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Interactions sol-atmosphère: Hydrological Cycle
Explores the hydrological cycle, infiltration processes, and empirical approaches to characterize infiltration rates in different soils.
Introduction to Transport Phenomena: Bernoulli's Equation
Covers Bernoulli's equation and its applications in fluid flow problems, including continuity, friction factors, and practical examples.
Navier-Stokes Equations: Numerical Flow Simulation
Explores challenges and solutions in numerical flow simulation, emphasizing the importance of physical consistency in computational fluid dynamics.
Shock Wave Formation: Theory
Covers the theory of shock wave formation in isentropic flow.
Numerical Modelling of the Atmosphere
Focuses on numerical modelling of atmospheric processes to predict weather and climate phenomena, covering key concepts and methods.
Astrophysical Fluids & Plasmas
Explores the composition of the cosmos, dynamics of fluids and plasmas, and conservation equations.
Fokker-Planck Equations
Explores Fokker-Planck equations, escape rates, and first passage time analysis in statistical physics.
Transport Equations: Convection and Diffusion
Explores transport equations, emphasizing conservation principles and scheme stability.
Implicit Functions: Analysis II
Explores the existence and uniqueness of implicit functions and their continuity properties.