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Dr. Mehdi Nemati
Russian Papers
Physiology of flowering in plants
Postharvest Physiological Disorders
Conferences
Technology of Nanofibers (MSc)
NUMERICAL INVESTIGATION OF THE EFFECTS OF A CONSTANT MAGNETIC FIELD ON THE CONVECTIVE HEAT TRANSFER OF A WATER-BASED NANOFLUID CONTAINING CARBON NANOTUBES AND Fe3O4 NANOPARTICLES IN AN ANNULAR HORIZONTAL TUBE IN A LAMINAR FLOW REGIME
Effects of complete substitution of dietary grain and protein sources with by-products on the production performance of mid-lactation dairy cows fed diets based on barley silage under heat stress conditions
Effects of complete substitution of dietary grain and protein sources with by-products on the production performance of mid-lactation dairy cows fed diets based on barley silage under heat stress conditions
Effects of complete substitution of dietary grain and protein sources with by-products on the production performance of mid-lactation dairy cows fed diets based on barley silage under heat stress conditions
In situ growth of copper-based metal-organic framework on a helical shape copper wire as a sorbent in stir-bar sorptive extraction of fenthion followed by corona discharge ion mobility spectrometry
In situ growth of copper-based metal-organic framework on a helical shape copper wire as a sorbent in stir-bar sorptive extraction of fenthion followed by corona discharge ion mobility spectrometry
Novel octanuclear copper(I) clusters [Cu8{(N)-(?4-S)}4(?3-I)2I2(PPh3)2] produced via reductive S-S bond cleavage of disulfide Schiff base ligands and their use as efficient heterogeneous catalysts in CuAAC click reaction
Novel octanuclear copper(I) clusters [Cu8{(N)-(?4-S)}4(?3-I)2I2(PPh3)2] produced via reductive S-S bond cleavage of disulfide Schiff base ligands and their use as efficient heterogeneous catalysts in CuAAC click reaction
Novel octanuclear copper(I) clusters [Cu8{(N)-(?4-S)}4(?3-I)2I2(PPh3)2] produced via reductive S-S bond cleavage of disulfide Schiff base ligands and their use as efficient heterogeneous catalysts in CuAAC click reaction