“Determination of mic ” 中國GB標準檢索結果 |
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GB/T 29783-2013 顢子顢气产品中六价铬的閻定 原子荧顓顓谱鎸鎷中英文畾) Determination of chromium(VI) in electrical and electronic products - Atomic fluorescence spectrometry |
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GB/T 29651-2013 锰矿石和锰精矿 全铁含量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Manganese ores and concentrates - Determination of total iron content - Flame atomic absorption spectrometric method |
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GB/T 13748.9-2013 镁及镁合金閵学分析方鎸 第9部分:铁含量閻定 邻二氮杂菲分顓顓度鎸鎷中英文畾) Chemical analysis methods of magnesium and magnesium alloys - Part 9:Determination of iron content - Orthopenanthroline spectrophotometric method |
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GB/T 13748.8-2013 镁及镁合金閵学分析方鎸 第8部分:稀土含量的閻定 重量鎸鎷中英文畾) Chemical analysis methods of magnesium and magnesium alloys - Part 8:Determination of rare earth content - Gravimetric method |
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GB/T 13748.7-2013 镁及镁合金閵学分析方鎸 第7部分:锆含量的閻定鎷中英文畾) Chemical analysis methods of magnesium and magnesium alloys - Part 7:Determination of zirconium content |
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GB/T 13748.4-2013 镁及镁合金閵学分析方鎸 第4部分:锰含量的閻定 高閻酸盐分顓顓度鎸鎷中英文畾) Chemical analysis methods of magnesium and magnesium alloys - Part 4:Determination of manganese content - Periodate spectrophotometric method |
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GB/T 13748.1-2013 镁及镁合金閵学分析方鎸 第1部分:铝含量的閻定鎷中英文畾) Chemical analysis methods of magnesium and magnesium alloys - Part 1:Determination of aluminium content |
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GB/T 13748.10-2013 镁及镁合金閵学分析方鎸 第10部分:闁含量的閻定 钼蓝分顓顓度鎸鎷中英文畾) Chemical analysis methods of magnesium and magnesium alloys - Part 10:Determination of silicon content - Molybdenum blue spectrophotometric method |
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GB/T 11064.4-2013 碳酸锂偟单水氢氧閵锂偟氯閵锂閵学分析方鎸 第4部分:钾量和钠量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of lithium carbonate,lithium hydroxide monohydrate and lithium chloride - Part 4: Determination of potassium and sodium content g Flame atomic absorption spectrometric method |
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GB/T 11064.3-2013 碳酸锂偟单水氢氧閵锂偟氯閵锂閵学分析方鎸 第3部分:氯閵锂量的閻定 顢位滴定鎸鎷中英文畾) Methods for chemical analysis of lithium carbonate,lithium hydroxide monohydrate and lithium chloride - Part 3: Determination of lithium chloride content - Potentiometric method |
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GB/T 11064.2-2013 碳酸锂偟单水氢氧閵锂偟氯閵锂閵学分析方鎸 第2部分:氢氧閵锂量的閻定 酸鏌滴定鎸鎷中英文畾) Methods for chemical analysis of lithium carbonate,lithium hydroxide monohydrate and lithium chloride - Part 2: Determination of lithium hydroxide content - Acid-alkali titrimetric method |
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GB/T 11064.1-2013 碳酸锂偟单水氢氧閵锂偟氯閵锂閵学分析方鎸 第1部分:碳酸锂量的閻定 酸鏌滴定鎸鎷中英文畾) Methods for chemical analysis of lithium carbonate,lithium hydroxide monohydrate and lithium chloride - Part 1: Determination of lithium carbonate content - Acid-alkali titrimetric method |
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GB/T 29644-2013 硫閵橡 N-佸基-β-萘胺含量的閻定 高紒液相色谱鎸鎷中英文畾) Rubber,vulcanized - Determination the content of N-phenyl-β-naphthylamine - High performance liquid chromatogramic method |
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GB/T 29556-2013 表面閵学分析 俄歇顢子能谱和X射线顓顢子能谱 横向分熷率偟分析面积和分析器所能检閻橀的样品面积的閻定鎷中英文畾) Surface chemical analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - determination of lateral resolution, analysis area, and sample area viewed by the analyser |
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GB/T 29607-2013 橡制品 镉含量的閻定 原子吸收顓谱鎸鎷中英文畾) Rubber product - Determination of cadmium content - Atomic absorption spectrometry |
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GB/T 29599-2013 纺织染整助剂 閵学需氧量(COD)的閻定鎷中英文畾) Textile dyeing and finishing auxiliaries - Determination of chemical oxygen demand(COD) |
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GB/T 4325.9-2013 钼閵学分析方鎸 第9部分:镍量的閻定 丁二酮肟分顓顓度鎸和火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 9: Determination of nickel content - Dimethylglyoxime spectrophotometry and flame atomic absorption spectrometry |
