Explores the activation and differentiation of T lymphocytes, focusing on naive T cells recognizing antigens and differentiating into effector and memory cells.
Explores biology fundamentals, proteins, lipids, and DNA as synthetic materials, covering cell structure, membrane composition, protein production, DNA structure, and tissue engineering.
Covers the kinetic theory of gases and its application in evaporation physics, including Fick's Law of Diffusion and the Maxwell-Boltzmann distribution.
Explores the development of biological models with integrated monitoring, focusing on cell membranes, conducting polymer scaffolds, and bioelectronic devices.
Explores design discussions and documentation in software development, emphasizing scientific programming and code documentation tools like Doxygen and Sphinx.
Delves into supramolecular chemistry, focusing on molecular machines and motors, exploring design principles and experimental support for controlled motion.