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DIN EN 13697-2002 化学消毒剂和防腐剂.食品、工业、家庭和研究所使用的化学消毒剂杀菌和/或杀真菌性能定量无孔隙表面评定试验.无机械动作试验方法和要求(相2/阶段2)

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【英文标准名称】:Chemicaldisinfectantsandantiseptics-Quantitativenon-poroussurfacetestfortheevaluationofbactericidaland/orfungicidalactivityofchemicaldesinfectantsusedinfood,industrial,domesticandinstitutionalareas-Testmethodandrequirements
【原文标准名称】:化学消毒剂和防腐剂.食品、工业、家庭和研究所使用的化学消毒剂杀菌和/或杀真菌性能定量无孔隙表面评定试验.无机械动作试验方法和要求(相2/阶段2)
【标准号】:DINEN13697-2002
【标准状态】:现行
【国别】:德国
【发布日期】:2002-01
【实施或试行日期】:
【发布单位】:德国标准化学会(DIN)
【起草单位】:
【标准类型】:()
【标准水平】:()
【中文主题词】:效率;表面;家用的;试验方法;规范(验收);试验;悬浮试验;表面增长值;定义;食品;卫生学;工业;药液;防腐变剂;医学科学;定量分析;
【英文主题词】:
【摘要】:Thedocumentdescribesasurfacetestmethodforestablishingwhetheraproductproposedasadisinfectantinthefieldsdescribedinclause1hasordoesnothavebactericidaland/orfungicidalactivityonsurfaces.Thelaboratorytestcloselysimulatespracticalconditionsofapplication.Chosenconditions(contacttime,temperature,organismsonsurfaces...)reflectparameterswhicharefoundinpracticalsituationsincludingconditionswhichmayinfluencetheactionofdisinfectants.Eachuseconcentrationfoundfromthistestcorrespondstodefinedexperimentalconditions.
【中国标准分类号】:C12
【国际标准分类号】:11_080_20;71_100_35
【页数】:27P.;A4
【正文语种】:德语


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【英文标准名称】:Sodiumthiosulfate
【原文标准名称】:硫代硫酸钠
【标准号】:JISK8638-1994
【标准状态】:作废
【国别】:日本
【发布日期】:1994-07-01
【实施或试行日期】:
【发布单位】:日本工业标准调查会(JP-JISC)
【起草单位】:TechnicalCommitteeonChemicalAnalysis
【标准类型】:()
【标准水平】:()
【中文主题词】:钠;盐;硫代硫酸钠;硫代硫酸盐;化学试剂;钠无机化合物
【英文主题词】:
【摘要】:この規格は,試薬として用いるチオ硫酸ナトリウム()について規定する。注()別名:チオ硫酸ナトリウム(無水)
【中国标准分类号】:G17
【国际标准分类号】:71_040_30
【页数】:6P;A4
【正文语种】:日语


Product Code:SAE AIR1184
Title:Capacitive Fuel Gauging System Accuracies
Issuing Committee:Ae-5 Aerospace Fuel, Oil And Oxidizer Systems Committee
Scope: This report is intended to identify the necessary analytical tools to enable making value judgments for minimizing the various errors typically encountered in capacitance systems. Thus, in addition to identification of error sources, it describes the basic factors which cause the errors. When coupled with appraisals of the relative costs of minimizing the errors, this knowledge will furnish a tool with which to optimize gauging system accuracy, and thus, to obtain the optimum overall system within the constraints imposed by both design and budgetary considerations.Since the subject of capacitance accuracy is quite complex, no attempt is made herein to present a fully-comprehensive evaluation of all factors affecting gauging system accuracy. Rather, the major contributors to gauging system inaccuracy are discussed and emphasis is given to simplicity and clarify, somewhat at the expense of completeness.An overview of Capacitive Fuel Gauging operation is provided in the Appendix.