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定量结构保留相关性
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     Correlativity of Quantification Structures and Gas Chromatographic Retention Index of Esters
     酯的定量结构与色谱保留指数相关性
短句来源
     Quantitative Structure-Chromatographic Retention Relationships of Hydrocarbons on Different Polar Stationary Phases
     烃类化合物在不同色谱柱上的定量结构-保留相关性研究
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     Quantitative Structure-property Relationship Study on the Analysis of Retention Index of Orgonic Compounds in Gas Chromatography
     有机物气相色谱保留指数的定量结构与性质相关性研究
短句来源
     Studies on Quantitative Structure-Retention Index Relationships For Hydrocarbons and Their Derivates
     烃及其衍生物气相色谱保留指数的定量结构相关性研究
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     Study on the quantitative structure-retention relationship of alkanes, alcohols and ethers
     烷烃、醇、醚的定量结构保留相关性(QSRR)研究
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  quantitative structure-retention relationship
The quantitative structure-retention relationship is adopted for the simulation and for the establishment of feasible solutions of the problems.
      
A quantitative structure-retention relationship has been established between Hammett's constants and the solutes projection on the first factorial axis of CFA.
      
Quantitative structure-retention relationship (QSRR) calculations are currently limited to the ideal case of the isolated solute molecule, i.e.
      
The results obtained in this work provides evidence for the great potential of the topological approach for the development of quantitative structure-retention relationship (QSRR) models.
      
Quantitative structure-retention relationship (QSRR) models were constructed for the GC×GC-TOFMS retention time of 209 polychlorinated biphenyl (PCB) congeners.
      
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  quantitative structure-retention relationships
Quantitative Structure-Retention Relationships Applied to Reversed-Phase High-Perfromance Liquid Chromatography
      
A quantitative structure-retention relationships (QSRR) approach, as one of the all-important areas in modern chemical science, gives knowledge that is practical and necessary for drug design, combinatorial, and medicinal chemistries.
      
The results broaden the theoretical basis for the development of quantitative structure-retention relationships to be used for the prediction or interpretation of retention data in reversed-phase chromatography.
      
Quantitative structure-retention relationships for the investigation of the retention mechanism in high performance liquid chrom
      
Polyethylene-coated silica and zirconia stationary phases in view of quantitative structure-retention relationships
      
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