SITARAM DASH
Vellore Institute of Technology University, Indira Gandhi Centre for Atomic Research, Ravenshaw University, Utkal University, University of Madras
About
Dr Sitaram Dash graduated from BARC Training School in advanced PG Training Course in Nuclear Science and Engineering. He completed his close to 35 years of tenure in Indira Gandhi Centre for Atomic Research as an Outstanding Scientist and Head, Surface & Nano-Science Division. He was a Senior Professor in Homi Bhabha National Institute. From 2017-2023, He worked as a Professor in School of Mechanical Engineering, Vellore Institute of Technology, Vellore. Presently he is based in Bangalore as a Technical Advisor and STEM Researcher with specializationin area of Materials & Surface Engineering, Tribology, Failure Analysis and Industrial Safety
Employment
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Vellore Institute of Technology University PROFESSOR2017 - 2023
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Indira Gandhi Centre for Atomic Research SCIENTIFIC OFFICER OUTSTANDING SCIENTIST1982 - 2017
Education
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Ravenshaw University Bachelor of Science
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Utkal University MASTER OF SCIENCE
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University of Madras Ph.D
Projects & Funding
Projects & funding information is unavailable.
Publications (280)
- Recent developments on titanium based mono and multilayer nitride films deposited through HiPIMS Save
- Development of cylindrical magnetron sputtering apparatus for large area TiN thin film coatings Save
- Recent Developments and Applications of TiN-Based Films Synthesized by Magnetron Sputtering Save
- Reviewing Performance Measures of the Die-Sinking Electrical Discharge Machining Process: Challenges and Future Scopes Save
- Design and Simulation of Wind Turbine Blades Save
- Differences in hydrogen absorption over Pd and Pt functionalized CVD-grown GaN nanowires Save
- In-situ formation of Ge-rich SiGe alloy by electron beam evaporation and the effect of post deposition annealing on the energy band gap Save
- Au induced crystallization and layer exchange in a-Si/Au thin film on glass below and above the eutectic temperature Save
- Band alignment and charge transfer pathway in three phase anatase-rutile-brookite TiO2 nanotubes: An efficient photocatalyst for water splitting Save
- Charged vacancy induced enhanced piezoelectric response of reactive assistive IBSD grown AlN thin films Save