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1 laminar deformation
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2 laminar deformation
English-Russian dictionary of chemistre > laminar deformation
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3 rotational laminar deformation
Полимеры: деформация сдвига слоёв при крученииУниверсальный англо-русский словарь > rotational laminar deformation
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4 telescopic laminar deformation
Полимеры: деформация сдвига слоёв вдоль осиУниверсальный англо-русский словарь > telescopic laminar deformation
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5 rotational laminar deformation
English-Russian dictionary of chemistre > rotational laminar deformation
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6 telescopic laminar deformation
English-Russian dictionary of chemistre > telescopic laminar deformation
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7 ламинарное деформирование
Русско-английский словарь по химии > ламинарное деформирование
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8 послойное деформирование
Русско-английский словарь по химии > послойное деформирование
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9 деформация сдвига слоёв вдоль оси
Polymers: telescopic laminar deformationУниверсальный русско-английский словарь > деформация сдвига слоёв вдоль оси
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10 деформация сдвига слоёв при кручении
Polymers: rotational laminar deformationУниверсальный русско-английский словарь > деформация сдвига слоёв при кручении
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11 ламинарное деформирование
Polymers: laminar deformationУниверсальный русско-английский словарь > ламинарное деформирование
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12 послойное деформирование
Polymers: laminar deformationУниверсальный русско-английский словарь > послойное деформирование
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13 деформация сдвига слоев вдоль оси
Русско-английский словарь по химии > деформация сдвига слоев вдоль оси
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14 деформация сдвига слоев при кручении
Русско-английский словарь по химии > деформация сдвига слоев при кручении
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15 wear
1) износ; изнашивание; истирание; срабатывание || изнашиваться; истираться; срабатываться2) одежда•wear and tear — 1. износ 2. амортизация;wear by roll formation — изнашивание скатыванием;wear on the bottom — износ подины;to wear away — 1. изнашивать(ся) 2. срабатываться;to wear in — прирабатывать трением;-
hour-glass shaped wear
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ablative wear
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abrasive wear
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adhesive wear
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allowable wear
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anisotropic wear
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atomic wear
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attrition wear
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baggy wear
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bell-shaped wear
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bit wear
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camber wear
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casual wear
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cavitation wear
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cavitational-abrasive wear
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chemical wear
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cornering wear
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corrosive wear
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crater wear
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cutting wear
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deformation wear
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delamination wear
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double breasted wear
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dresser diamond wear
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dusting wear
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dynamic wear
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electroerosive wear
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erosive wear
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excessive wear
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extremely fine wear
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extremely gross wear
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face wear
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fatigue wear
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flank wear
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fore-and-aft tire wear
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formal wear
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fretting wear
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frictional wear
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fusion wear
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gouging wear
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gradual wear
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horseshoe shaped wear
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impact wear
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internal wear
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laminar wear
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last-a-season wear
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leisure wear
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limiting wear
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linear wear
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local wear
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mass wear
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mechanical wear
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mechanochemical wear
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metallic wear
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mild wear
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misalignment-type wear
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moderate wear
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negative wear
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nonzero wear
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normal wear
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one-body wear
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oxidative wear
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percussive impact wear
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permissible wear
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polish wear
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positive wear
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progressive wear
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resort wear
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rolling wear
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running-in wear
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scalloping wear
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seizure wear
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severe wear
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single breasted wear
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single-traversal wear
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sliding wear
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slotted wear
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specific linear wear
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specific mass wear
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specific volumetric wear
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specific volume wear
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spring coils wear
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steady-state wear
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surface wear
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thermal wear
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tire cross wear
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total wear
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two-body wear
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vibrational wear
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volumetric wear
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volume wear
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zero wear -
16 классифицировать
•Organic compounds may be categorized according to certain arrangements of atoms.
•Chloramphenicol is classed as an antibiotic.
•Acedobacter suboxydans is classified among the vinegar bacteria.
•This error may be classified as a deformation error.
•Fluid flow may be classified under two types, laminar and turbulent.
•It is impossible to categorize . histolytica as either a parasitic or as a commensal organism since it may be either.
Русско-английский научно-технический словарь переводчика > классифицировать
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17 классифицировать
•Organic compounds may be categorized according to certain arrangements of atoms.
•Chloramphenicol is classed as an antibiotic.
•Acedobacter suboxydans is classified among the vinegar bacteria.
•This error may be classified as a deformation error.
