Lecture

Symmetry and Conservation in the Cell

In course
DEMO: sunt ullamco non
Deserunt magna amet labore enim eiusmod aute est duis occaecat pariatur culpa pariatur. Consectetur minim incididunt dolore sit minim velit officia laboris ullamco non ea qui in irure. Sint nostrud tempor ex mollit amet enim consequat consequat quis duis reprehenderit exercitation officia ad. Incididunt mollit ad cillum dolore ex tempor anim. Labore culpa ullamco ut proident. Magna aliqua minim in eu veniam consectetur qui eu officia commodo enim proident. Officia irure adipisicing velit cupidatat exercitation reprehenderit velit irure.
Login to see this section
Description

This lecture explores the concept of symmetry and conservation in cellular biology, focusing on the biophysics of cells. It covers topics such as the structure of cells, the importance of randomness in cellular functions, and the role of computer simulations in understanding cellular dynamics. The course delves into the principles of symmetry and conservation in cellular processes, emphasizing the significance of energy, entropy, shape, flexibility, and fluctuations. Through a series of lectures and simulations, students will gain insights into the fundamental principles governing cellular behavior and the computational modeling of cellular structures.

Instructor
veniam cillum quis
Excepteur voluptate magna in aliquip ullamco in ea officia ad et ea magna nostrud labore. Adipisicing est cupidatat aliquip esse cupidatat mollit. Aliqua magna qui ut excepteur dolor elit officia eiusmod deserunt sint ad cillum magna. Minim id exercitation duis id deserunt sit. Velit deserunt commodo excepteur magna nulla nostrud sit nisi. Culpa nulla esse consequat nulla nulla ullamco est aliquip minim consectetur amet.
Login to see this section
About this result
This page is automatically generated and may contain information that is not correct, complete, up-to-date, or relevant to your search query. The same applies to every other page on this website. Please make sure to verify the information with EPFL's official sources.
Related lectures (40)
Thermal Fluctuations: Importance at Cellular Scale
Explores the impact of thermal fluctuations at the cellular scale, emphasizing randomness in biological processes and the distribution of kinetic energy in gas molecules.
Graph Coloring: Random vs Symmetrical
Compares random and symmetrical graph coloring in terms of cluster colorability and equilibrium.
Quantum Information
Explores the CHSH operator, self-testing, eigenstates, and quantifying randomness in quantum systems.
Introduction to Plasma Physics
Introduces the basics of plasma physics, covering collective behavior, Debye length, and plasma conditions.
Quantifying Randomness and Information in Biological Data
Explores entropy, randomness, and information quantification in biological data analysis, including neuroscience and protein structure prediction.
Show more

Graph Chatbot

Chat with Graph Search

Ask any question about EPFL courses, lectures, exercises, research, news, etc. or try the example questions below.

DISCLAIMER: The Graph Chatbot is not programmed to provide explicit or categorical answers to your questions. Rather, it transforms your questions into API requests that are distributed across the various IT services officially administered by EPFL. Its purpose is solely to collect and recommend relevant references to content that you can explore to help you answer your questions.