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Non-Linear Finite Element Method
Introduction to Boundary Element Method
Dr. Mahdi Nasimifar
Design and fabrication of triboelectric nanogenerators using nylon 66 nanofibers, carbon nanotubes and non-woven polypropylene for energy harvesting from periodic compressive stress
A Combined Model Design for Developing and Optimizing Product Platform Architecture Considering Parameters of DFV, DFC, DFSC, and DFAv case study: phased array radar
Synthesis of n-butyl levulinate as a fuel additive using bimetallic Zr/Al catalysts supported on mesoporous silica: Applying experimental design to optimize the reaction conditions
Synthesis of n-butyl levulinate as a fuel additive using bimetallic Zr/Al catalysts supported on mesoporous silica: Applying experimental design to optimize the reaction conditions
Robotic Home-Based Rehabilitation Systems Design: From a Literature Review to a Conceptual Framework for Community-Based Remote Therapy During COVID-19 Pandemic
Design and Synthesis of Gatekeeper Coated Dendritic Silica/Titania Mesoporous Nanoparticles with Sustained and Controlled Drug Release Properties for Targeted Synergetic Chemo-Sonodynamic Therapy
Optimization of a New Activated Carbon Based Sorbent for On-line Preconcentration and Trace Determination Of Nickel In Aquatic Samples Using Mixed-level Orthogonal Array Design
Control Design Method for Obtaining Special Performances in Discrete-Time Linear Switched Systems with Time-Varying Delay Based on the Average Dwell-Time Approach
Control Design Method for Obtaining Special Performances in Discrete-Time Linear Switched Systems with Time-Varying Delay Based on the Average Dwell-Time Approach
Pressurized Hot Water Extraction of Benzoic Acid and Phthalic Anhydride from Petrochemical Waste Using a Modified Supercritical Fluid Extractor and Factorial Design for Optimization
Pressurized Hot Water Extraction of Benzoic Acid and Phthalic Anhydride from Petrochemical Waste Using a Modified Supercritical Fluid Extractor and Factorial Design for Optimization
A novel approach to design and fabricate foams with optimized fluid flow in porous media by combining the methods of computational fluid dynamics, machine learning and additive manufacturing