•Fluid flow may be classified under two types, laminar and turbulent.
•It is impossible to categorize . histolytica as either a parasitic or as a commensal organism since it may be either.
* * *Классифицировать(ся) -- to be classified, to be categorized; to sort out (путем выявления, отбора); to be ranked (по качеству); to be rationalized (приводить в систему); to be listed (с указанием перечня)Rotor balancing procedures are classified according to the type of rotor for which they are designed, rigid or flexible.Mechanical printing devices may be categorized from several points of view.The true results surfaced only through more detailed studies that sort out the influence of various competing factors.The coals were ranked solely on the basis of iron content.Классифицировать какEach of the records can be categorized as steep.These techniques can be listed as capacitive, inductive, and optical.All other states were classified as non-flotation.Классифицировать по-- A complex spectrum of material behavior is observed but is rationalized in the present paper by its effect on the subsequent precipitation.Русско-английский научно-технический словарь переводчика > классифицировать
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18 зависеть
Зависеть от (числа Рэлея)-- The natural length scale was Rayleigh number dependent. Зависеть от (мнения)-- The question of what is a stable flame is very subject to the opinion and experience of the test operator. зависеть от -- to depend on, to rely on, to rely upon; to respond to; to be dependent on, to be contingent on (upon); to be...-dependent, to be... -specific; to be a function of, to be a matter of; to be affected by, to be influenced by, to be governed by; to be subject to; to be sensitive toThe solubility of an alkali metal silicate depends on the ratio of silica to alkali metal oxide.The success of the stress-analysis method relies on stress and deformation details very near the crack tip.Tool life was found to respond to the tempering temperature.Contingent residual stresses are those stresses that are contingent on (or subject to) the coexistence of the source from which they are derived.The recommendation was contingent upon further development efforts.The abrasive wear mechanism is also temperature-dependent (... зависит от температуры).Many inferences are context-specific (Многие выводы зависят от контекста).The position of start of transition from a laminar to a turbulent boundary layer is affected by turbulence intensity.This long term wear rate is governed by engine design, ring and linear materials and, of course, lubrication.Русско-английский научно-технический словарь переводчика > зависеть
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19 control
1. управление; регулирование; управляемость; стабилизация/ управлять; регулировать2. управляющее устройство; регулятор; орган управления, средство управления; рычаг управления; поверхность управления, руль3. <pl> система управления; система регулирования4. управляющее воздействие, управление; отклонение органа управления; перемещение рычага управления5. контроль6. подавление <напр. колебаний>; предотвращениесм. тж. control,control in the pitch axis4-D controlacceleration controladaptable controladaptive controlaerodynamic controlaeroelastic controlaileron controlair traffic controlairborne controlaircraft controlairspeed controlall-mechanical controlsantispin controlsapproach controlarea controlarrival controlattitude controlaugmented controlsautopilot controlbang-bang controlbank-to-turn controlbimodal controlboundary layer controlbounded controlBTT controlbuoyancy controlbus controlCG controlcable controlcable-operated controlscamber controlcaptain`s controlscenter-of-gravity controlchattering controlclearance controlclosed-loop controlclosed-loop controlscockpit controlcockpit controlscollective controlcollective-pitch controlcolocated controlcompensatory controlconfiguration controlcontinuous controlcooperative controlcoordinated controlscorrosion controlcross controlscrowd controlcruise camber controlcyclic controlcyclic pitch controldamper-induced controldamping controldecentralized controldecoupled controldeformable controlsdeformation controldescent controldifferential controldigital controldirect force controldirect lateral force controldirect lift controldirect lift controlsdirect sideforce controldirect sideforce controlsdirectional controldirectional attitude controldirectional flight path controldiscontinuous controldiscrete controldisplacement controldistributed controldivergence controldrag controldual controlelastic mode controlelectrical signalled controlelevator controlen route air traffic controlengine controlserror controlevader controlFBW controlsfeedback controlfighter controlfinal controlfine controlfinger-on-glass controlfingertip controlfinite-time controlfixed-wing controlflap controlFlettner controlflight controlflight controlsflight path controlflow controlfluidic controlflutter controlflutter mode controlfly-by-glass