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An M2 project in nonlinear dynamics, from host–microbe symbiosis to mammalian development The Microenvironment & Immunity Unit (Prof. Eberl, [email protected] ) and the Physics of Biological
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. - Analyze thermal noise spectra and optically excited mechanical oscillations. - Investigate nonlinear effects, such as amplitude-dependent frequency shifts, hysteresis, and Duffing-type behavior
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assessment (DIAMOND), a stimulating, high-level European Doctoral programme including 16 PhD students trained in several European countries (https://cordis.europa.eu/project/id/101227338 ). You will be
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. • Design and development of unit cells for low frequency applications mentioned in the project. • Design and development of metamaterial-based supports for the attenuation of vibrations of the single beam
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conversion), On-chip optomechanical systems for Stimulated Brilouin Scattering and low noise microwave photonics, second- and third-order integrated nonlinear photonics, and development of heterogeneous
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mechanics and mathematics, particularly machine design or a related specialisation, nonlinear vibrations, and MATLAB simulations. • Ability to work in a team, strong motivation and enthusiasm
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activity will be the follow: 1. Development of linear and nonlinear dynamic models of origami-based unit cells incorporating multiple resonators, 2. Implementation of computational models and numerical
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skills (evidenced by high grades) are required Prior research experience in problems related to fluid mechanics, structural vibrations, model reduction or control is expected Experience in nonlinear
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PhD students trained in several European countries (https://cordis.europa.eu/project/id/101227338 ). You will be appointed for three years, during which time you will study for a fee free PhD. Are you
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plasticity, shell stability, fracture mechanics, fatigue, structural dynamics, and vibration. Practical experience in applying the finite element method. Ability to define load cases, boundary conditions, load