Pranesh Roy
Indian Institute of Technology Dhanbad, The University of Arizona, Indian Institute of Science
About
I am currently working as an Assistant Professor at Indian Institute of Technology (Indian School of Mines) (IIT-ISM) Dhanbad. Prior to that, I worked as a Postdoctoral Research Associate in The University of Arizona, USA. I also worked as Indian Institute of Science (IISc) Research Associate in Civil Engineering Department, IISc Bangalore.
I have completed my Ph.D. from the Civil Engineering Department, Indian Institute of Science, Bangalore. Prior to that, I have obtained M.Tech. in Structural Engineering from Indian Institute of Technology, Delhi. I have also completed my B.E. in Civil Engineering from Jadavpur University, Kolkata.
Employment
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Indian Institute of Technology Dhanbad Assistant Professor - Grade I2023 - Present
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Indian Institute of Technology Dhanbad Assistant Professor - Grade II2021 - 2023
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The University of Arizona Postdoctoral Research Associate2019 - 2021
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Indian Institute of Science IISc Research Associate2018 - 2019
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (31)
- Peridynamics modeling and experimental investigation of wave isolation in shells and mechanical metasurfaces Save
- An electromechanical coupled peridynamics for investigating dynamic behavior of piezoelectric material Save
- Peridynamics modeling of multi-shell structures: Application to metasurfaces Save
- Peridynamics beam plasticity theory: Yield surface for general cross-sectional geometry Save
- Peridynamics model of viscoelasticity for beams and lattice structures Save
- Riemannian geometry based peridynamics computational homogenization method for cellular metamaterials Save
- Peridynamics model of torsion-warping: Application to lattice beam structures Save
- Finite deformation peridynamics shell theory: Application to mechanical metasurfaces Save
- Peridynamics contact model: Application to healing using phase field theory Save
- A finite deformation micropolar peridynamic theory and its application to metamaterials Save