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1 phosphor area
Большой англо-русский и русско-английский словарь > phosphor area
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2 phosphor area
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3 phosphor area
1) Техника: площадь люминофора (ЭЛТ)2) Телекоммуникации: площадь люминофора ЭЛТ3) Электронно-лучевые трубки: площадь экрана, покрытая люминофором -
4 phosphor area
English-Russian dictionary of telecommunications and their abbreviations > phosphor area
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5 phosphor area
величина площадки под люминофорными участками; площадь, покрытая люминофоромАнгло-русский словарь промышленной и научной лексики > phosphor area
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6 area
1) площадь; пространство3) поверхность4) (производственный) участок; помещение; площадка5) рабочая ячейка ( склада)•equal in area — равновеликий;area of base — площадь основания, площадь подошвы фундаментаarea of bearing — 1. площадь опоры 2. строит. площадка опиранияarea of contact — площадь поверхности контактаarea of diagram — площадь эпюры; площадь графикаarea of fracture — 1. поверхность излома 2. площадь поперечного сечения в месте разрушенияarea of occurrence — возд. район происшествияarea of water section — гидр. площадь живого сечения потокаarea of well influence — зона влияния колодца или скважины-
absorption area
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active area
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actual contact area
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actuating area
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actuation probability area
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addressable area
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adjustment control area
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advisory area
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air intake hazard area
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aircraft parking area
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airflow separation area
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airport construction area
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airport prohibited area
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airport service area
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air-route area
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alighting area
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alloy storage area
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annulus area
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antenna effective area
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antenna area
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antinode area
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aperture area
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approach area
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ash-disposal area
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auditory area
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backwater area
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bare area
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base area
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bearing surface area
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binding area
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blade area
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blade-exit area
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blind area
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blind drainage area
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boarding area
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bolted area
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bonding area
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bond area
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bore area
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bubble-melt surface area
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buffer area
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building area
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built-up area
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burning area
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catalyst surface area
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catchment area
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caved area
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central equipment area
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centralized telecine area
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centralized traffic area
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centralized video tape area
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charge-makeup area
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charging area
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chip area
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choke-tube area
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circling approach area
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clean processing area
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clearance area
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climb-out area
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clinch area
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coal area
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coherence area
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cold area
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commanded area
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common area
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compression area
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concrete area
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cone effect area
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congested area
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connector area
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conservation area
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constant area
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contact area
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contact spot area
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contaminated area
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contamination control area
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contiguous area
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contour area of contact
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control area
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controlled access area
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cooling area
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corrosion area
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coverage area
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crimp area
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critical area
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cross-sectional area
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cross-section area
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cutting area
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cylinder annular area
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dangerous area
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data-rich area
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data-sparse area
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data-void area
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decontamination area
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demixing area
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design wing area
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developed area
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developed blade area
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development area
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die attach area
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diked area
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direct transit area
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discharge area
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display area
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disposal area
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dot area
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downstream area
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drainage area
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drainless area
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dry area
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dynamic area
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echoing area
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echo area
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effective area
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effective braking area
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effective cross-sectional area
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effective cross-section area
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effective screening area
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effects area
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electrical contact area
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electroded area
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elemental area
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enclosed working area
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end safety area
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engineering area
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environmentally fragile area
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exchange area
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exclusion area
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exhaust area
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expanded blade area
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expanded area
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exposure area
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face area
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fan blast area
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felling area
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fenced-off area
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fetch area
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fill area
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film-editing area
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filter effective area
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filter open area
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filtering area
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finished-products storage area
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fixed area
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flame area
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flooded area
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flood-free area
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flooding area
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floor area
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flow area
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focus area
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forbidden area
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free-surface area
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fringe area
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functional area
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furnace area
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fusing area
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fusion area
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gases shear area
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gasket surface area
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gassy area
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gathering area
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gob area
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graticule area
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gray-scale picture area
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gross cross-sectional area
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gross cross-section area
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gross irrigable area
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ground contact area
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gutter area
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hard-core area
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hard-to-reach area
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hearth area
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heat dissipation area
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heat-affected area
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heating area
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heat-transfer area
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high-activity area
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high-beat area
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high-radiation area
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holding area
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hot area
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housing area
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illuminated area
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image area
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impact area
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impression area
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inactive area
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ingot-stripping area
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input area
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instantaneous area of flame front
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instruction area
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intended landing area
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interfacial area
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interference area
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interlocking area
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inundated area
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junction area
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knuckle area
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land area
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landing area
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lateral area
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lift irrigation area
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lift-off area
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link overlapped area
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living area
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living floor area
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load-and-unload area
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load-carrying area
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loading area
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loadout area
