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1 aero-plane
თვითმფრინავი -
2 aeroplane aero·plane n esp Brit
['ɛərəˌpleɪn]English-Italian dictionary > aeroplane aero·plane n esp Brit
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3 sail plane
s [aero] zračna jedrilica -
4 sail-plane
s [aero] zračna jedrilica -
5 tail plane
s [aero] horizontalni stabilizator -
6 tail-plane
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7 aeroplane
aero·plane [ʼeərə(ʊ)pleɪn], (Am) air·plane [ʼerpleɪn] nFlugzeug nt -
8 aeroplane
noun(Brit.) Flugzeug, das* * *['eərəplein]((often abbreviated to plane: American airplane) a machine for flying which is heavier than air and has wings.) das Flugzeug* * *aero·plane[ˈeərə(ʊ)pleɪn]AM air·plane[AM ˈerpleɪn]n Flugzeug nt* * *['ɛərəpleɪn]n (Brit)Flugzeug nt* * ** * *noun(Brit.) Flugzeug, das -
9 airplane
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10 pursuit
s 1. gonjenje, proganjanje, potjera, potraga, lov 2. zanimanje, posao, dužnost; [fig] nastojanje, težnja / #s [pl] = poslovi; studij in # of (a p, a th) = u potrazi za kim, čim; [aero] # plane = lovački avion* * *
gonjenje
lov
obavljanje
ostvarenja
posao
potjera
potraga
provedba
provođenje
zanimanje -
11 aerodynamics
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12 NASP
1) Военный термин: national aerospace plane, nuclear ammunition supply point, ВКС, воздушно-космический самолёт, космоплан, орбитальный самолёт, ракетоплан2) Сокращение: NATO Atomic Supply Point (NATO), National (US) AeroSpace Plane, National Aero-Space Plane (USA), Navy Airship Program (USA), Non-Acoustic Sensor Platform (e.g., for undersea mine detection), Non-Acoustic Sensor Platform4) Транспорт: National Airspace System Plan5) Воздухоплавание: National Airport System Plan6) Экология: North Atlantic Seismic Project7) Образование: National Association of School Psychologists8) НАСА: National Aero- Space Plane -
13 configuration
1. конфигурация; схема; компоновка; форма; комбинация2. структура3. вариант <ЛА>10x8 configuration15% unstable configurationactuator configurationaero-balanced configurationaeroelastic configurationaeromedical configurationaft CG configurationair defence configurationair-combat configurationair-to-air configurationaircraft configurationaircraft-like configurationairfoil-spoiler-flap configurationairframe-inlet configurationall-cargo configurationall-economy configurationall-freight configurationall-wing configurationanti-ice configurationapproach-flap configurationarrow-wing configurationas delivered configurationas-built configurationasymmetrical missile configurationback-staggered configurationbaseline configurationbenchmark configurationblade configurationblade/hub configurationblowing configurationbroad-brush configurationbutterfly configurationcabin configurationcanard configurationcanard-tail configurationcanard-wing configurationcanard-wing-body configurationcanardless configurationcargo-loading configurationchine configurationchined configurationcircular configurationclean configurationclose-coupled canard configurationclose-coupled wing-canard configurationclosed-loop configurationcoaxial configurationcockpit configurationconstant gain configurationcontrol configurationcontrol law configurationcontrol surface configurationcontrol system configurationcritical configurationcruise configurationdelta-canard configurationdelta-winged configurationdeparture resistant configurationdeployed configurationdisplay configurationdouble-delta configurationdownstop configurationdual cargo-hook configurationdual-console configurationeconomy class configurationejector-lift and vectored-thrust configurationelectronic reconnaissance configurationempennage configurationenergy-conservative configurationengine configurationevaluation configurationfairing configurationfighter-like configurationfilter configurationfinned configurationflap configurationflapped configurationflaps-up configurationflying boom configurationforebody configurationforebody off configurationforebody removed configurationforward-swept configurationforward-swept-wing configurationfour-blade configurationfour-engine configurationfree-turbine configurationgeometric configurationglide configurationglove-fuselage configurationgo-around configurationheavy store configurationhigh-angle-of-attack configurationhigh-control-effectiveness configurationhigh-altitude configurationhigh-density configurationhigh-fineness-ratio configurationhigh-lift configurationhigh-overshoot configurationhigh-wing configurationhorizontal ellipse configurationhypersonic configurationin-flight configurationin-line configurationinboard-jointed configurationinertially slender