controlfly-by-light controlsfly-by-wire controlsflying controlflying controlsforce controlforce sensitive controlforce sensitive controlsforebody controlsfountain controlfracture controlfriend/foe controlfuel controlfuel distribution controlfuel efficient controlfuel feed controlfull controlfull nose-down controlfull nose-down to full nose-up controlfull-authority controlfull-authority controlsfull-state controlfull-time fly-by-wire controlgain-scheduled controlglide path controlglideslope controlground-based controlharmonized controlshead-out controlhead-up controlheading controlheld controlshierarchical controlhigh-alpha controlhigh-angle-of-attack controlhigh-bandpass controlhigh-bandwidth controlhigh-speed controlhigher harmonic controlhigher harmonic controlshighly augmented controlsHOTAS controlshover mode controlhovering controlhydromechanical controlin-flight controlindividual blade controlindividual flap cruise camber controlinfra-red emissions controlinner-loop controlinput controlinput/output controlintegral controlintegrated controlinteractive controlsintercom/comms controlsirreversible controljet reaction controlkeyboard controlkeyboard controlsknowledge-based controllaminar flow controllateral controllateral-directional controlleading-edge controlsleft controlLiapunov optimal controllinear quadratic Gaussian controllinear quadratic regulator controlload factor controllongitudinal controllongitudinal cyclic controllow-bandwidth controllow-speed controlLQG controlLyapunov optimal controlmaneuver controlmaneuver camber controlmaneuver load controlmaneuvering controlmanual controlmass-flow controlmicroprocessor based controlMIMO controlminimax optimal controlminimum time controlminimum variance controlmisapplied controlsmission-critical controlmixing controlmodal controlmode controlsmodel-following controlmotion controlmultiaxis controlmultiple model controlmultiple-axis controlmultiple-input/multiple-output controlmultisurface controlmultivariable controlneutral controlsnoise controlnoninertial controlnonlinear feedback controlnonunique controlnose-down controlnose-down pitch controlopen-loop controlopen-loop controlsoptimal controlouter-loop controloxygen controlsperformance seeking controlperiodic controlperturbational controlpilot controlpilot-induced oscillation prone controlpiloting controlpiloting controlspitch controlpitch plane controlpitch-recovery controlpneumatic controlpneumodynamic controlpointing controlpositive controlpost stall controlpower controlpowered controlpredictive controlpressurization controlpreview controlpro-spin controlspropeller controlpropeller controlsproportional plus integral controlpropulsion controlspropulsion system controlspursuer controlpursuit controlradio controlsrate controlrate controlsratio-type controlsreaction controlreconfigurable controlsrecovery controlrecovery controlsreduced order controlrelay controlremote pilot controlresponsive controlrestructurable controlreverse controlreversed controlride controlrigid body controlrobust controlroll controlroll attitude controlroll-axis controlrotational controlrotor controlrudder controlrudder controlsrudder-only controlsea controlself-tuning controlsequence controlservo controlservo-flap controlservo-flap controlsshock controlshock wave/boundary layer controlshort period response controlsideforce controlsidestick controlsidestick controlssight controlssignature controlsingle-axis controlsingle-engine controlsingle-lever controlsingular perturbation optimal controlsix degree-of-freedom controlslew controlslewing controlsliding mode controlssmoothed controlsnap-through controlsoftware-intensive flight controlsspace structure controlstation keeping controlstepsize controlstiffness control of structurestochastic controlstructural controlstructural mode controlsuboptimal controlsuction boundary layer controlsuperaugmented controlswashplate controlsweep controlsystems controltactical controlstail controltail rotor controltailplane controltask-oriented controltask-tailored controltaxying controlterminal controlthin controlthree-surface controlthrottle controlthrust controlthrust magnitude controltight controltilt controltime-of-arrival controltime-optimal controltime/fuel optimal controltip clearance controlto regain controltorque controltorque controlstrailing-edge controlstransient controltranslational controltri-surface controltrim controlturn coordination controlupfront controlupward-tilted controlvariable structure controlvectorial controlvehicular controlvelocity controlvertical controlvibration controlvoice actuated controlsvortex controlvortex manipulation controlvortex-lift controlwing-mounted controlsyaw control -
20 theory
См. также в других словарях:
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OMRE OE-01 — OE 1 Role Glider National origin Hungary Manufacturer MRSz Központi Repülögépjavító Üzem, Dunakeszi (Central Aircraft Repair Plant of the MRSz, Dunakeszi) First flight 14 May 1951 Number built 1 The OMRE OE 1 (a.k.a. Rubik R 20) was an ex … Wikipedia