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localized areas of wear
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low-radiation area
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makeup area
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maneuvering area
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man-impacted area
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manned area
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manual setting-up area
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melting area
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mesa area
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metropolitan area
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mining area
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mirror area
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mold conditioning area
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mold opening area
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moment area
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movement area
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mush area
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natural area
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net cross-sectional area
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net cross-section area
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neutron migration area
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nominal contact area
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noncontact area
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nonimage area
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nonmoving area
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nonoccupied area
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nonprinting area
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nonstorage area
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nonutilizable area
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normally occupied area
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nose area
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nuclear area
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numbering area
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obstructed landing area
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open area
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open flow area
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outgassed area
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output area
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overrun safety area
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pallet area
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patch area
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pattern area
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payable area
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percent shear area
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personnel and utility area
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phosphor area
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photolithographic area
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picture area
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poor-reception area
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port area
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presentation area
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pressing area
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prewarming area
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primary area
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primary service area
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printing area
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production area
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production control area
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programmed operating area
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prohibited area
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projectedblade area
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projected area
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propeller disk area
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protected area
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quality-control area
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quality area
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quench area
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quiet area
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radar area
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radiation-control area
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real area of contact
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recording area
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record area
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refining area
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regeneration area
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reinforcing steel area
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rerecording area
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reservoir surface area
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reservoir area
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residential area
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resident area
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residential floor area
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restricted area
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retarder area
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rig deck area
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risk area
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robot area
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roof contact area
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rubbing path area
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rudder area
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run-up area
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rural area
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safe operating area
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safety area
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sail area
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save area
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scanned area
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scrap-consuming area
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scrap-disposal area
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scrap-grading area
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scratch area
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screen area
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sealing area
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seal area
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search area
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secondary area
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sectional area
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section area
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seeking area
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segregated area
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service area
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serviceable area
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setting-up area
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shaded area
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shadow area
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shareable area
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shoe pad transition area
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shooting area
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sintering area
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site area
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skip area
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slag-line area
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slot area
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slowing-down area of neutron
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snow-covered area
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solid area
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sound area
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sound-track area
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special work permit area
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specific floor area
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specific surface area
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spliced area
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spoil area
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stack area
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stockline area
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stool conditioning area
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storage area
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stripped area
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subsidence area
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superheated area
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surface area
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switching area
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takeoff area
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takeoff flight path area
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tape area
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taphole area
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target area
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technical-equipment area
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technical area
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telecine area
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tension area
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terminal area
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terminal control area
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test area
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throat area
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tongs area of pipe
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tool service area
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tool-presetting area
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total area
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total irrigation area
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total tuyere area
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transient area
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turnaround area
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tuyere area
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type area
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unattacked area
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undershoot area
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ungaged area
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uniform area
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unobstructed landing area
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upstream area
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urban area
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usable area
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user area
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valve fillet area
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valve seating face area
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video tape recording area
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video tape area
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viewing area
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vision control area
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vulnerable area
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waste area
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waste-metal area
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waste-storage area
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water catchment area
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waterplane area
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water-surface area
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wear track area
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weld metal area
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well drainage area
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wellhead area
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wetted area
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wildlife area
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window area
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worked-out area
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working area
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yard area
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yoke area -
7 area
1) площадь, пространство2) зона, район3) поверхность•- active picture area
- antenna area
- antenna-effective area
- aperture area
- base station covered area
- blackout area
- blind area
- border area
- burglar detection area
- calling area
- carrier servicing area
- cellular area
- centralized telecine area
- coherence area
- collecting area
- conceptual area
- controlled area
- coordination area
- core area
- coverage area
- dead area
- dominant influence area
- ear sensity area
- editing area
- effective area
- effective boresight area
- elemental area
- fringe area
- global A area
- global B area
- input area
- insonation area
- local service area
- mobile station servicing area
- moving area
- peak-traffic area
- phosphor area
- pole area
- portable station servicing area
- portable telephone coverage area
- primary-service area
- radio line area
- safety working area
- satellite line-of-sight area
- satellite-covered area
- satellite-serviced area
- scan area
- scanning area
- service area
- small communication area
- small-size communication area
- stationary station servicing area
- subscriber-access area
- target area
- traffic area
- white area
- working areaEnglish-Russian dictionary of telecommunications and their abbreviations > area
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8 phosphor dot
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9 площадь люминофора ЭЛТ
Russian-English dictionary of telecommunications > площадь люминофора ЭЛТ
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10 площадь люминофора
1) Engineering: phosphor area (ЭЛТ)2) Makarov: phosphor area (электронно-лучевой трубки)Универсальный русско-английский словарь > площадь люминофора
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11 площадь люминофора ЭЛТ
Telecommunications: phosphor areaУниверсальный русско-английский словарь > площадь люминофора ЭЛТ
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12 площадь экрана, покрытая люминофором
Electronic tubes: phosphor areaУниверсальный русско-английский словарь > площадь экрана, покрытая люминофором
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13 площадь экрана, покрытого люминофором
Makarov: phosphor areaУниверсальный русско-английский словарь > площадь экрана, покрытого люминофором
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14 Flechsig, W.