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GB/T 4325.8-2013 钼閵学分析方鎸 第8部分:钴量的閻定 钴试剂分顓顓度鎸和火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 8: Determination of cobalt content - 5-Cl-PADAB spectrophotometry and flame atomic absorption spectrometry |
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GB/T 4325.7-2013 钼閵学分析方鎸 第7部分:铁量的閻定 邻二氮杂菲分顓顓度鎸和顢感耦合等离子体发射顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 7: Determination of iron content - 1,10-phenanthroline spectrophotometry and inductively coupled plasma atomic emission spectrometry |
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GB/T 4325.6-2013 钼閵学分析方鎸 第6部分:砷量的閻定 原子荧顓顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 6: Determination of arsenic content - Atomic fluorescence spectrometry |
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GB/T 4325.5-2013 钼閵学分析方鎸 第5部分:锑量的閻定 原子荧顓顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 5: Determination of antimony content - Atomic fluorescence spectrometry |
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GB/T 4325.4-2013 钼閵学分析方鎸 第4部分:锡量的閻定 原子荧顓顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 4: Determination of tin content - Atomic fluorescence spectrometry |
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GB/T 4325.3-2013 钼閵学分析方鎸 第3部分:铋量的閻定 原子荧顓顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 3: Determination of bismuth content - Atomic fluorescence spectrometry |
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GB/T 4325.26-2013 钼閵学分析方鎸 第26部分:铝偟镁偟钙偟钒偟铬偟锰偟铁偟钴偟镍偟铜偟锌偟砷偟镉偟锡偟锑偟钨偟铅和铋量的閻定 顢感耦合等离子体质谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 26: Determination of aluminium,magnesium,calcium,vanadium,chromium,manganese,iron,cobalt,nickel,copper,zinc,arsenic,cadmium ,tin,antimony,tungsten,lead and bismuth contents |
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GB/T 4325.25-2013 钼閵学分析方鎸 第25部分:氢量的閻定 澶气熔融红外吸收鎸/热导鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 25: Determination of hydrogen content - Intert gas fusion infrared absorption method/thermal conductivity method |
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GB/T 4325.24-2013 钼閵学分析方鎸 第24部分:钨量的閻定 顢感耦合等离子体原子发射顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 24: Determination of tungsten content - Inductively coupled plasma atomic emission spectrometry |
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GB/T 4325.23-2013 钼閵学分析方鎸 第23部分:氧量和氮量的閻定 澶气熔融红外吸收鎸-热导鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 23: Determination of oxygen and nitrogen contents - Inert gas fusion-infrared absorption and thermal conductivity method |
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GB/T 4325.22-2013 钼閵学分析方鎸 第22部分:磷量的閻定 钼蓝分顓顓度鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 22:Determination of phosphorus content - Molybdenum blue spectrophotometry |
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GB/T 4325.2-2013 钼閵学分析方鎸 第2部分:镉量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 2: Determination of cadmium content - Flame atomic absorption spectrometry |
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GB/T 4325.21-2013 钼閵学分析方鎸 第21部分:碳量和硫量的閻定 高频燃烧红外吸收鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 21: Determination of carbon content and sulfur content - High frequency combustion-infrared absorption method |
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GB/T 4325.20-2013 钼閵学分析方鎸 第20部分:锰量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 20: Determination of manganese content - Flame atomic absorption spectrometry |
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GB/T 4325.19-2013 钼閵学分析方鎸 第19部分:铬量的閻定 二佸基碳酰二肼分顓顓度鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 19: Determination of chromium content - Diphenylcarbazide spectrophotometry |
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GB/T 4325.18-2013 钼閵学分析方鎸 第18部分:钒量的閻定 钽试剂分顓顓度鎸和顢感耦合等离子体原子发射顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 18: Determination of vanadium content - N-benzoyl-N-phenylhydroxylamine spectrophotometry and inductively coupled plasma atomic emission spectrometry |
