Covers the basics of remote sensing, including historical development, applications in environmental science, sensor types, and electromagnetic wave properties.
Introduces materials science, mechanical properties, and material selection for engineering applications, emphasizing the importance of material properties in design.
Explores the reactivity of clay particles, focusing on their charge, structure, cation exchange, and applications in plant nutrient storage and nuclear waste isolation.
Discusses the control volume approach in fluid mechanics, focusing on mass and momentum conservation principles and their applications in real-world scenarios like jet engine thrust.
Explores the fundamentals of fluidics, covering Reynolds number, vortices, swimming, sedimentation, pressure drop, flow profiles, lift forces, and gas flows.
Covers the fundamentals of numerical flow simulation, emphasizing the importance of understanding the methodology and practicing simulation techniques to run full simulations autonomously.
Outlines the Master's program in Computational Science and Engineering at EPFL, detailing its structure, curriculum, and career opportunities for graduates.