SUBJECT AREA: Electronics and information technology[br]fl. c.1938 Germany[br]German engineer notable for early patents that foreshadowed the development of the shadowmask colour cathode ray tube.[br]In 1938, whilst working for a German electrical company, Flechsig filed a patent in which he described the use of an array of stretched parallel wires to control the landing of either one or three electron beams on separate red, green and blue phosphor stripes within a single cathode ray tube. Whilst the single-beam arrangement required subsidiary deflection to alternate the beam landing angle, the three-beam version effectively used the wires to "mask" the landing of the electron beams so that each one only illuminated the relevant colour phosphor stripes. Although not developed at the time, the concept anticipated the subsequent invention of the shadowmask tube by RCA in the early 1950s and, even more closely, the development of the Sony Trinitron some years later.[br]Bibliography1938, German patent no. 736, 575.1941, French patent no. 866, 065.Further ReadingE.W.Herold, 1976, "A history of colour television displays", Proceedings of the Institute of Electrical and Electronics Engineers 64:1,331.K.G.Freeman, "The history of colour CRTs. A personal view", International Conference on the History of Television, Institution of Electrical Engineers Publication no. 271, p.38.KF -
15 target
1) мишень2) цель3) кфт. визирная марка4) заданная [запрограммированная\] координата ( положения рабочего органа)5) анод9) вчт. адресат11) ж.-д. дневной сигнал ( стрелки)12) заслонка, шибер ( печи)13) кфт. мира14) плановое задание15) целевой; объектный•-
acquired target
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alignment target
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area-extensive target
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array target
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atomic target
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augmented target
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blurred target
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bottom-hole target
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clutter target
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cooled target
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decoy target
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dense target
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diode array target
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distributed target
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divertor target
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docking alignment target
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dummy target
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extended target
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false target
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fissionable target
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flat plate target
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ghost target
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high Doppler target
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identifiable target
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illuminated target
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ion target
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line target
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liquid-deuterium target
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liquid-lithium target
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low Doppler target
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low-flying target
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mobile target
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multiple target
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neutron-producing target
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nonradiating target
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nuclear target
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offset target
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phantom target
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phosphor target
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plasma target
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point target
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pop-up target
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radar target
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reference target
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registration target
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resolving power test target
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reticle target
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safety target
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scintillating target
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sighting target
