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1 Abbot's curve
Большой англо-русский и русско-английский словарь > Abbot's curve
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2 Abbot's curve
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3 Abbot's curve
Техника: кривая опорной поверхности -
4 curve
1) кривая2) изгиб; закругление; кривизна || изгибать(ся); закруглять(ся)4) лекало (чертёжное, швейное)5) ж.-д. кривая (пути)6) дорож. разбивать кривую•to negotiate a curve — вписываться в кривую (пути);to round curves — проходить кривые участки пути;to run through a curve — проходить кривую (пути);curve of (centers of) flotation — катящаяся кривая, кривая центров тяжести площади ватерлинии ( при наклонениях судна)curve of constant slope — линия откосаcurves of form (of hydrostatic properties) — мор. кривые элементов теоретического чертежаcurve of metacenters — мор. кривая метацентров, метацентрическая обёрткаcurve of Persei — кривая Персея, спирическая кривая-
A curve
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Abbot's curve
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aberration curve
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adiabatic curve
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altitude curve
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amplitude-response curve
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analytic curve
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angle-time curve
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anharmonic curve
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anhysteretic magnetization curve
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annealing curve
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antidromic curve
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antipedal curve
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aperture response curve
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apolar curve
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backwater surface curve
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backwater curve
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ballistic curve
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bath-tub curve
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bearing area curve
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bearing stress curve
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bell-shaped curve
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B-H curve
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binaural curve
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biquartic curve
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bitangential curve
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bitangent curve
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boiling curve
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boiling-point curve
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borderline knock curve
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bound curves
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brake performance curve
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broken-back curve
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buoyancy curve
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burning curve
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calibration curve
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caliper curve
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capacity curve
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catenary curve
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characteristic current curve
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characteristic curve
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characteristic time curve
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charging curve
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circular curve
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climb curve
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closed curve
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color response curve
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commutation curve
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compound curve
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compression curve
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condensation curve
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confocal curves
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continuous curve
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contour curve
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contrast response curve
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conveyor curve
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coordinate curve
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correction curve
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cosecant curve
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cosine curve
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cotangent curve
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cross curves of stability
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cubic curve
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cumulative property curves
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current-time curve
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current-voltage curve
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damper curve
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decay curve
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decline curve
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decrement curve
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de-emphasis curve
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deflection curve
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deformation curve
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demagnetization curve
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depletion curve
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derating curve
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dew-point curve
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dextrorse curve
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directing curve
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discharge curve
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discharge frequency curve
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discharge voltage-time curve
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discharging curve
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displacement curve
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distillate yield curve
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distribution curve
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D-log E curve
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dose-survival curve
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drawdown curve
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drooping volt-ampere curve
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dry-bulb temperature curve
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duration curve
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dynamic stability curve
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easement curve
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efficiency curve
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elastic curve
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elevation-area curve
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elution curve
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empirical curve
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end point yield curve
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enthalpy curve
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entropy curve
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envelope curve
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epitrochoidal curve
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equalization curve
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equiprobability curve
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error curve
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exponential curve
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faired curve
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family curve
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fatigue curve
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firing curve
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first-arrival curve
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fitted curve
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flash point yield curve
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flash yield curve
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flat curve
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floodable length curve
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flow curve
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flow-through curve
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frequency curve
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frequency-response curve
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full-load curve
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full-load performance curve
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full-load saturation curve
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funicular curve
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gain curve
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Gaussian curve
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generating curve
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generation curve
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grading curve
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granulometric curve
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gravity mid per cent curve
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growth curve
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guide curve
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H and D curve
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hardening curve
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harmonic curve
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head-flow curve
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heating load curve
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helical curve
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horizontal curve
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Hurter and Driffield curve
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hydrostatic curves
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hysteresis curve
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incremental fuel consumption curve
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induction-permeability curve
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infiltration curve
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integral curve
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interpolation curve
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ionization curve
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irregular curve
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isentropic curve
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isobaric curve
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isobatic curve
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isochronous curve
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isoclinic curve
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isothermal curve
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isotime curve
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isotropic curve
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lag curve
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launching curves
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lead curve
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learning curve
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level curve
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limit curve
