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Determination of Xylene and Toluene by Solid-Phase Microextraction Using Au Nanoparticles Thiol Silane Film Coupled to Ion Mobility Spectrometry
Determination of Xylene and Toluene by Solid-Phase Microextraction Using Au Nanoparticles Thiol Silane Film Coupled to Ion Mobility Spectrometry
Lutetium(III) Ions Determination in Biological and Environmental Samples by a Lutetium(III) Sensor Based on N N -bis(2-Pyridinecarboxamide)-1 3-benzene as a Sensing Material
Application of single-drop microextraction combined with in-microvial derivatization for determination of acidic herbicides in water samples by gas chromatography mass spectrometry
Host range of an iranian isolate of watermelon chlorotic stunt virus as determined by whitefly - mediated inoculation and agroifetion and its geographical distribution
Extending the Dynamic Range of the Determination of Copper by Adsorption Differential Pulse Stripping Method Using a Principal componet artificial neural network
Extending the Dynamic Range of the Determination of Copper by Adsorption Differential Pulse Stripping Method Using a Principal componet artificial neural network
Determining relationships among seed yield yield components and morpho-phenological traits using multivariate analyses in safflower (Carthamus tinctorious L.)
Determining relationships among seed yield yield components and morpho-phenological traits using multivariate analyses in safflower (Carthamus tinctorious L.)
Determining relationships among seed yield yield components and morpho-phenological traits using multivariate analyses in safflower (Carthamus tinctorious L.)
N-(3 4-Dihydroxyphenethyl)-3 5-dinitrobenzamide-Modified Multiwall Carbon Nanotubes Paste Electrode as a Novel Sensor for Simultaneous Determination of Penicillamine Uric acid and Tryptophan
N-(3 4-Dihydroxyphenethyl)-3 5-dinitrobenzamide-Modified Multiwall Carbon Nanotubes Paste Electrode as a Novel Sensor for Simultaneous Determination of Penicillamine Uric acid and Tryptophan
Carbon Paste Electrode Prepared from Chemically Modified Multiwall Carbon Nanotubes for the Voltammetric Determination of Isoprenaline in Pharmaceutical and Urine Samples
Carbon Paste Electrode Prepared from Chemically Modified Multiwall Carbon Nanotubes for the Voltammetric Determination of Isoprenaline in Pharmaceutical and Urine Samples
Liquid three-phase microextraction based on hollow fiber for highly selective and sensitive determination of desipramine using an ion selective electrode