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silicon target
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sputtering target
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standard target
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standardized docking alignment target
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star target
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storage target
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unaugmented target -
16 flux
1) поток (напр. магнитный) || течь; протекать2) плотность потока (напр. магнитного)3) крист. расплав || плавить; расплавлять4) микр. флюс ( для пайки) || флюсовать•- bactericidal flux
- bogon flux
- bombardment flux
- critical flux
- displacement flux
- electric flux
- electrostatic flux
- enclosed flux
- energy flux
- erythemal flux
- frozen flux
- frozen-in flux
- geothermal flux
- germicidal flux
- heat flux
- internal heat flux
- intrinsic flux
- leakage flux
- light flux
- lower hemispherical flux
- lower hemispherical luminous flux
- luminous flux
- luminous sector flux
- magnetic flux
- particle flux
- phosphor flux
- radiant flux
- short-circuit flux of magnetic tape
- soldering flux
- sound-energy flux
- specific sound-energy flux
- spectral radiant flux
- trapped flux
- upper hemispherical flux
- upper hemispherical luminous flux
- vacancy flux -
17 flux
1) поток (напр. магнитный) || течь; протекать2) плотность потока (напр. магнитного)3) крист. расплав || плавить; расплавлять4) микр. флюс ( для пайки) || флюсовать•- bactericidal flux
- bogon flux
- bombardment flux
- critical flux
- displacement flux
- electric flux
- electrostatic flux
- enclosed flux
- energy flux
- erythemal flux
- frozen flux
- frozen-in flux
- geothermal flux
- germicidal flux
- heat flux
- internal heat flux
- intrinsic flux
- leakage flux
- light flux
- lower hemispherical flux
- lower hemispherical luminous flux
- luminous flux
- luminous sector flux
- magnetic flux
- particle flux
- phosphor flux
- radiant flux
- short-circuit flux of magnetic tape
- soldering flux
- sound-energy flux
- specific sound-energy flux
- spectral radiant flux
- trapped flux
- upper hemispherical flux
- upper hemispherical luminous flux
- vacancy fluxThe New English-Russian Dictionary of Radio-electronics > flux
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18 printing
1. печать, печатание2. фотографическое копирование; копирование на формную пластину3. печатное издание4. тираж5. полиграфия, полиграфическая промышленность6. различные сорта печатной бумагиprinting together — печатание «со своим оборотом»
printing two-up — печатание двойников, параллельное печатание с двух одинаковых форм
printing verse — печатание на обороте, запечатывание оборотной стороны
address printing — адресование, печатание адреса
arc printing — дуговая печать, печатание с помощью электрической дуги
7. печатание на оборотной стороне прозрачной плёнкиbackground printing — фоновая печать, печатание фона
bible printing — словарная бумага, библьдрук
bichromate printing — печатание с форм, изготовленных с использованием хромированных коллоидов
8. печатание голубой краской; светокопирование9. изготовление синих копий, изготовление «синек»Braille printing — Брайлевская печать, печать для слепых
bronze printing — бронзирование, печатание бронзовой краской
10. печатание на картонных заготовках; печатание на картоне11. производство картонных упаковокcode printing — печатание кодовых меток, печатание кодовых знаков, кодирование, шифрование
12. цветная печатная бумагаcolor process printing — многокрасочное печатание с форм, изготовленных фотомеханическим способом
13. контактная печать14. контактное копированиеprinting lamp — лампа для копирования, копировальная лампа
15. печатание издания в нескольких вариантах с учётом интересов потребителей16. печатание по требованию одного экземпляра издания17. прямое контактное копирование18. прямая печать19. печатание с первичной формы20. печатание изобразительной продукцииprinting contrast — контраст, реализуемый при печатании
21. печатание на прозрачном материалеdot-in-dot printing — печатание с точной приводкой, печатание «точка в точку»
dot matrix character printing — печатание знаков, формируемых точечной матрицей
printing process — печатный процесс; процесс печатания
22. двукратное запечатывание23. комбинирование деталей двух разных негативов на одном позитиве или печатной формеduotone printing — печатание двухкрасочных репродукций с одноцветного оригинала, дуплекс-автотипия
electrophoretic printing — электрофоретическая печать, способ электрофоретической печати
electrostatographic printing — электрография, электрографическая печать
embossed printing for blind — рельефная печать для слепых, Брайлевская печать
facsimile printing — факсимильное воспроизведение, факсимильная печать
ferromagnetic printing — печатание ферромагнитными красками, магнитографская печать, магнитография
flat-bed printing — печатание на плоскопечатных машинах, печатание с плоских форм высокой печати
