elevator will not overstress the airplane.
    - реакцииreaction rate
    - реверса (поверхностей) управленияreversal speed
    минимальная индикаторнаявоздушная скорость при которой возникает реверс поверхностей управления. — the lowest equivalent air speed at which reversal of control occurs.
    -, рекомендованная изготовителем — manufacturer's recommended speed
    -, рейсовая — block speed
    -, рулежная — taxiing speed
    - рыскания, угловая — rate of yaw, yaw rate
    - сближения — closure /closing/ rate /speed/, rate of closure
    скорость с которой два объекта приближаются друг к другу. — the speed at which two bodies approach each other.
    - сближения с землей, опасная (чрезмерная) — excessive closure rate to terrain
    - сваливания (vс)stalling speed (vs)
    скорость сваливания определяется началом сваливания самолета при заданных: конфигурации самолета, его полетном весе и режиме работы двигателей. — means the stalling speed or the minimum steady flight speed at which the airplane is controllabie.
    - сваливания, минимальная (vсmin.) — minimurn stalling speed
    - сваливания, приборная — indicated stalling speed

    the indlcalcid air speed at the stall.
    - сваливания при посадочной конфигурации (vсо) — stalling speed (vso). stalling speed or minimum steady flighl speed in landing configuration.
    - сваливания при наработающих двигателяхpower-off stalling speed
    - сваливания при работающих двигателяхpower-off stalling speed
    - сваливания при рассматриваемой конфигурации самолета (vс1) — stalling speed (vs1). stalling speed or minimum steady. flight speed obtained in a specified configuration.
    - сваливания с закрылками в посадочном положении, минимальная — minimum stalling speed with wing-flaps in landing setting
    -, сверхзвуковая — supersonic speed
    скорость, превышающая скорость звука, — pertaining to, or dealing with, speeds greater than the acoustic velocity.
    - с выпущенными закрылками, максимальная — maximum flap extended speed (vfe)
    - с выпущенными шасси, максимальная — maximum landing gear extended speed (vle)
    максимальная скорость, при которой разрешается полет с выпущенным шасси, — maximum speed at which the airplane can be safety flown with the landing gear extended.
    - скоса потока внизdownwash velocity
    - слежения за изменением высоты (корректором высоты) — rate of response to altitude variation /change/
    - слива (откачки) топлива (на земле) — defueling rate, fuel off-loading rate
    - снижения — speed of /in/ descent
    -, снижения (напр., при посадке) — rate of sink, sink rate. touchdown at minimum rate of sink.
    - снижения, вертикальная — rate of descent, descent /sink/ rate
    - снижения в момент касания (водной поверхности при аварийной посадке на воду) — impact sink speed. the impact sink speed should be kept below 100 fpm to minimize the risk of a primary fuselage structural failure.
    - снижения парашютаparachute rate of descent
    - снижения парашютов с единичным грузомrate of descent of single cargo parachutes
    - снижения, чрезмерная — excessive rate of descent, excessive sink rate
    - сносаdrift rate
    - согласования (гироагрегата) — rate of slaving, slaving rate
    - согласования следящих сиетем (инерциальной системы)servo loop slaving rate
    - с отказавшим критическим двигателем, минимальная эеолютивная — minimum control speed with the critical engine inoperative (vmc)
    - с полностью убранными закрылками, посадочная — zero flap landing speed

    zero flap landing ground speeds are obviously high so fuel dumping may be necessary to reduce the bug speed.
    - спуска, вертикальная — rate of sink, sink rate

    touchdown at minimum rate of sink. perform high sink rate maneuver.
    -, средняя — average speed
    -, средняя эксплуатационная (коммерческая) — block speed
    - срыва (см. скорость сваливания) — stalling speed (vs)
    - схода (ракеты) с направляющейlaunch(ing) speed
    - тангажа, угловая — rate of pitch, pitch rate
    -, текущая — current speed

