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- W2073617063 abstract "A recent study determined that mass uptake on a per unit area basis was related to the initial dose of xenobioticapplied, by an equation of the form: uptake (nmol mm-2) = a[ID]b at time t = 24 hours, where ID is the initial dose or themass of xenobiotic applied per unit area. The current study used this relationship (nmol mm-2 uptake versus ID; termed theuptake ratio) to establish the relative importance of species, AI, AI concentration (g L-1) and surfactant to uptake. Species,AI, its concentration, and surfactant all significantly affected the uptake ratio (explaining 51% of the deviance). Thepercentage variance explained by each factor ranged from 8.9% (AI) to 17% (surfactant). Overall, 88% of the deviance couldbe explained. More useful was the analysis of the individual xenobiotics, where the models explained 83%, 85%, and 94%of the variance in uptake ratio for DOG, 2,4-D, and epoxiconazole, respectively. In all cases, species, surfactant, and AIconcentration significantly affected the uptake ratio. However, there were differences in the relative importance of thesefactors among the xenobiotics studied. Concentration of AI increased in importance with increasing lipophilicity of AI, whilespecies was much less important for the most lipophilic compound. Surfactant became less important with increasinglipophilicity, although it was always important. The interaction between AI concentration and species was much moreimportant for the most polar compound, while the interaction between surfactant and species increased in importance withincreasing lipophilicity." @default.
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- W2073617063 date "2006-01-01" @default.
- W2073617063 modified "2023-10-06" @default.
- W2073617063 title "STATISTICAL ANALYSIS TO DETERMINE THE RELATIVE IMPORTANCE OF VARIABLES INVOLVED IN FOLIAR UPTAKE" @default.
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- W2073617063 doi "https://doi.org/10.13031/2013.20231" @default.
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