flexographic printing — флексографская печать, печатание с эластичных форм
form skip printing — печатание формуляров с пропусками отдельных пунктов на последовательно идущих страницах
24. четырёхкрасочная печатьprinting device — печатающее устройство; устройство печати
printing station — пункт вывода на печать; станция печати
25. печатание в четыре краски26. многокрасочная печать всеми основными краскамиgelatin printing — фототипия, печать с желатиновых печатных форм
27. нанесение клеевого слоя28. гуммированиеheat-set printing — печатание красками, закрепляющимися под действием нагрева
helios printing — гелиопечать, гелиография
hot foil printing — горячее тиснение фольгой, тиснение фольгой с использованием нагретого штампа
29. переводной способ копирования30. печатание через промежуточную поверхность; офсетная печать31. ведомственная печать32. внутрифирменная печатьiridescent printing — радужная печать; печать враскат
level impression printing — печатание с равномерным натиском, печатание с равномерным давлением
33. печатание литографским способом, литография34. офсетная печатьmagnetic ink printing — печатание магнитными красками, магнитографская печать, магнитография
35. картографическая печать, картопечатание36. производство картографической продукции37. копирование изображения на металлическую пластину38. печатание на металле39. акцидентная печать40. печатание акцидентной продукции41. однокрасочная печать42. печатание однокрасочной продукцииprinting pressure — давление печатания, натиск
43. многокрасочная печать44. печатание многокрасочной продукцииmultigraph printing — печатание с ручного набора, закреплённого на цилиндре
45. печатание газетно-журнальной продукции46. газетно-журнальное производство47. печатание газет48. газетное производствоoff-register printing — печатание с несовмещением, печатание с нарушением приводки
offset printing — офсет, офсетная печать
49. распечатка информации, хранящейся в базе данных вычислительной системы по требованию50. печатание по требованию51. печатание персонализированных изданий52. оптическая печать53. проекционное копирование54. печатание на упаковочных материалах55. производство упаковкиpackaging printing and converting — печать и изготовление упаковок; печать и изготовление тары
56. фотография57. фотопечать; копированиеphotographic offset printing — офсетная печать с форм, изготовленных фотомеханическим способом
58. глубокая печать59. печатание с гелиогравюрphotolithooffset printing — офсетная печать с форм, изготовленных фотомеханическим способом
60. печатание с форм, изготовленных фотомеханическим способом61. фотомеханический способ размножения62. печатание с гравированных медных пластин63. печатание вкладных иллюстрацийprocess printing — многокрасочная печать с форм, изготовленных фотомеханическим способом
64. печатание издательской продукции65. заключительная стадия печатанияraised printing — печатание с последующим оплавлением рельефа; рельефная печать
66. рефлексное копирование67. рефлексное печатание68. печатание с выворотных форм69. печатание с реверсивным приводом цилиндров; реверсивное печатание70. печатание на обороте, запечатывание оборотной стороныrotary printing — ротационная печать, печатание на ротационных машинах
71. печатание многокрасочных газет «по сырому»72. цветные краски для печатания газет73. растровая печать74. второй завод, допечаткаprinting mistake — опечатка, типографская ошибка
75. второй прогонselective printing — избирательное печатание, печатание с избирательным воспроизведением знаков
76. малотиражная печать77. малотиражное копированиеside-by-side printing — радужная печать, печать враскат
small offset printing — «малый офсет», печатание малоформатной продукции офсетным способом
solid printing — печатание со сплошных форм, печатание плашек
solid color printing — печатание со сплошных форм цветными красками, печатание цветных плашек
solventless printing — печатание красками, не содержащими растворителя
split color printing — радужная печать, печать враскат
78. трафаретная печать79. ротаторная печатьsublimatic heat transfer printing — термодекалькомания, сублимационная печать
test printing — пробное печатание, изготовление пробных оттисков
thermal printing — термопечать, термографская печать, термография; печатание термокрасками
thermographic printing — термопечать, термографская печать, термография, печатание термокрасками
three-color process printing — трёхкрасочная печать с цветоделённых печатных форм, изготовленных фотомеханическим способом
three-over-one printing — печатание красочностью 3+1
80. печатание на тканях81. печатание на тонкой бумаге82. декалькомания, печатание переводных изображений83. печатание с переносом изображенияtrouble-free printing — бесперебойное печатание, печатание без помех и перебоев
vapor printing — «дымовая» печать, печатание паром
water-based ink printing — печатание водными красками, печатание красками на водной основе
web printing — печатание на рулонном материале, рулонная печать
wood block printing — печатание с деревянного клише; ксилография
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19 Fischer, E.