    ete calculation is based on current ground speed.
    - (уборки) выпуска шасси, максимальная — maximum landing gear operating speed (vlo)
    -, угловая — angular velocity
    изменение угла за единицу времени, — the change of angle per unit time.
    -, угловая — angular speed, angular rate, angular velocity
    изменение направления за единицу времени, напр., отметки (цели) на экране радиолокатора. — change of direction per unit time, as for a target on a radar screen.
    -, угловая инерционная (корпуса гироскопа относительно к-л. оси) — nertial angular velocity (of gyro case about the indicated axis)
    -, угловая, (координатного сопровождающего) трехгранника (относительно земли) — angular velocity of moving соordinate trihedral
    - у земли, минимальная эволютивная — minimum control speed near ground
    -, установившаяся — steady speed
    - установившегося полета, минимальная — minimum steady flight speed
    - установившегося разворота, угловая — sustained turn rate (str)
    - ухода гироскопаgyro drift rate
    - ухода гироскопа в азимутеazimuth drift rate of the gyro
    - флаттера, критическая — flutter speed
    наименьшая индикаторная скорость, при которой возникает флаттер, — the lowest equivalent air speed at which flutter occurs.
    "(-) число м" (кнопка) — v/m (button or key)
    -, эволютивная (минимальная) — (minimum) control speed (vmc)
    - эволютивная разбега, минимальная (vmin эр) — ground minimum control speed (vmcg)
    -, экономическая — economic speed
    скорость полета, при которой обеспечивается минимальный расход топлива на единицу пути в спокойном воздухе. — the flight speed at which the fuel consumption per unit of distance covered in still air, is а minimum.
    -, экономическая крейсерская — economic cruising speed
    -, эксплуатационная — operating speed
    гашение с. — deceleration
    на с. км/час — at а speed of km/hr
    набор с. — acceleration
    на полной с. — at full speed
    нарастание с. — acceleration
    переход к с. (набора высоты) — transition to (climb) speed
    при с. км/час — at а speed of km/hr
    разгон (ла) до с. — acceleration to speed of...
    уменьшение с. (процесс) — deceleration
    выдерживать с. (точно) — maintain /hold/ speed (accurately)
    выражать значение с. полета в виде приборной (индикаторной) скорости — state (he speeds in terms of ias (eas)
    гашение с. (перед выравниванием) — speed bleed-off (before flare)
    гасить с. — decelerate
    достигать с. (величина) — attain а speed of (... km/hr)
    достигать с. (обозначание) — reach the speed (v1)
    задавать с. — set up (speed, rate)
    задавать с. км/час (при проверке барометрических приборов на земле) — apply pressure corresponding to а speed of... km/hr
    набирать с. — gain /pick up/ speed, accelerate
    увеличивать с. — increase speed, accelerate
    уменьшать с. — decrease speed, decelerate
    устанавливать с. (полета) — set up speed

    Русско-английский сборник авиационно-технических терминов > скорость

  • 7 Braun, Wernher Manfred von

    [br]
    b. 23 March 1912 Wirsitz, Germany
    d. 16 June 1977 Alexandria, Virginia, USA
    [br]
    German pioneer in rocket development.
    [br]
    Von Braun's mother was an amateur astronomer who introduced him to the futuristic books of Jules Verne and H.G.Wells and gave him an astronomical telescope. He was a rather slack and undisciplined schoolboy until he came across Herman Oberth's book By Rocket to Interplanetary Space. He discovered that he required a good deal of mathematics to follow this exhilarating subject and immediately became an enthusiastic student.
    The Head of the Ballistics and Armaments branch of the German Army, Professor Karl Becker, had asked the engineer Walter Dornberger to develop a solid-fuel rocket system for short-range attack, and one using liquid-fuel rockets to carry bigger loads of explosives beyond the range of any known gun. Von Braun joined the Verein für Raumschiffsfahrt (the German Space Society) as a young man and soon became a leading member. He was asked by Rudolf Nebel, VfR's chief, to persuade the army of the value of rockets as weapons. Von Braun wisely avoided all mention of the possibility of space flight and some financial backing was assured. Dornberger in 1932 built a small test stand for liquid-fuel rockets and von Braun built a small rocket to test it; the success of this trial won over Dornberger to space rocketry.
    Initially research was carried out at Kummersdorf, a suburb of Berlin, but it was decided that this was not a suitable site. Von Braun recalled holidays as a boy at a resort on the Baltic, Peenemünde, which was ideally suited to rocket testing. Work started there but was not completed until August 1939, when the group of eighty engineers and scientists moved in. A great fillip to rocket research was received when Hitler was shown a film and was persuaded of the efficacy of rockets as weapons of war. A factory was set up in excavated tunnels at Mittelwerk in the Harz mountains. Around 6,000 "vengeance" weapons were built, some 3,000 of which were fired on targets in Britain and 2,000 of which were still in storage at the end of the Second World War.
    Peenemünde was taken by the Russians on 5 May 1945, but by then von Braun was lodging with many of his colleagues at an inn, Haus Ingeburg, near Oberjoch. They gave themselves up to the Americans, and von Braun presented a "prospectus" to the Americans, pointing out how useful the German rocket team could be. In "Operation Paperclip" some 100 of the team were moved to the United States, together with tons of drawings and a number of rocket missiles. Von Braun worked from 1946 at the White Sands Proving Ground, New Mexico, and in 1950 moved to Redstone Arsenal, Huntsville, Alabama. In 1953 he produced the Redstone missile, in effect a V2 adapted to carry a nuclear warhead a distance of 320 km (199 miles). The National Aeronautics and Space Administration (NASA) was formed in 1958 and recruited von Braun and his team. He was responsible for the design of the Redstone launch vehicles which launched the first US satellite, Explorer 1, in 1958, and the Mercury capsules of the US manned spaceflight programme which carried Alan Shepard briefly into space in 1961 and John Glenn into earth orbit in 1962. He was also responsible for the Saturn series of large, staged launch vehicles, which culminated in the Saturn V rocket which launched the Apollo missions taking US astronauts for the first human landing on the moon in 1969. Von Braun announced his resignation from NASA in 1972 and died five years later.
    [br]
    Bibliography
    Further Reading
    P.Marsh, 1985, The Space Business, Penguin. J.Trux, 1985, The Space Race, New English Library. T.Osman, 1983, Space History, Michael Joseph.
    IMcN

