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Shock Waves in Medicine
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Related lectures (34)
Fluid Flow Past a Cylinder
Explores fluid flow past a cylinder, covering laminar flow and time-dependent analysis using Comsol software.
Fluids: Modeling and Simulation
Explores the simulation of fluid flow between parallel walls using COMSOL Multiphysics.
Challenge of even bigger models
MOOC: Simulating a hippocampus micro-circuit
Explores simulating large-scale neural network models and optimizing memory efficiency in neural simulations using NEURON and CoreNEURON.
Fluid Mechanics: Foundations and Applications
Covers the foundations of fluid mechanics, focusing on flow problem descriptions and solutions.
Turbulence Simulation and Models
Explores turbulence simulation, focusing on CFD, DNS, RANS, and LES.
Acoustic holograms: ultrasound simulation
Explores acoustic holograms, ultrasound applications, Airy beams, lenses, mask design, and results with acknowledgements.
Turbulence: Simulation and Models
Explores turbulence simulation, modeling forces, and flow features using CFD, emphasizing challenges and modeling assumptions.
Symmetries and Conservation Laws
Covers symmetries and conservation laws in fluid dynamics, emphasizing the importance of maximizing symmetries in ideal fluid systems.
Bernoulli Equation
Explores the Bernoulli equation and its applications in fluid dynamics, including pressure, gravity, and velocity effects.
Berni Alder Prize: Celebrating 50 Years of CECAM
Commemorates 50 years of CECAM and the Berni J. Alder CECAM Prize, covering milestones in computational methods, quantum mechanics, slip motion, and more.
Front Wing Design and Experimental Validation of FEM Simulations
Discusses the design and validation of a Formula Student Racecar front wing.
Fluid Dynamics: Principles and Applications
Provides an overview of fluid dynamics principles, focusing on pressure differences and hydrostatic equilibrium in various fluid systems.
Untitled
Plasma Dynamics: Fluid Models
MOOC: Plasma Physics: Introduction
Introduces simpler fluid models to study plasma dynamics with a focus on two specific models and their applications.
Incompressible Fluid Mechanics: Foundations and Flow Equations
Covers the foundations of incompressible fluid mechanics and emphasizes the importance of exercises and self-study.
Simulation: Control of Dynamic Systems
Explores simulation of common structures and control of dynamic systems through friction and elasticity constants.
Differential Amplifier Design
Covers the design of a differential amplifier with key parameters like gain and bias current.
Chemical Equilibria and Reactivity
Explores gas properties, pressure, ideal and real gases, energy in reactions, and gas laws.
Turbulence: Numerical Flow Simulation
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Explores turbulence characteristics, simulation methods, and modeling challenges, providing guidelines for choosing and validating turbulence models.
Cavitation in Hydraulic Machines: Mechanisms and Effects
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Covers the mechanisms and effects of cavitation in hydraulic machines.
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