[br]fl. 1930s Switzerland[br]Swiss engineer who invented the Eidophor large-screen television projector.[br]Fischer was a professor of engineering at the Swiss Federal Institute of Technology in the late 1930s. Interested in the emerging technology for television, he was of the opinion that the growth of television would take place through the development and use of large-screen cinema-type displays serving large audiences. He therefore carried out research into suitable techniques. Realizing the brightness limitations of projection systems based on the optical magnification of the image produced by a conventional cathode ray tube, he used the deflected electron-beam, not to excite a phosphor screen, but to deposit a variable charge on the surface of a film or oil. By means of a Schlieren slit system, the consequent deformations of the surface were used to spatially modulate the light from an electric arc or a discharge tube, giving a large, high-brightness image. Although the idea, first put forward in 1939, was not taken up for cinema television, the subsequent requirement of the US National Aeronautics and Space Administration in the 1960s for large colour displays in its Command and Control Centres led to the successful development of the idea by Gretag AG, a subsidiary of Ciba-Geigy: separate units were used for the red, green and blue images. In the 1990s, colour Eidophor projectors were used for large conference meetings and pop concerts.[br]Bibliography1946, "Views on the suitability of a cathode ray tube with a fluorescent screen for projection in cinemas", Bulletin of the Association of Swiss Electricians 39:468 (describes the concept of the Eidophor).Further ReadingE.H.Baumann, 1953, "The Fischer large screen projection system", Journal of Society of Motion Picture and Television Engineers 60:344.A.Robertson, 1976, "Projection television. A review of current practice in large-screen projectors", Wireless World 47.KF -
20 Goldmark, Peter Carl
[br]b. 2 December 1906 Budapest, Hungaryd. 7 December 1977 Westchester Co., New York, USA[br]Austro-Hungarian engineer who developed the first commercial colour television system and the long-playing record.[br]After education in Hungary and a period as an assistant at the Technische Hochschule, Berlin, Goldmark moved to England, where he joined Pye of Cambridge and worked on an experimental thirty-line television system using a cathode ray tube (CRT) for the display. In 1936 he moved to the USA to work at Columbia Broadcasting Laboratories. There, with monochrome television based on the CRT virtually a practical proposition, he devoted his efforts to finding a way of producing colour TV images: in 1940 he gave his first demonstration of a working system. There then followed a series of experimental field-sequential colour TV systems based on segmented red, green and blue colour wheels and drums, where the problem was to find an acceptable compromise between bandwidth, resolution, colour flicker and colour-image breakup. Eventually he arrived at a system using a colour wheel in combination with a CRT containing a panchromatic phosphor screen, with a scanned raster of 405 lines and a primary colour rate of 144 fields per second. Despite the fact that the receivers were bulky, gave relatively poor, dim pictures and used standards totally incompatible with the existing 525-line, sixty fields per second interlaced monochrome (black and white) system, in 1950 the Federal Communications Commission (FCC), anxious to encourage postwar revival of the industry, authorized the system for public broadcasting. Within eighteen months, however, bowing to pressure from the remainder of the industry, which had formed its own National Television Systems Committee (NTSC) to develop a much more satisfactory, fully compatible system based on the RCA three-gun shadowmask CRT, the FCC withdrew its approval.While all this was going on, Goldmark had also been working on ideas for overcoming the poor reproduction, noise quality, short playing-time (about four minutes) and limited robustness and life of the long-established 78 rpm 12 in. (30 cm) diameter shellac gramophone record. The recent availability of a new, more robust, plastic material, vinyl, which had a lower surface noise, enabled him in 1948 to reduce the groove width some three times to 0.003 in. (0.0762 mm), use a more lightly loaded synthetic sapphire stylus and crystal transducer with improved performance, and reduce the turntable speed to 33 1/3 rpm, to give thirty minutes of high-quality music per side. This successful development soon led to the availability of stereophonic recordings, based on the ideas of Alan Blumlein at EMI in the 1930s.In 1950 Goldmark became a vice-president of CBS, but he still found time to develop a scan conversion system for relaying television pictures to Earth from the Lunar Orbiter spacecraft. He also almost brought to the market a domestic electronic video recorder (EVR) system based on the thermal distortion of plastic film by separate luminance and coded colour signals, but this was overtaken by the video cassette recorder (VCR) system, which uses magnetic tape.[br]Principal Honours and DistinctionsInstitute of Electrical and Electronics Engineers Morris N.Liebmann Award 1945. Institute of Electrical and Electronics Engineers Vladimir K. Zworykin Award 1961.Bibliography1951, with J.W.Christensen and J.J.Reeves, "Colour television. USA Standard", Proceedings of the Institute of Radio Engineers 39: 1,288 (describes the development and standards for the short-lived field-sequential colour TV standard).1949, with R.Snepvangers and W.S.Bachman, "The Columbia long-playing microgroove recording system", Proceedings of the Institute of Radio Engineers 37:923 (outlines the invention of the long-playing record).Further ReadingE.W.Herold, 1976, "A history of colour television displays", Proceedings of the Institute of Electrical and Electronics Engineers 64:1,331.See also: Baird, John LogieKF
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