configurationinlet configurationinversely derived configurationiron bird configurationjet balanced configurationjoined wing configurationlanding configurationLEX configurationlifting body configurationlighting configurationlow-bypass configurationlow-drag configurationlow-fineness-ratio configurationlow-overshoot configurationlow-signature configurationlow-speed configurationmaneuver configurationmidwing configurationminimum drag configurationmixed-class configurationmultisurface configurationmultibody configurationmultiengine configurationmultiple-jet configurationnormal-shock configurationnose-boom-off configurationnose-boom-on configurationoblique-wing configurationopen-loop configurationordnance configurationover-the-wing configurationpanelized configurationparcel-freighter configurationpartial-freight configurationpassenger configurationpayload configurationpitch control configurationpitch attitude-tracking configurationpitch-only configurationpitch rate command configurationpodded configurationpole-zero configurationpoor RSS configurationpower approach configurationpower-on aircraft configurationpowered configurationpowerplant configurationpre-production configurationproduction configurationpropulsor configurationpusher configurationratchet configurationreal configurationrear-loading configurationrotor plus wing configurationrotor-airframe configurationrotor-fuselage configurationrotor-winglet configurationrotorcraft configurationseating configurationsensor configurationside-by-side configurationsimulation configurationsingle-jet configurationsingle-body configurationsingle-engine configurationsingle-fuselage configurationsingle-pilot configurationsingle-rotor configurationsingle-shaft configurationsized configurationslat configurationsoft in-plane configurationspoiler configurationstable configurationstall-resistant configurationstarting configurationsteady flight configurationstiff in-plane configurationSTOL configurationstore configurationSTOVL configurationstraight-wing configurationstrake off configurationstrake-wing configurationsupersonic cruise configurationsymmetrical missile configurationT-tail configurationtail configurationtail control configurationtail-aft configurationtailed configurationtailed-delta configurationtailless configurationtakeoff configurationtandem configurationtandem-wing configurationtandem-rotor configurationtest configurationthree shaft configurationthree-engine configurationthree-shock configurationthrust-down configurationthrust-up configurationthrust-vectored configurationtilt-rotor configurationtilting engine configurationtip-jointed configurationtractor configurationtrailing-edge configurationTrefftz-plane configurationtunnel-supported configurationturbojet-powered configurationturboprop configurationturboshaft configurationturning configurationtwin-lift helicopter configurationtwo-bladed configurationtwo-cabin configurationtwo-engine configurationtwo-shaft configurationtwo-stage configurationtwo-surface configurationunder-the-wing configurationunslatted configurationunstable configurationunstick configurationup and away configurationupper-surface-blowing configurationupper-surface-blown configurationUSB configurationV/STOL configurationvariable-bypass-ratio configurationvariable-geometry configurationVATOL configurationvectored-engine-over-wing configurationVEO-wing configurationvertical ellipse configurationVTOL configurationwidely spaced pod configurationWild Weasel configurationwing configurationwing mounted configurationwing-body-nacelle configurationwing-body-tail configurationwing-canard configurationwing-fence configurationwing-flap configurationwing-spoiler-flap configurationwing-tail-fuselage configurationwing-store configurationyaw vane configurationzig-zag configuration -
14 Ellehammer, Jacob Christian Hansen
SUBJECT AREA: Aerospace[br]b. 14 June 1871 South Zealand, Denmarkd. b. 20 May 1946 Copenhagen, Denmark[br]Danish inventor who took out some four hundred patents for his inventions, including aircraft.