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1 electrode properties
Большой англо-русский и русско-английский словарь > electrode properties
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2 electrode properties
Англо-русский словарь технических терминов > electrode properties
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3 electrode properties
Техника: электродные свойства -
4 layered polyaniline composites with cation-exchangings properties for positive electrode of lithium batteries
Универсальный англо-русский словарь > layered polyaniline composites with cation-exchangings properties for positive electrode of lithium batteries
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5 электродные свойства
Большой англо-русский и русско-английский словарь > электродные свойства
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6 property
1) свойство; характеристика; качество; способность; характерная [отличительная\] особенность•-
acoustic properties
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adhesion property
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adsorption property
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aerodynamic properties
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antiknock properties
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antioxygenic properties
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antireflection properties
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antisquawk property
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antiwear properties
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antiwelding properties
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associative property
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blocking property
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bonding property
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boundary properties
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bulk properties
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caking property
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carbon forming property
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casting properties
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cementing properties
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coking property
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cold resisting property
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colligative property
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commutative property
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compounding properties
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constitutive properties
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cornering property
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creasing property
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creep property
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cryoprotective properties
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cycle-and-add property
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decay property
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deplastering properties
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directional property
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distributive property
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drainage property
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ductility property
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elastic properties
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electrochemical properties
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electrode properties
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end-use properties
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extensive property
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extremal property
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extreme pressure properties
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extrinsic properties
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fatigue properties
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flexural properties
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flow property
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fluid loss properties
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friction and wear properties
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gelling property
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general properties
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geophysical properties
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geotechnical properties
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greasy property
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group property
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gum-forming property
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heat-transfer properties
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hiding property
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hydrophobic property
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hydrophylic property
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hygroscopic property
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image transfer property
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intensive property
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interfacial properties
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intrinsic properties
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leveling property
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lightfastness property
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linear property
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low-temperature mechanical properties
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lubricating property
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metric property
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minimal property
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minimax property
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minimum property
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moisture barrier property
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mud-making properties
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oil-resisting property
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oil-retaining property
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oil-sweeping properties
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optical properties
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optoelectronic properties
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oxygen barrier property
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partition property
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paste forming properties
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photoelastic properties
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photovoltaic properties
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plastering properties
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plastic properties
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plasto-elastic properties
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plugging properties
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post-yield properties
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proknock properties
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qualitative property
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quantitative property
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refractory property
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reservoir petrophysical properties
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resolving-power properties
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riding properties
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rimming property
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sanding property
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sealing property
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short transverse properties
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shrinking property
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sorption properties
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sound-proofing properties
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storage property
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strength property
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stress-optic properties
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stretching properties
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superconducting properties
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thermal fatigue properties
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thermal properties
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thermodynamic properties
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thermophysical properties
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toxicological properties
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uniqueness property
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variable properties
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vatting property
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viscoelastic properties
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wall-building properties
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wear property
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wear resisting property
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wetting property -
7 metal
1) металл || покрывать металлом || металлический3) щебень || мостить щебнем4) ж.-д. балласт || балластировать5) мн. ч. англ. рельсы6) стекломасса•metal with special expansion properties — металл с особыми свойствами расширения-
added metal
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alkaline metals
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alkali metals
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alkaline-earth metals
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antifriction metal
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as-cast metal
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as-quenched metal
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as-rolled metal
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babbitt metal
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babbit metal
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backing metal
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base metal
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basic metal
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blown metal
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blue metal
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brazing filler metal
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brazing metal
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burned metal
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cast metal
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ceramic metal
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clad metal
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coarse metal
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coated metal
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composite metal
