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SAR and QSAR in Environmental Research|November 17, 2009
Quantitative structure-activity relationship (QSAR) for insecticides: development of predictive in vivo insecticide activity modelsP K Naik, T Singh, H SinghSAR and QSAR in Environmental Research|November 17, 2009
A baseline inhalation toxicity model for narcosis in mammalsG D Veith, E P Petkova, K B WallaceSAR and QSAR in Environmental Research|November 8, 2005
External validation of the biodegradability prediction model CATABOL using data sets of existing and new chemicals under the Japanese Chemical Substances Control LawY Sakuratani, J Yamada, K Kasai, et al.SAR and QSAR in Environmental Research|November 8, 2005
A new strategy for using supervised artificial neural networks in QSARJ DevillersSAR and QSAR in Environmental Research|November 8, 2005
Prediction of CL-20 chemical degradation pathways, theoretical and experimental evidence for dependence on competing modes of reactionM Qasim, H Fredrickson, P Honea, et al.SAR and QSAR in Environmental Research|October 20, 2005
Comparison of subcooled liquid vapor pressures of polychlorinated dibenzo-p-dioxins and dibenzofurans predicted by QSPR and GC-RI methodsG H Ding, J W Chen, X L Qiao, et al.SAR and QSAR in Environmental Research|October 20, 2005
Two-step models to predict binding affinity of chemicals to the human estrogen receptor alpha by three-dimensional quantitative structure-activity relationships (3D-QSARs) using receptor-ligand docking simulationY Akahori, M Nakai, Y Yakabe, et al.SAR and QSAR in Environmental Research|July 6, 2000
Cellular automata models of chemical systemsL B Kier, C K Cheng, P G SeyboldSAR and QSAR in Environmental Research|July 6, 2000
Prediction of programmed-temperature retention values of naphthas by artificial neural networksJ H Qi, X Y Zhang, R S Zhang, et al.SAR and QSAR in Environmental Research|February 16, 2000
Chemical diversity approach for evaluating mechanistic relatedness among toxicological phenomenaN Pollack, A R Cunningham, G Klopman, et al.Pageof 134