Executed hands-on experimental procedures using plasma s, including equipment setup, maintenance, and data acquisition to investigate the vacuum behavior of advanced lithium alloys.
Analyzed lithium alloy production workflows, identifying critical thermophysical and chemical properties to optimize performance for potential energy system applications.
Programmed custom Python pipelines leveraging NumPy, Pandas, and Matplotlib to process, analyze, and visualize experimental datasets, enhancing insight generation and reducing manual processing time.
Designed and prototyped precision components for vacuum plasma setups using SolidWorks and Fusion 360, improving apparatus integration and experimental repeatability.
Intern
Atomic Energy Research Insitute
06.2022 - 08.2022
Developed and refined Python-based computational models to simulate neutron flux distribution, heat transfer, and reactivity feedback within nuclear reactor cores, enhancing performance assessment and safety analysis.
Partnered with faculty and graduate researchers at Eötvös Loránd University to design experiments, collect data, and evaluate results, aligning simulation outputs with experimental benchmarks for advanced reactor studies.
Education
Bachelor of Science - Nuclear, Plasma, & Radiological Engineering
University of Illinois At Urbana-Champaign
Champaign, IL
05.2026
Skills
Python and MATLAB
Microsoft Office
Autodesk Fusion 360 and Solidworks
NumPy, Pandas, Matplotlib
Research methods
Technical Writing
Engineering Schematics
Finite Difference Methods
Monte Carlo Methods
Nuclear Engineering Libraries
Timeline
Research Assistant
Center for Plasma-Material Interaction
06.2024 - 09.2024
Intern
Atomic Energy Research Insitute
06.2022 - 08.2022
Bachelor of Science - Nuclear, Plasma, & Radiological Engineering