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compound metal
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coupled metals
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crude metal
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cutting metal
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delta metal
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deposited metal
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direct metal
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dozzle metal
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dual metal
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ductile metal
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earth metal
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electrode metal
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electrofluxed metal
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electronegative metal
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electropositive metal
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emergency metal
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excess metal
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expanded metal
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expanding metal
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ferromagnetic metal
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ferrous base metal
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ferrous metal
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filler metal
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fine metal
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finishing metal
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first metal
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foamed metal
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fusible metal
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glass bubble-free metal
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glass metal
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hard metal
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head metal
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heat-transfer metal
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heavy metal
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high-density metal
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host metal
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hot metal
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image metal
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jobbing metal
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ladle-degassed metal
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laminated metal
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lead-base white metal
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light metal
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matrix metal
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molten metal
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Monel metal
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native metal
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noble metal
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nonferromagnetic metal
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nonferrous metal
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nonimage metal
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nonreactive metal
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one-dimensional metal
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organic metal
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pallet metal
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parent metal
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pickled sheet metal
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pig metal
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piped metal
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plated metal
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platinum metal
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pot metal
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powdered metal
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precious metal
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prerefined metal
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printer's metal
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rare-earth metals
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raw metal
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reactive metal
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receding metal
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recirculated metal
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reclaimed metal
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red metal
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refined metal
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refractory metal
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reinforcement metal
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rejected metal
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resistance metal
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road metal
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rolled metal
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sandy metal
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scrap metal
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second metal
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sheet metal
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shotted metal
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shot metal
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sintered powder metal
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skull-cast metal
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slush metal
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soluble metal
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solvent metal
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space metal
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speculum metal
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structural metal
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superconducting metal
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synthetic metal
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temperature-sensitive metals
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terne metal
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thermostat metal
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tinning metal
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transition metal
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type metal
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underlying metal
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unstainable metal
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valve metal
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VAR metal
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VIM metal
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virgin metal
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washed metal
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waste metal
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weld metal
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white metal
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work-hardened metal
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wrought metal
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yellow metal
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zone-melted metal
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zone metal -
8 paste
активная масса (для аккумулятора); паста; клей; мастика; замазка; густотертая краска; мятая глина; II приклеивать; замазывать- insulating paste - jointing paste - soluble oil paste -
9 Crookes, Sir William
SUBJECT AREA: Electricity[br]b. 17 June 1832 London, Englandd. 4 April 1919 London, England[br]English chemist and physicist who carried out studies of electrical discharges and cathode rays in rarefied gases, leading to the development of the cathode ray tube; discoverer of the element thallium and the principle of the Crookes radiometer.[br]Crookes entered the Royal College of Chemistry at the age of 15, and from 1850 to 1854 held the appointment of Assistant at the college. In 1854 he became Superintendent of the Meteorological Department at the Radcliffe Observatory in Oxford. He moved to a post at the College of Science in Chester the following year. Soon after this he inherited a large fortune and set up his own private laboratory in London. There he studied the nature of electrical discharges in gases at low pressure and discovered the dark space (later named after him) that surrounds the negative electrode, or cathode. He also established that the rays produced in the process (subsequently shown by J.J.Thompson to be a stream of electrons) not only travelled in straight lines, but were also capable of producing heat and/or light upon impact with suitable anode materials. Using a variety of new methods to investigate these "cathode" rays, he applied them to the spectral analysis of compounds of selenium and, as a result, in 1861 he discovered the element thallium, finally establishing its atomic weight in 1873. Following his discovery of thallium, he became involved in two main lines of research: the properties of rarified gases, and the investigation of the elements of the "rare earths". It was also during these experiments that he discovered the principle of the Crookes radiometer, a device in which light is converted into rotational motion and which used to be found frequently in the shop windows of English opticians. Also among the fruits of this work were the Crookes tubes and the development of spectacle lenses with differential ranges of radiational absorption. In the 1870s he became interested in spiritualism and acquired a reputation for his studies of psychic phenomena, but at the turn of the century he returned to traditional scientific investigations. In 1892 he wrote about the possibility of wireless telegraphy. His work in the field of radioactivity led to the invention of the spinthariscope, an early type of detector of alpha particles. In 1900 he undertook investigations into uranium which led to the study of scintillation, an important tool in the study of radioactivity.While the theoretical basis of his work has not stood the test of time, his material discoveries, observations and investigations of new facts formed a basis on which others such as J.J. Thomson were to develop subatomic theory. His later involvement in the investigation of spiritualism led to much criticism, but could be justified on the basis of a belief in the duty to investigate all phenomena.[br]Principal Honours and DistinctionsKnighted 1897. Order of Merit 1910. FRS 1863. President, Royal Society 1913–15. Honorary LLD Birmingham. Honorary DSc Oxon, Cambridge, Sheffield, Durham, Ireland and Cape of Good Hope.Bibliography1874, On Attraction and Repulsion Resulting from Radiation.1874, "Researches in the phenomenon of spiritualism", Society of Metaphysics; reprinted in facsimile, 1986.For many years he was also Proprietor and Editor of Chemical News.Further ReadingE.E.Fournier D'Albe, 1923, Life of Sir William Crookes. Who Was Who II, 1916–28, London: A. \& C. Black. T.I.Williams, 1969, A Biographical Dictionary of Scientists. See also Braun, Karl Ferdinand.KF / MG
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