At the University of Florida's FAMMoS Lab, I develop Python models for PHWR fuel systems, tracking isotopic evolution and burnup across reactor operation.
I've also processed multivariable biological datasets at the Cancer & Genetics Institute using Python and MATLAB, applying hypothesis testing and variance analysis to identify meaningful patterns and strengthen experimental findings.
I lead hands-on engineering projects, including a high-altitude dielectric-fluid experiment designed to measure conductivity and dielectric constant under extreme flight conditions.
My work combines materials characterization, experimental design, simulation, and machine learning—from exoplanet habitability modeling to filtration-system optimization and ceramic fracture redesign.