    Biographical history of technology > Braun, Wernher Manfred von

  • 8 Pattinson, Hugh Lee

    SUBJECT AREA: Metallurgy
    [br]
    b. 25 December 1796 Alston, Cumberland, England
    d. 11 November 1858 Scot's House, Gateshead, England
    [br]
    English inventor of a silver-extraction process.
    [br]
    Born into a Quaker family, he was educated at private schools; his studies included electricity and chemistry, with a bias towards metallurgy. Around 1821 Pattinson became Clerk and Assistant to Anthony Clapham, a soap-boiler of Newcastle upon Tyne. In 1825 he secured appointment as Assay Master to the lords of the manor of Alston. There he was able to pursue the subject of special interest to him, and in January 1829 he devised a method of separating silver from lead ore; however, he was prevented from developing it because of a lack of funds.
    Two years later he was appointed Manager of Wentworth Beaumont's lead-works. There he was able to continue his researches, which culminated in the patent of 1833 enshrining the invention by which he is best known: a new process for extracting silver from lead by skimming crystals of pure lead with a perforated ladle from the surface of the molten silver-bearing lead, contained in a succession of cast-iron pots. The molten metal was stirred as it cooled until one pot provided a metal containing 300 oz. of silver to the ton (8,370 g to the tonne). Until that time, it was unprofitable to extract silver from lead ores containing less than 8 oz. per ton (223 g per tonne), but the Pattinson process reduced that to 2–3 oz. (56–84 g per tonne), and it therefore won wide acceptance. Pattinson resigned his post and went into partnership to establish a chemical works near Gateshead. He was able to devise two further processes of importance, one an improved method of obtaining white lead and the other a new process for manufacturing magnesia alba, or basic carbonate of magnesium. Both processes were patented in 1841.
    Pattinson retired in 1858 and devoted himself to the study of astronomy, aided by a 7½ in. (19 cm) equatorial telescope that he had erected at his home at Scot's House.
    [br]
    Principal Honours and Distinctions
    Vice-President, British Association Chemical Section 1838. Fellow of the Geological Society, Royal Astronomical Society and Royal Society 1852.
    Bibliography
    Pattinson wrote eight scientific papers, mainly on mining, listed in Royal Society Catalogue of Scientific Papers, most of which appeared in the Philosophical
    Magazine.
    Further Reading
    J.Percy, Metallurgy (volume on lead): 121–44 (fully describes Pattinson's desilvering process).
    Lonsdale, 1873, Worthies of Cumberland, pp. 273–320 (contains details of his life). T.K.Derry and T.I.Williams, 1960, A Short History ofTechnology, Oxford: Oxford University Press.
    LRD

    Biographical history of technology > Pattinson, Hugh Lee

  • 9 Gascoigne, William

    [br]
    b. 1612 (?) near Leeds, Yorkshire, England
    d. 2 July 1644 Marston Moor, Yorkshire, England
    [br]
    English astronomer and inventor of the micrometer.
    [br]
    As the son of a country gentleman, William Gascoigne would have had opportunities to receive reasonable schooling, but there is no record of how or where he was educated. However, by the late 1630s he had acquired a considerable knowledge of astronomy and was in correspondence with other scholars. About 1638 he invented an instrument to measure small angles in a telescope, consisting of two parallel wires in the eye piece moved by a calibrated screw. His invention remained unknown until it was reinvented thirty years later. He is said to have left the manuscript of a treatise on optics, but this did not survive. He was killed fighting for the royalist side at the battle of Marston Moor.
    [br]
    Further Reading
    C.C.Gillespie (ed.), 1970–6, Dictionary of Scientific Biography, New York, s.v.Gascoigne; Towneley.
    A.F.Burstall, 1963, A History of Mechanical Engineering, London, p. 159 (includes a drawing of Gascoigne's micrometer).
    RTS

    Biographical history of technology > Gascoigne, William

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