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Demiral Akbar
Also published under:D. Akbar
Affiliation
Department of Mechanical Engineering, OSTIM Technical University, Ankara, Turkey
Topic
Electrode,Electron Density,Gas Pressure,Numerical Simulations,Cathode Region,Changes In The Spatial Distribution,Collision Frequency,Constant Pressure,Dark Space,Device Structure,Dielectric Constant,Diffusion Current,Discharge Current,Discharge Lamp,Dual Mode,Dynamic Approach,Dynamic Range,Elastic Collisions,Electromagnetic Analysis,Electromagnetic Radiation,Electromagnetic Simulation,Electromagnetic Wave,Electromagnetic Wave Propagation,Electron Energy,Electron Position,Electron Temperature,Emission Intensity,Emission Spectra,Excited Atoms,Far-infrared,Fast Detection,Field Images,Field Spectroscopy,Finite Element Method,Frequency Response,Frequency Selective Surface,Glass Wall,Glow-discharged,High Frequency Power,High Power,High Pressure,High-density Polyethylene,Host Material,Increase In Power,Increase In Response,Increased Electron Density,Inelastic Collisions,Ion Flux,Ionic Reaction,Linear Response,
Biography
Demiral Akbar was a researcher and an expert in many national and international projects. He mainly contributed to many national and international projects: Turkish Accelerator Center Project (TAC), Ankara; Forschungszentrum Jülich GmbH-Germany Research Center (TEXT), Jülich, Germany; and the Helmholtz-Zentrum Dresden-Rossendorf (FEL-Free Electron Laser), Dresden, Germany, are some of the centers where these projects are. During the last four years, he has participated and integrated coordination teams of research and development projects in collaborations with the industry. He has been actively involved in the development and installation of many solar energy and renewable energy and energy storage systems for national and international companies. He is currently a Professor with the Mechanical Engineering Department, OSTIM Technical University, Ankara, Turkey, where he is involved in the fields of plasma and manufacturing technology, energy, and industrial management scientific areas. His research interests include the development of models to support decision making, comparative analysis, and best practices of implementation in the scope of life cycle engineering, lean manufacturing, and Industry 4.0.