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Biomedical engineering
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Related lectures (32)
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Master Programs Overview
Offers insights into the Master programs in Microengineering and Robotics, covering photonics, biomedical technologies, and advanced manufacturing.
Attenuation Correction
Explores the fundamentals of attenuation correction in biomedical imaging and simplifies the process using the geometric mean at 180°.
Finite Element Method: Basics and Applications
Covers the basics of the Finite Element Method for solid and structural modeling.
Collimation of emitted x-rays
Explores collimation in biomedical imaging, discussing its impact on resolution and sensitivity.
Computational Inverse Design
Explores computational inverse design of deployable structures and geometric computing for materials fabrication and engineering applications.
Continuous-Time Stochastic Processes: Linear System
Covers the analysis of continuous-time stochastic processes in the context of linear systems.
Deformation Part 2: Plasticity and Torsion Tests
Delves into plasticity, torsion tests, hardness techniques, and material stability criteria.
Diagnostic Xray Project: GlobalDiagnostiX
Explores the challenges of X-ray machine availability in district hospitals and presents the innovative GlobalDiagnostiX project.
Fatigue of Materials: Basics and Applications
Explores material fatigue, from low-cycle to high-cycle fatigue, Wöhler curve, endurance limit, crack influence, Miner's rule, and Paris law.
Advanced Metallurgy: Introduction
Covers course structure, modern materials, thermodynamics, phase diagrams, and binary systems in Advanced Metallurgy.
EPFL: Engineering and Science Overview
Gives an overview of EPFL, highlighting its top engineering school status and diverse research areas.
Thermo-Mechanical Behavior of Geomaterials: Applications and Modeling
Covers the thermo-mechanical behavior of geomaterials and its applications in engineering, emphasizing the impact of temperature on geomechanical properties and modeling.
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