Research Assisant
◆ Developed an executable to predict the effective properties of micro-structures in the presence of defects, voids, and complex heterogeneity based on the PI's research and provided C++ code using Python, PyQt5.◆ Worked on image processing, image restoration and graphics rendering in parts of various projects associated with the PI's research in the field of peridynamics.◆ Designed a Python executable for simulations and running simulations. Simulation types include mesh-based stress/strain analysis and peridynamics (node-based fracture and impact) simulations.◆ Analyzed and improved the process of compressing, reconstructing images and converting them to RGB and BW images under different iterations.◆ Developed GUIs for multiple executables allowing users to load and save progress, process and analyze data and results assisted by a C++ solver, generate processed videos and images, and display interactive 2D or 3D plots.