Explores the properties of lipid membranes, emphasizing their structure, stability, and controlled permeation, as well as the role of proteins and cholesterol.
Explores the history, mathematical models, and experimental techniques of Brownian Motion, revealing its molecular nature and significance in cell biology.
Covers laws of dynamics, coordinates, applications of Newton's laws, work, energy, collisions, central motion, Kepler's laws, and mathematical modeling in physics.
Delves into the principles of symmetry and conservation in cellular biology, emphasizing the importance of energy, entropy, and computational modeling.
Explores biology fundamentals, proteins, lipids, and DNA as synthetic materials, covering cell structure, membrane composition, protein production, DNA structure, and tissue engineering.