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Lecture
Biophysics: Cellular Systems and Physical Principles
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Related lectures (37)
Energy Minimization in Biological Systems: Equilibrium Models
Covers energy minimization models in biological systems, focusing on equilibrium and the roles of entropy and hydrophobicity.
Cellular Organization and Communication
Explores cellular organization, protein function, infectious diseases, and virus life cycles within cells.
Molecular dynamics under constraints
Explores molecular dynamics simulations under holonomic constraints, focusing on numerical integration and algorithm formulation.
Plasma Membrane Structure and Proteins
Covers plasma membrane structure, protein composition, fatty acid variations, protein folding, and amino acid properties.
Intrinsically Disordered Proteins: Phase Separation and Membrane Interactions
Explores the behavior of intrinsically disordered proteins, polymer phase separation, Flory-Huggins theory, and biomolecular condensates.
Thermodynamics in Cell Biology
Explores the role of thermodynamics in cell biology, focusing on the connection between thermodynamics and cellular processes.
Proteins: Structure and Function
Explores the structure and function of proteins, emphasizing their diverse roles in living organisms.
Statistical Physics of Clusters
Explores the statistical physics of clusters, focusing on complexity and equilibrium behavior.
A microbiology primer
Covers microbiology basics, including cell structure, morphology, and energy generation in microbial cells.
Cryo-EM and Parkinson's Disease
Delves into Cryo-EM's role in studying Parkinson's Disease and protein structures at the nano-level.
Structural Grids: Design and Analysis
Explores forces, equilibrium, resistance, and deformations in structural grids, cables, arches, and beams.
Cell Biology Basics: Macromolecules and Structures
Introduces the basics of cell biology, focusing on macromolecules, structures, and the unique properties of lipids.
The Art of Structures: Introduction to Functioning
Introduces the functioning of structures in architecture, covering engineer and architect roles, course content, and necessary materials.
Membrane Properties: Structure and Function
Explores the properties of lipid membranes, emphasizing their structure, stability, and controlled permeation, as well as the role of proteins and cholesterol.
Statistical Physics IV: Part II
Delves into advanced statistical physics concepts, exploring complex systems behavior and dissipative dynamics.
Chemical Equilibria and Reactivity
Covers the concepts of energy types, entropy, second principle, and Gibbs free energy.
Statistical Thermodynamics: Entropy and Forces
Explores entropy, forces, and statistical thermodynamics in physical systems.
Cellular Mechanisms of Brain Function
Explores the electrical properties of cell membranes and their role in brain function.
Structural Elements: Beams and Trusses
Covers the basics of structural elements like beams, cables, arches, and trusses.
Structural Stability: Elements and Forces
Covers stability in structures, equilibrium, resistance, and stiffness of different elements and forces.
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