[br]Flying kites as a boy aroused Ellehammer's interest in aeronautics, and he developed a kite that could lift him off the ground. After completing an apprenticeship, he started his own manufacturing business, whose products included motor cycles. He experimented with model aircraft as a sideline and used his mo tor-cycle experience to build an aero engine during 1903–4. It had three cylinders radiating from the crankshaft, making it, in all probability, the world's first air-cooled radial engine. Ellehammer built his first full-size aircraft in 1905 and tested it in January 1906. It ran round a circular track, was tethered to a central mast and was unmanned. A more powerful engine was needed, and by September Ellehammer had improved his engine so that it was capable of lifting him for a tethered flight. In 1907 Ellehammer produced a new five-cylinder radial engine and installed it in the first manned tri-plane, which made a number of free-flight hops. Various wing designs were tested and during 1908–9 Ellehammer developed yet another radial engine, which had six cylinders arranged in two rows of three. Ellehammer's engines had a very good power-to-weight ratio, but his aircraft designs lacked an understanding of control; consequently, he never progressed beyond short hops in a straight line. In 1912 he built a helicopter with contra-rotating rotors that was a limited success. Ellehammer turned his attention to his other interests, but if he had concentrated on his excellent engines he might have become a major aero engine manufacturer.[br]Bibliography1931, Jeg fløj [I Flew], Copenhagen (Ellehammer's memoirs).Further ReadingC.H.Gibbs-Smith, 1965, The Invention of the Aeroplane 1799–1909, London (contains concise information on Ellehammer's aircraft and their performance).J.H.Parkin, 1964, Bell and Baldwin, Toronto (provides more detailed descriptions).JDSBiographical history of technology > Ellehammer, Jacob Christian Hansen
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15 method
1) метод
2) способ
3) процедура
– ADI method
– adjoint method
– aero-projection method
– anaglyphic method
– approximate method
– area method
– averaging method
– axiomatic method
– backing-space method
– balancing method
– ball-and-ring method
– block-diagram method
– bordering method
– Borrmann method
– bottle method
– branch-and-bound method
– brittel-varnish method
– building-block method
– caisson method
– chain method
– chopped-beam method
– Clegg method
– coincidence method
– colorimetric method
– complexometric method
– conductance-measuring method
– cone method
– conjugate-gradient method
– constant-fraction method
– correlation method
– curing method
– cut-and-try method
– deductive method
– deflection method
– delta method
– Deschamps method
– diagram method
– difference method
– dilution method
– dimensional method
– direct method
– dot alloying method
– dry combustion method
– dry method
– Dumas method
– dye-penetrant method
– efflux method
– elastic method
– electrophoretic method
– empirical method
– energy method
– equal-altitude method
– equal-deflection method
– equal-strain method
– escalator method
– estimate by the method
– evaporation method
– exact method
– fall-of-charge method
– finitary method
– floatation method
– floating-zone method
– fusion method
– gradient method
– graph method
– graphical method
– gravimetric method
– gray-wedge method
– grid method
– Griess-Ilovai method
– half-deflection method
– horn-and-lens method
– immersion method
– incremental method
– indirect method
– inexact method
– interfermetric method
– inverse-scattering method
– inversion method
– isolation method
– iteration method
– kick-sorting method
– laboratory method
– load-factor method
– lobe-switching method
– lost wax method
– lumped-parameter method
– machining method
– manufacturing method
– Markowitz method
– mesh-current method
– method of angles
– method of bearings
– method of directions
– method of exhaustion
– method of gisements
– method of image
– method of images
– method of joints
– method of revolution
– method of sections
– method of superposition
– midsquare method
– mirror-image method
– momentum-transfer method
– moving-average method
– nephelometric method
– net method
– net-point method
– neutral-points method
– nodal-pair method
– node-voltage method
– non-destructive method
– non-recursive method
– null method
– numerical method
– objective method
– offset method
– offset-signal method
– operational method
– opposition method
– orthogonalized-plane-wave method
– paramagnetic-resonance method
– particle method
– particle-in-cell method
– perturbation method
– plunge-cut method
– point-by-point method
– polar method
– postulational method
– powder method
– predictor-corrector method
– processing method
– pseudoviscosity method
– pulse method
– pulse-counting method
– pulse-echo method
– pumping method
– qualitative method
– quantitative method
– radiation method
– radiometric method
– raster-scan method
– ray-trace method
– refletion method
– relaxation method
– reliability method
– resonance method
– retardation method
– root-locus method
– rotating-crystal method
– Runge-Kutta method
– saddle-point method
– sampling method
– secant method
– sedimentaion method
– semigraphical method
– separation method
– shadow method
– shake method
