Explores the thermodynamics of polymer blends, phase diagrams, miscible blends, phase segregation, block copolymers, and applications in thermoplastic elastomers and nanotechnology.
Explores statistical physics concepts like equiprobable microstates, entropy, and canonical ensembles, with applications in quantum mechanics and semiconductor physics.
Explores binary systems, phase diagrams, and elastic properties in materials science, emphasizing phase equilibria and material behavior under deformation.
Explores the design of high-performance alloys, the materials development process, multi-component systems, ICME, CALPHAD approach, and experimental phase diagram investigation.
Explores challenges in identifying useful metastable materials and discusses concepts like structure predictions, ensemble probabilities, and mapping algorithms.