VG
Vishal Gupta, Ph.D
Thapar Institute of Engineering and Technology, Maharishi Markandeshwar University, Indian Institute of Technology Delhi, University of Petroleum and Energy Studies, Punjab Technical University
Employment
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Thapar Institute of Engineering and Technology Associate Professor2025 - Present
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Thapar Institute of Engineering and Technology Assistant Professor2018 - 2025
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Maharishi Markandeshwar University Associate Professor2017 - 2018
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University of Petroleum and Energy Studies Assistant Professor2017 - 2017
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Indian Institute of Technology Delhi Research Scholar / Ph.D Student2013 - 2016
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Maharishi Markandeshwar University Assistant Professor2007 - 2012
Education
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Indian Institute of Technology Delhi Ph.D in Production / Biomedical2013 - 2016
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Maharishi Markandeshwar University Master of Technology in CAD/CAM2008 - 2011
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Punjab Technical University Bachelor of Technology2003 - 2007
Projects & Funding
Projects & funding information is unavailable.
Publications (88)
- Recent advances in PLA polymer–rice husk–coconut powder biocomposites for sustainable 3D printing applications Save
- Multi-response Optimization and Experimental Investigation of 3D Printed Parts Save
- Deep learning-based temperature prediction during rotary ultrasonic bone drilling Save
- Statistical and Experimental Study of Lightweight 3D-Printed Bolts Using Stereolithography Process Save
- Enhancing punch shear strength of FDM-fabricated PLA specimens through ultrasonic-assisted Polydopamine coating Save
- Engineering in healthcare: a comprehensive review on 3D‐printed biopolymer‐based implants Save
- AI in Parkinson’s Disease: A Short Review of Machine Learning Approaches for Diagnosis Save
- Electrochemical Biosensing in Smart Orthopedic Implants: Functional Materials and Interfacial Mechanisms Save
- Efficiency Takes Flight: 3D-Printed A2212 Brushless Direct Current Outrunner Motor Propelling Next-Gen Drone Deliveries Save
- Investigating the Influence of Additive Manufacturing and Ultrasonic Coating Parameters on Biopolymeric Scaffold Performance Using Response Surface Methodology Save