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Developing an efficient approach for preparation of high-performance visible-light assisted ethanol electro-oxidation materials based on Pd, Pt and Pd-Pt nanoparticles supported on iron doped titania nanotube films
High performance single stage power factor correction circuit
Preparation and characterization of carbon felt/carbon composites by chemical vapor infiltration process
Preparation and characterization of carbon felt/carbon composites by chemical vapor infiltration process
The kinetics and mechanism of B2O3 formation from the chemically-synthesized HBO2 under non-isothermal conditions
The kinetics and mechanism of B2O3 formation from the chemically-synthesized HBO2 under non-isothermal conditions
Polylactic Acid PLA)/High-ratio Natural Kenaf Fiber Biocomposite Sheets Processed by Calendering Melt Mixing Technique
Evaluation of TiAl3 Intermetallic Formation Mechanism and Revolution of Annealing Texture in Al/Ti Powder/Al Laminate Composite Fabricated by Cold Roll Bonding and Post-Annealing Treatment
Evaluation of TiAl3 Intermetallic Formation Mechanism and Revolution of Annealing Texture in Al/Ti Powder/Al Laminate Composite Fabricated by Cold Roll Bonding and Post-Annealing Treatment
Fully Soft-Switched Non-Isolated High Step-Down DC-DC Converter With Reduced Voltage Stress and Expanding Capability
Fully Soft-Switched Non-Isolated High Step-Down DC-DC Converter With Reduced Voltage Stress and Expanding Capability
Improvement in Fracture Toughness and Impact Resistance of E-Glass/Epoxy Composites Using Layers Composed of Hollow Polyethylene Terephthalate Fibers
Improvement in Fracture Toughness and Impact Resistance of E-Glass/Epoxy Composites Using Layers Composed of Hollow Polyethylene Terephthalate Fibers
Improvement in Fracture Toughness and Impact Resistance of E-Glass/Epoxy Composites Using Layers Composed of Hollow Polyethylene Terephthalate Fibers
Design of a pDNA nanocarrier with ascorbic acid modified chitosan coated on superparamagnetic iron oxide nanoparticles for gene delivery
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تحت نظارت وف بومی