– shock-capturing method
– shooting method
– short-cut method
– sieve method
– similitude method
– slope-deflection method
– spectroscopic method
– spiral-scan method
– step-back method
– step-by-step method
– stroboscopic method
– stylus method
– subjective method
– substitution method
– sweep method
– test-line method
– three-base method
– time-of-flight method
– topological method
– total-strain method
– tracer method
– trial-and-error method
– triangulation method
– trilateration method
– Tukey-Cooley method
– Tukey-Sand method
– variable-phase method
– variational method
– visual method
– volumetric method
– Whitham's method
– wobbulator method
– work method
– worst-case method
– zero-beat method
alternating direction method — <math.> метод перемежающийся, метод переменных направлений, метод чередущихся направлений
alternating-variable descent method — <math.> метод покоординатного спуска
balance-chart method of planning — <econ.> метод планирования балансовый
Barrelet method of zeroes — <phys.> метод нулей Барле
baseband recording method — способ раздельной записи видеоинформации с временным уплотнением
branch and bound method — метод ветвей и границ, метод ветвления и ограничения
composite value method — <comput.> метод передачи совместных значений, метод совместных значений
differential control method — дифференцированный метод контроля
divide by differential method — делить дифференциальным методом
equal deflection method — <tech.> метод равных отклонений
false position method — <math.> метод пристрелки
Feynman diagram method — <phys.> техника диаграммная
finite element method — <math.> метод конечных элементов
Hopkinson split-bar method — метод составного стержня Гопкинсона
method of complex gradients — <math.> метод сопряженных градиентов
method of false position — <math.> метод ложного положения
method of feasible directions — <math.> метод возможных направлений
method of fraction levelling — метод нивелирования по частям
method of incremental rates — <engin.> метод относительных приростов
method of penultimate remainder — <math.> метод предпоследнего остатка
method of separation of variable — метод разделения переменных
method of steepest descent — <math.> метод наискорейшего спуска, метод скорейшего спуска
method of symmetrical components — метод симметричных составляющих
method of variation of parameters — метод вариации постоянных
moment distribution method — метод перераспределения моментов
moving average method — <math.> метод скользящих средних
reflected wave method — < radio> метод отраженных волн
regula falsa method — <math.> метод пристрелки
relative method of measurement — относительный метод измерения
spot-scan photomultiplier method — метод сканирования пятном
successive exclusion method — метод последовательных исключений
zero deflection method — <tech.> метод нулевого отклонения
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16 survey
— hydrographical survey— leveling survey -
17 method
метод; процедура; способ- antithetic variate method - average ordinate method - average range method - binary search method - conjugate directions method - conjugate gradient method - control chart method - conventional milling method - correlation function method - decision function method - differential control method - Feynman diagram method - first approximation method - gradient projection method - iterative method - large sample method - large sieve method - least-squares regression method - less than fully efficient method - linearly implicit method - method of adjoint gradient - method of algebraic addition - method of alternating directions - method of balanced blocks - method of complex numbers - method of confidence intervals - method of conformal mappings - method of conjugate directions - method of conjugate gradients - method of cyclic descent - method of detached coefficients - method of disjunction of cases - method of divided differences - method of electrical images - method of elimination of quantifiers - method of empty ball - method of extreme values - method of false position - method of feasible directions - method of finite differences - method of first approximation - method of first entrance - method of fitting constants - method of fixed points - method of full enumeration - method of generating functions - method of geometric exhaustion - method of indefinite coefficients - method of infinite descent - method of interval bisection - method of least absolute values - method of least distance - method of least likelihood - method of maximum likelihood - method of means and standard deviations - method of medians and extreme values - method of minimal change - method of minimal variance - method of mirror reflections - method of moving frame - method of multiple comparison - method of orthogonal projections - method of paired associates - method of paired comparisons - method of phase integrals - method of projecting cones - method of proportional parts - method of rotating factors - method of semantic tableaux - method of separation of variables - method of simulaneous displacements - method of stationary phase - method of statistical differentials - method of statistical inference - method of steep variations - method of steepest ascent - method of stochastic approximation - method of straightforward iteration - method of successive displacements - method of successive divisions - method of successive elimination - method of transfinite induction - method of unweighted means - method of variable differences - method of variation of parameters - method of weighted residuals - optimum method - parallel tangents method - precision method - random walk method - recursive method - reduced gradient method - reflected wave method - relative method of measurement - sampling method by variables - statistical sampling method - steepest descent method - time average method -
18 flying
flying ['flaɪɪŋ]1 noun∎ to be afraid of flying avoir peur de prendre l'avion;∎ he goes flying at the weekends le week-end, il fait de l'aviation(a) (animal, insect) volant;∎ they were hurt by flying glass ils ont été blessés par des bris de verre∎ a flying jump or leap un saut avec élan;∎ she took a flying leap over the fence elle a sauté par-dessus la barrière∎ to pass with flying colours réussir brillamment►► flying ambulance avion-ambulance m;flying boat hydravion m;flying bomb bombe f volante;Building industry flying buttress arc-boutant m;flying club aéro-club m;Military flying column colonne f mobile, groupement m mobile;flying doctor médecin m volant;the Flying Dutchman (legend) le Hollandais volant;Ichthyology flying fish poisson m volant, exocet m;Aviation flying fortress forteresse f volante;Zoology flying fox roussette f;Zoology flying lemur galéopithèque m;flying lessons leçons fpl de pilotage (aérien);Zoology flying lizard dragon m volant;flying machine machine f volante;Aviation flying officer lieutenant m de l'armée de l'air;Industry flying picket piquet m de grève volant;flying saucer soucoupe f volante;Zoology flying snake serpent m volant;the Flying Squad = brigade de détectives britanniques spécialisés dans la grande criminalité;Zoology flying squirrel écureuil m volant;Sport flying start départ m lancé;∎ the runner got off to a flying start le coureur est parti comme une flèche;∎ figurative she got off to a flying start in the competition lors de la compétition, elle est partie comme une flèche ou elle a pris un départ foudroyant;∎ the campaign got off to a flying start la campagne a démarré sur les chapeaux de roues;∎ his experience gives him a flying start over the others son expérience lui donne un très net avantage sur les autres;flying suit combinaison f d'aviateur;Sport flying tackle = plongeon pour plaquer ou stopper quelqu'un;flying time heures fpl ou temps m de vol;∎ 200 hours' flying time 200 heures de vol;flying visit visite f éclair;∎ to pay a flying visit to London faire une visite éclair à Londres -
19 Curtiss, Glenn Hammond
SUBJECT AREA: Aerospace[br]b. 21 May 1878 Hammondsport, New York, USAd. 23 July 1930 Buffalo, New York, USA[br]American designer of aeroplanes, especially seaplanes.[br]Curtiss started his career in the bicycle business, then became a designer of motor-cycle engines, and in 1904 he designed and built an airship engine. The success of his engine led to him joining the Aerial Experimental Association (AEA), founded by the inventor Alexander Graham Bell. Working with the AEA, Curtiss built several engines and designed a biplane, June Bug, in which he won a prize for the first recorded flight of over 1 km (1,100yd) in the USA. In 1909 Curtiss joined forces with Augustus M.Herring, who had earlier flown Octave Chanute's gliders, to form the Herring-Curtiss Company. Their Gold Bug was a success and led to the Golden Flyer, in which Glenn Curtiss won the Gordon Bennett Cup at Rheims in France with a speed of 75.7 km/h (47 mph). At this time the Wright brothers accused Curtiss and the new Curtiss Aeroplane Company of infringing their patent rights, and a bitter lawsuit ensued. The acrimony subsided during the First World War and in 1929 the two companies merged to form the Curtiss-Wright Corporation.Curtiss had started experimenting with water-based aircraft in 1908, but it was not until 1911 that he managed to produce a successful float-plane. He then co-operated with the US Navy in developing catapults to launch aircraft from ships at sea. During the First World War, Curtiss produced the JN-4 Jenny trainer, which became probably his best-known design. This sturdy bi-plane continued in service long after the war and was extensively used by "barnstorming" pilots at air shows and for early mail flights. In 1919 a Navy-Curtiss NC-4 flying boat achieved the first flight across the Atlantic, having made the crossing in stages, refuelling en route. Curtiss himself, however, had little interest in aviation in his later years and turned his attention to real-estate development in Florida.