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load curve
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load-deflection curve
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load-duration curve
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load-extension curve
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load-opening displacement curve
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load-strain curve
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load-time curve
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logarithmic curve
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luminosity curve
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magnetization curve
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Mayor curve
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mean temperature-time curve
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no-load curve
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normal curve
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normal traveltime curve
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normalized magnetization curve
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O-curve
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overload curve
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parameter curve
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particle-size distribution curve
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part-load curve
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pay load-range curve
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pedal curve
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performance curve
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permeability curve
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plane curve
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polar curve
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potential curve
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power-angle curve
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preemphasis curve
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pressure curve
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pressure drawdown curve
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probability curve
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propeller performance curves
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quadric curve
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quartic curve
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quintic curve
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railroad curve
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railway curve
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rate-of-failure curve
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rating curve
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recession curve
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reciprocity curve
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recovery curve
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rectifiable curve
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refrigerant flow curve
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regression curve
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regulation curve
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remanence curve
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remarkable curve
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resistance curve
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resistance variation curve
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resonance curve
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response curve
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reverse curve
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righting arms curve
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righting arm curve
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righting moment curve
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rising-stage curve
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room temperature curve
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runoff curve
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sag vertical curve
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saturation curve
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secant curve
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self-polar curve
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sensitivity curve
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sensitometric curve
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sextic curve
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sharp curve
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sheer curve
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short radius curve
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short-circuit curve
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simple curve
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sine curve
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sinistrorse curve
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sizing curve
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sliding curve
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slip-current curve
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smooth curve
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space curve
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spectral-distribution curve
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spectral-response curve
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speed performance curve
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speed-load curve
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spiral curve
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spur conveyor curve
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stability curve
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standardization curve
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statical stability curve
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stationary curve
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steam-pressure curve
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steep curve
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step curve
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stratification curve
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stress-strain curve
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stripping curve
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subsequent fracture curve
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superheat curve
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swing curve
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tangent curve
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tangential curve
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temperature curve
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temperature-depth curve
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temperature-viscosity curve
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test curve
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thrust curve
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tide curve
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time-gamma curve
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time-light curve
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time-temperature-transformation curve
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tons per inch curve
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torque curve
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torque-angle curve
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torque-speed curve
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torque-vs-displacement curve
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total heat curve
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track curve
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transfer curve
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transient curve
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transition boiling curve
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transition curve
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translation curve
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transversal curve
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trochoidal curve
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TTT curve
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turnout curve
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universal curve
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vapor-pressure curve
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vapor curve
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vertical curve
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vertical travel-time curve
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viscosity mid per cent curve
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volumetric efficiency curve
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washability curve
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wear-time curve
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wet-bulb temperature curve
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Wohler's curve
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work-hardening curve
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yield curve -
5 кривая опорной поверхности
Большой англо-русский и русско-английский словарь > кривая опорной поверхности
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6 кривая опорной поверхности
Англо-русский словарь технических терминов > кривая опорной поверхности
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7 Garratt, Herbert William
[br]b. 8 June 1864 London, Englandd. 25 September 1913 Richmond, Surrey, England[br]English engineer, inventor of the Beyer-Garratt articulated locomotive.[br]After apprenticeship at the North London Railway's locomotive works, Garratt had a varied career which included responsibility for the locomotive departments of several British-owned railways overseas. This gave him an insight into the problems of such lines: locomotives, which were often inadequate, had to be operated over lines with weak bridges, sharp curves and steep gradients. To overcome these problems, he designed an articulated locomotive in which the boiler, mounted on a girder frame, was sus pended between two power bogies. This enabled a wide firebox and large-diameter boiler barrel to be combined with large driving-wheels and good visibility. Coal and water containers were mounted directly upon the bogies to keep them steady. The locomotive was inherently stable on curves because the central line of the boiler between its pivots lay within the curve of the centre line of the track. Garratt applied for a patent for his locomotive in 1907 and manufacture was taken up by Beyer, Peacock \& Co. under licence: the type became known as the Beyer-Garratt. The earliest Beyer-Garratt locomotives were small, but subsequent examples were larger. Sadly, only twenty-six locomotives of the type had been built or were under construction when Garratt died in 1913. Subsequent classes came to include some of the largest and most powerful steam locomotives: they were widely used and particularly successful in Central and Southern Africa, where examples continue to give good service in the 1990s.[br]BibliographyH.W.Garratt took out nine British patents, of which the most important is: 1907, British patent no. 17,165, "Improvements in and Relating to Locomotive Engines".Further ReadingR.L.Hills, 1979–80, "The origins of the Garratt locomotive", Transactions of the Newcomen Society 51:175 (a good description of Garratt's career and the construction of the earliest Beyer-Garratt locomotives).A.E.Durrant, 1981, Garratt Locomotives of the World, Newton Abbot: David \& Charles. L.Wiener, 1930, Articulated Locomotives, London: Constable \& Co.See also: Beyer, Charles FrederickPJGRBiographical history of technology > Garratt, Herbert William
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