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GB/T 4325.17-2013 钼閵学分析方鎸 第17部分:钛量的閻定 二安替比林甲烷分顓顓度鎸和顢感耦合等离子体原子发射顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 17: Determination of titanium content - Diantipyrylmethane spectrophotometry and inductively coupled plasma atomic emission spectrometry |
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GB/T 4325.16-2013 钼閵学分析方鎸 第16部分:钾量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 16: Determination of potassium content - Flame atomic absorption spectrometry |
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GB/T 4325.15-2013 钼閵学分析方鎸 第15部分:钠量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 15: Determination of sodium content - Flame atomic absorption spectrometry |
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GB/T 4325.14-2013 钼閵学分析方鎸 第14部分:镁量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 14: Determination of magnesium content - Flame atomic absorption spectrometry |
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GB/T 4325.13-2013 钼閵学分析方鎸 第13部分:钙量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 13: Determination of calcium content - Flame atomic absorption spectrometry |
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GB/T 4325.12-2013 钼閵学分析方鎸 第12部分:闁量的閻定 顢感耦合等离子体原子发射顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 12: Determination of silicon content - Inductively coupled plasma atomic emission spectrometry |
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GB/T 4325.1-2013 钼閵学分析方鎸 第1部分:铅量的閻定 石墨炉原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 1: Determination of lead content - Graphite furnace atomic absorption spectrometry |
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GB/T 4325.11-2013 钼閵学分析方鎸 第11部分:铝量的閻定 铬天青S分顓顓度鎸和顢感耦合等离子体原子发射顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 11: Determination of aluminum content - Chromazurol S spectrophotometry and inductively coupled plasma atomic emission spectrometry |
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GB/T 4325.10-2013 钼閵学分析方鎸 第10部分:铜量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of molybdenum - Part 10: Determination of copper content - Flame atomic absorption spectrometry |
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GB/T 29509.2-2013 载金炭閵学分析方鎸 第2部分:银量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of gold-loaded carbon - Part 2:Determination of silver content - Flame atomic absorption spectrometry |
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GB/T 29509.1-2013 载金炭閵学分析方鎸 第1部分:金量的閻定鎷中英文畾) Methods for chemical analysis of gold-loaded carbon - Part 1: Determination of gold content |
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GB/T 29492-2013 数字印刷材料用閵学品 三嗪B含量的閻定 反相高紒液相色谱鎸鎷中英文畾) Chemicals applied in digital printing materials - The determination of triazines B - Reversed phase high performance liquid chromatography |
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GB/T 8151.17-2012 锌精矿閵学分析方鎸 第17部分:锌量的閻定 氢氧閵物沉淀-Na2EDTA滴定鎸鎷中英文畾) Methods for chemical analysis of zinc concentrates - Part 17:Determination of zinc content - Hydroxide precipitation and Na2EDTA titrimetric method |
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GB/T 8151.14-2012 锌精矿閵学分析方鎸 第14部分:镍量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of zinc concentrates - Part 14: Determination of nickel content - The flame atomic absorption spectrometric method |
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GB/T 8151.13-2012 锌精矿閵学分析方鎸 第13部分:锗量的閻定 氢閵物发生-原子荧顓顓谱鎸和佸芴酮分顓顓度鎸鎷中英文畾) Methods for chemical analysis of zinc concentrates - Part 13: Determination of germanium content - Hydride generation-atomic fluorescence spectrometry and the phenyl fluorone spectrophptometric method |
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GB/T 8151.12-2012 锌精矿閵学分析方鎸 第12部分:银量的閻定 火焰原子吸收顓谱鎸鎷中英文畾) Methods for chemical analysis of zinc concentrates - Part 12: Determination of sliver content - The flame atomic absorption spectrometric method |
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GB/T 8151.1-2012 锌精矿閵学分析方鎸 第1部分:锌量的閻定 沉淀分离Na2EDTA滴定鎸和萃取分离Na2EDTA滴定鎸鎷中英文畾) Methods for chemical analysis of zinc concentrates - Part 1:Determination of zinc content - Precipitate separation-Na2EDTA titrimetric method and extractive separation-Na2EDTA titrimetric method |
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