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Numerical and experimental studies on a new metallic-yielding pistonic damper based on pure-bending flexural yielding mechanism
The effects of pore size and heat treatment on compression and corrosion behaviors of Ti-6Al-4V sheet-based gyroid implants fabricated by laser powder-bed fusion process
The effects of pore size and heat treatment on compression and corrosion behaviors of Ti-6Al-4V sheet-based gyroid implants fabricated by laser powder-bed fusion process
The Efficiency of the Ordinary Polypropylene Fiber in Producing One-part Alkali-Activated Slag Composites with Strain-Hardening Behavior
Mupirocin loaded core-shell pluronic-pectin-keratin nanofibers improve human keratinocytes behavior, angiogenic activity and wound healing
Mupirocin loaded core-shell pluronic-pectin-keratin nanofibers improve human keratinocytes behavior, angiogenic activity and wound healing
Encapsulation of Coenzyme Q10 by Gelatin-basil Seed Mucilage Using Complex Coacervation: Optimization, Physicochemical Characterizations and Milk Fortification
Encapsulation of Coenzyme Q10 by Gelatin-basil Seed Mucilage Using Complex Coacervation: Optimization, Physicochemical Characterizations and Milk Fortification
Developing the Regional Nonstationary IDF Curves Using NGN-ProNEVA Framework
Developing the Regional Nonstationary IDF Curves Using NGN-ProNEVA Framework
The effects of external magnetic fields on the flow and heat transfer in a three-dimensional microchannel
Design and fabrication of fibrous media to facilitate autogenous smart self-healing properties in cracked-cementitious structures using polyethylene glycol (PEG) and silicon dioxide nanoparticles
Design and fabrication of fibrous media to facilitate autogenous smart self-healing properties in cracked-cementitious structures using polyethylene glycol (PEG) and silicon dioxide nanoparticles
Design and fabrication of fibrous media to facilitate autogenous smart self-healing properties in cracked-cementitious structures using polyethylene glycol (PEG) and silicon dioxide nanoparticles
A DFT study on 2X- imidazole derivatives (X = OH, NH2, and SH) as corrosion inhibitors on Cu surfaces: Tautomerism effect