Related lectures (324)
Modeling Class: Vesta Software Visualization
Explores crystal structure visualization using Vesta software for CCP and HCP arrangements.
Landauer Formalism: Coherence Lengths
Explores Landauer formalism and coherence lengths in energy transport in nanostructures.
Transient Heat Transfer
Covers exercises on heat and mass transfer, including multimodal heat transfer and transient conduction.
Electrokinetic Devices: Streaming, Drawing and Waving Potentials
Explores electrokinetic devices, focusing on leveraging nanoscale structures to improve device performance and energy conversion.
Electrical Analogy for Radiation
Explores the electrical analogy for radiation resistance and exchange in two-surface enclosures.
Ensembles and Partition Functions
Covers ensembles, partition functions, and distributions in statistical thermodynamics.
Emission of Thermal Radiation
Explores the emission of thermal radiation, covering mechanisms, electromagnetic radiation, temperature relationship, spatial distribution, and black-body radiation.
Nanophotonic Engineering: Energy Devices
Explores nanophotonic engineering for energy devices, covering heat transfer, energy conversion, transport regimes, and surface polaritons.
Fracture Mechanics: Crack Growth and Stability
Explores crack propagation, stability, cohesive zones, and fatigue crack growth in materials.
Homogeneous Catalysis Basics
Introduces the basics of homogeneous catalysis, focusing on reaction mechanisms and catalyst design.

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.