[br]Principal Honours and DistinctionsRobert J.Collier Trophy 1911, 1912. US Aero Club Gold Medal 1911, 1912. Smithsonian Institution Langley Gold Medal 1913.Further ReadingL.S.Casey, 1981, Curtiss: The Hammondsport Era 1907–1915, New York. C.R.Roseberry, 1972, Glenn Curtiss, Pioneer of Flight, New York.R.Taylor and Walter S.Taylor, 1968, Overland and Sea, New York (biography). Alden Heath, 1942, Glenn Curtiss: Pioneer of Naval Aviation, New York.JDS -
20 Junkers, Hugo
SUBJECT AREA: Aerospace[br]b. 3 February 1859 Rheydt, Germanyd. 3 February 1935 Munich, Germany[br]German aircraft designer, pioneer of all-metal aircraft, including the world's first real airliner.[br]Hugo Junkers trained as an engineer and in 1895 founded the Junkers Company, which manufactured metal products including gas-powered hot-water heaters. He was also Professor of Thermodynamics at the high school in Aachen. The visits to Europe by the Wright brothers in 1908 and 1909 aroused his interest in flight, and in 1910 he was granted a patent for a flying wing, i.e. no fuselage and a thick wing which did not require external bracing wires. Using his sheet-metal experience he built the more conventional Junkers J 1 entirely of iron and steel. It made its first flight in December 1915 but was rather heavy and slow, so Junkers turned to the newly available aluminium alloys and built the J 4 bi-plane, which entered service in 1917. To stiffen the thin aluminium-alloy skins, Junkers used corrugations running fore and aft, a feature of his aircraft for the next twenty years. Incidentally, in 1917 the German authorities persuaded Junkers and Fokker to merge, but the Junkers-Fokker Company was short-lived.After the First World War Junkers very rapidly converted to commercial aviation, and in 1919 he produced a single-engined low-wing monoplane capable of carrying four passengers in an enclosed cabin. The robust all-metal F 13 is generally accepted as being the world's first airliner and over three hundred were built and used worldwide: some were still in service eighteen years later. A series of low-wing transport aircraft followed, of which the best known is the Ju 52. The original version had a single engine and first flew in 1930; a three-engined version flew in 1932 and was known as the Ju 52/3m. This was used by many airlines and served with the Luftwaffe throughout the Second World War, with almost five thousand being built.Junkers was always ready to try new ideas, such as a flap set aft of the trailing edge of the wing that became known as the "Junkers flap". In 1923 he founded a company to design and manufacture stationary diesel engines and aircraft petrol engines. Work commenced on a diesel aero-engine: this flew in 1929 and a successful range of engines followed later. Probably the most spectacular of Junkers's designs was his G 38 airliner of 1929. This was the world's largest land-plane at the time, with a wing span of 44 m (144 ft). The wing was so thick that some of the thirty-four passengers could sit in the wing and look out through windows in the leading edge. Two were built and were frequently seen on European routes.[br]Bibliography1923, "Metal aircraft construction", Journal of the Royal Aeronautical Society, London.Further ReadingG.Schmitt, 1988, Hugh Junkers and His Aircraft, Berlin.1990, Jane's Fighting Aircraft of World War I, London: Jane's (provides details of Junkers's aircraft).J.Stroud, 1966, European Transport Aircraft since 1910, London.P. St J.Turner and H.J.Nowarra, 1971, Junkers: An Aircraft Album, London.JDS
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См. также в других словарях:
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plane — aero·plane; chair·o·plane; con·vert·i·plane; de·plane; en·plane; hy·per·plane; in·ter·plane; mono·plane; mul·ti·plane; pan·plane; plane; plane·ness; plane·shear; quad·ru·plane; rhi·zo·plane; ses·qui·plane; tri·plane; back·plane; air·plane;… … English syllables
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