Skip to main content
People
Isfahan University of Technology
Finding Contents or People
Application of ionic liquid-TiO2 nanoparticle modified carbon paste electrode for the voltammetric determination of benserazide in biological samples
Application of ionic liquid-TiO2 nanoparticle modified carbon paste electrode for the voltammetric determination of benserazide in biological samples
Hydrothermal synthesis characterization and optical properties of 3D flower like indium sulfide nanostructures
Sensitive voltammetric determination of diclofenac using room-temperature ionic liquid-modified carbon nanotubes paste electrode
Free Turbulent Flow Emanating from a Large Plane Square Nozzle A Theoretical and Experimental Study
controllable synthesis of metastable tetragonal zirconia nanocrystals using citric acid assisted sol-gel method
The Effect of Crystallinity of Carbon Source on Mechanically Activated Carbothermic Synthesis of Nano-Sized SiC Powders
The Effect of Crystallinity of Carbon Source on Mechanically Activated Carbothermic Synthesis of Nano-Sized SiC Powders
The Effect of Crystallinity of Carbon Source on Mechanically Activated Carbothermic Synthesis of Nano-Sized SiC Powders
The Effect of EDTA on the Synthesis of Ni Ferrite Nanoparticles
The Effect of EDTA on the Synthesis of Ni Ferrite Nanoparticles
Effects of pH and sintering temperature on the synthesis and electrical properties of the bilayered LaSr2Mn2O7 manganite prepared by the sol gel process
Determining and Prioritization of Creative Opportunities Case Study Beautification Organization of Isfahan
Synthesis and characterization of hierarchical ZnS architectures based nanoparticles in the presence of thioglycolic acid
Straightforward and green method for the synthesis of nanostructure poly(amide-imide)s-containing benzimidazole and amino acid moieties by microwave irradiation
Pagination
First page
« First
Previous page
‹‹
…
Page
146
Page
147
Page
148
Page
149
Page
150
Page
151
Page
152
Page
153
Page
154
…
Next page
››
Last page
Last »
تحت نظارت وف بومی