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Preparation and characterization of new thermally stable and optically active poly(ester-imide)s by direct polycondensation with thionyl chloride in pyridine
Transport properties of a high porosity model food at above and sub-freezing temperature. Part 1) Thermophysical properties and water activity
Evaluation of phenolic content and antioxidant activity of Iranian caraway in comparison with clove and BHT using model systems and vegetable oil
Biological Activity of the Nanostructure Poly(Ester- Imide)s Containing a Tyrosine-Based Diol Wheat Seedling Growth and Fungal Biodegradation
Biological Activity of the Nanostructure Poly(Ester- Imide)s Containing a Tyrosine-Based Diol Wheat Seedling Growth and Fungal Biodegradation
Molten Tetrabutylammonium Bromide as Eco-Friendly Media for the Synthesis of Optically Active and Thermal Stable Polyamides under Microwave Irradiation
Alleviation of drought stress on rose geranium Pelargonium graveolens (L.) Herit. in terms of antioxidant activity and secondary metabolites by mycorrhizal inoculation
Alleviation of drought stress on rose geranium Pelargonium graveolens (L.) Herit. in terms of antioxidant activity and secondary metabolites by mycorrhizal inoculation
Synthesis and characterization of novel optically active and photoactive aromatic polyesters containing 1 8-naphthalimidyl pendant group by step-growth polymerization
Studies on synthesis and in vitro biodegradability of novel optically active nanostructure poly(ester-imide)s containing L-phenylalanine and L-isoleucine linkages
Studies on synthesis and in vitro biodegradability of novel optically active nanostructure poly(ester-imide)s containing L-phenylalanine and L-isoleucine linkages
Optically Active Poly(amide-imide)/TiO2 Bionanocomposites Containing L-isoleucine Amino Acid Moieties Synthesis Nanostructure and Properties
Synthesis and degradation study of novel polyamides derived from a biologically active aromatic diacid monomer 5-(2-phthalimidoethanesulfonamido) isophthalic acid
Prediction of Soil Enzymes Activity by Digital Terrain Analysis Comparing Artificial Neural Network and Multiple Linear Regression Models
Prediction of Soil Enzymes Activity by Digital Terrain Analysis Comparing Artificial Neural Network and Multiple Linear Regression Models
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تحت نظارت وف بومی