Обозначение | Заглавие на русском языке | Статус | Язык документа | Цена (с НДС 20%) в рублях |
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Method for chemical analysis of tris(triphenylphosphine) rhodium(I) chloride—Part 1:The determination of rhodium content—Inductively coupled plasma atomic emission spectrometry
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Published |
На языке оригинала
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1670,00
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Method for chemical analysis of tris(triphenylphosphine) rhodium(I) chloride—Part 2:The determination of lead,iron,copper,palladium,platinum,aluminium,nickel,magnesium,zinc content—Inductively coupled plasma atomic emission spectrometry
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Published |
На языке оригинала
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1670,00
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Coatings for sintered neodymium iron boron permanent magnets
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Published |
На языке оригинала
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1786,00
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Hydrogen decrepitating neodymium iron boron permanent magnetic powder
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Published |
На языке оригинала
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1670,00
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Hot pressed neodymium iron boron permanent magnetic materials
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Published |
На языке оригинала
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2189,00
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Method for chemical analysis of iridium compounds—Part 1: Determination of iridium content—Electricity titration using ferrous sulfate
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Published |
На языке оригинала
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1670,00
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Methods for chemical analysis of iridium compounds—Part 2:Determination of silver, gold, platinum, palladium, rhodium, ruthenium, aluminium, copper, iron, nickel, lead, magnesium, manganese, tin, zinc, calcium, sodium, potassium, silicon content—Inductively coupled plasma atomic emission spectrometry
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Published |
На языке оригинала
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1670,00
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Chemical analysis methods for rare earth residue and waste water—Part 1:Determination of fluorine content—Ion selective electrode analysis
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На языке оригинала
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1670,00
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Chemical analysis methods for rare earth residue and waste water—Part 2:Determination of chemical oxygen demand(COD)
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Published |
На языке оригинала
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1786,00
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Chemical analysis methods for rare earth waste residue and waste water—Part 3: Determination of weak radioactivity(total activity of αandβ)
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Published |
На языке оригинала
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1670,00
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Chemical analysis methods for rare earth waste residue and waste water—Part 4: Determination of copper, zinc, lead, chromium, cadmium, barium, cobalt, manganese, nickel and titanium contents—Inductively coupled plasma emission spectrometry
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Published |
На языке оригинала
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1670,00
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Chemical analysis methods for rare earth residue and waste water—Part 5:Determination of ammonia nitrogen content
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Published |
На языке оригинала
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2189,00
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Method for chemical analysis of rhodium compounds—Part 1: Determination of rhodium content—Gravimetric method with hexaammine cobalt nitrate
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Published |
На языке оригинала
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1670,00
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Method for chemical analysis of rhodium compounds—Part 2: Determination of silver,gold,platinum,palladium,iridium,ruthenium,lead,nickel,copper,iron,tin,zinc,magnesium,manganese,aluminium,calcium,sodium,potassium,chromium and silicon contents—Inductively coupled plasma atomic emission spectrometry
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Published |
На языке оригинала
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1670,00
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Lanthanum cerium-magnesium alloy
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Published |
На языке оригинала
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1382,00
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Cerium-aluminium alloys
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Published |
На языке оригинала
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1382,00
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Method for chemical analysis of high purity silver—Determination of trace impurity elements contents—Glow discharge mass spectrometry
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Published |
На языке оригинала
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1382,00
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Methods for chemical analysis of rhodium—Determination of platinum, ruthenium, iridium, palladium, gold, silver, copper, iron, nickel, aluminum, lead, manganese, magnesium, tin, zinc, silicon contents—Inductively coupled plasma mass spectrometry
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Published |
На языке оригинала
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1670,00
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Method for chemical analysis of iridium powder—Determination of silver, gold, palladium, rhodium, ruthenium, lead, platinum, nickel, copper, iron, tin, zinc, magnesium, manganese, aluminum contents —Inductively coupled plasma atomic emission spectrometry
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Published |
На языке оригинала
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1670,00
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Cerium dioxide nanomaterial
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Published |
На языке оригинала
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1670,00
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