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Researcher
- Yong Chae Lim
- Rangasayee Kannan
- Yaosuo Xue
- Zhili Feng
- Adam Stevens
- Alexandre Sorokine
- Brian Post
- Bryan Lim
- Clinton Stipek
- Daniel Adams
- Fei Wang
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- Jian Chen
- Jiheon Jun
- Peeyush Nandwana
- Phani Ratna Vanamali Marthi
- Philipe Ambrozio Dias
- Priyanshi Agrawal
- Rafal Wojda
- Roger G Miller
- Ryan Dehoff
- Sarah Graham
- Sreenivasa Jaldanki
- Sudarsanam Babu
- Suman Debnath
- Sunil Subedi
- Taylor Hauser
- Tomas Grejtak
- Viswadeep Lebakula
- Wei Zhang
- William Peter
- Yiyu Wang
- Yonghao Gui
- Yukinori Yamamoto

A finite element approach integrated with a novel constitute model to predict phase change, residual stresses and part deformation.

Understanding building height is imperative to the overall study of energy efficiency, population distribution, urban morphologies, emergency response, among others. Currently, existing approaches for modelling building height at scale are hindered by two pervasive issues.

A new nanostructured bainitic steel with accelerated kinetics for bainite formation at 200 C was designed using a coupled CALPHAD, machine learning, and data mining approach.

Measurements of grid voltage and current are essential for the optimal operation of the grid protection and control (P&C) systems.

The technologies provide a coating method to produce corrosion resistant and electrically conductive coating layer on metallic bipolar plates for hydrogen fuel cell and hydrogen electrolyzer applications.

Welding high temperature and/or high strength materials for aerospace or automobile manufacturing is challenging.

Multi-terminal DC (MTdc) systems based on high-voltage DC (HVDC) transmission technology is an upcoming concept. In such systems, either asymmetric monopole or bi-pole systems are generally employed. Such systems are not suitable for easy expansion.

Stability performance of interconnected power grids plays crucial roles on their secure operation to prevent cascading failure and blackout.