Prof. (Dr.) Kulwant Singh
Shri Vishwakarma Skill University, Manipal University Jaipur, National Institute of Technology Calicut, Tezpur University School of Engineering, BK Birla Institute of Engineering and Technology
About
Dr. Kulwant Singh is currently a Professor at Shri Vishwakarma Skill University, Palwal, Haryana. He has conferred a doctorate from NIT Calicut in collaboration with CSIR-CEERI, Pilani in 2015. With a flair for research and a hands-on approach, he acquired expertise in Micro & Nanoelectronics, device design, and fabrication of MEMS/NEMS sensors. He has developed various process technology for MEMS device fabrication. He is also a reviewer for various world recognized SCI indexed Journals; Sensors and Actuators Physical (Elsevier), Materials Science in Semiconductor Processing (Elsevier), Flow Measurement and Instrumentation (Elsevier), Science and Engineering of Composite Materials (DE Gruyter), IEEE Transactions on Industrial Electronics, Microsystem Technology (Springer) etc. He has a multi-dimensional problem solving approach towards work.
Employment
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Shri Vishwakarma Skill University Professor2024 - Present
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Manipal University Jaipur Associate Professor2017 - 2024
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BK Birla Institute of Engineering and Technology Associate Professor2014 - 2017
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SRM University - Delhi Campus Assistant Professor2008 - 2010
Education
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National Institute of Technology Calicut Ph.D.2010 - 2015
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Tezpur University School of Engineering M.Tech. (Electronics Design and Technology )2006 - 2008
Projects & Funding
Projects & funding information is unavailable.
Publications (61)
- Development and analysis of flexible high-performance piezoelectric nanogenerators using optimized P(VDF-TrFE)/rGO-NdMnO3 hybrid polymer nanocomposites Save
- Fabrication and Characterization of Coin Cell Supercapacitor Device Using PEDOT:PSS/MgO Polymer Nanocomposite as Active Material Save
- Iron-Ion Nanoparticles for Smart and Cost-Effective Energy Storage Cell Electrode Integration Using Novel Nano-Sedimentation Method Save
- Integration of silicon nanostructures for health and energy applications using MACE: a cost-effective process Save
- Sensitivity enhanced flexible capacitive pressure sensor microstructure optimization for biomedical applications Save
- Optimization of Newtonian fluid pressure in microcantilever integrated flexible microfluidic channel for healthcare application Save
- An efficient power extraction using artificial intelligence based machine learning model for SPV array reconfiguration in solar industries Save
- Analyzing the effectiveness of MEMS sensor and IoT in predicting wave height using machine learning models Save
- Calibration and optimization of FSR based smart walking assistance device Save
- An efficient microfluidic pressure sensing structure optimization using microcantilever integration Save