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. Job description This doctoral project provides training across the complete development cycle of MIR integrated photonic devices The doctoral student will develop numerical models, design photonic
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of methods to program material stiffness in-situ with light. Goals: high stiffness contrast (rigid-soft), fast transition (<1s), and small form factor (< mm scale) Characterization and developing theoretical
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will inform and validate the predictive numerical methods developed by other team members. Developing sustainable chemical processes requires accurate experimental thermophysical property data. Although
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a major role in the advent of the Information Age - One high bandwidth fiber optic cable can replace thousands of electrical links to transmit the same amount of information. As a parallel to the
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of the Information Age - One high bandwidth fiber optic cable can replace thousands of electrical links to transmit the same amount of information. As a parallel to the thriving fields of soft devices and robots
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properties of chemicals in order to promote food, drug and personal care product function and safety. Researchers develop and apply quantitative chemical, in vitro, and computational approaches to address
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guided empirical analyses using reduced-form causal inference methods Preparing presentation slides and other research materials Occasionally assisting in the organization of an academic workshop Profile
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Science and Engineering of ETH Zurich (located in Basel). We work at the interface of protein engineering, molecular biophysics, and synthetic biology, developing new experimental and computational
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these modalities creates opportunities for interfaces that understand both what the user intends to do and what is happening in the environment. The PhD will focus on the computational and sensing methods required
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solids. We are currently establishing a laboratory for thin-film synthesis using physical vapor deposition methods, structural modification using wet-chemistry-based approaches, and advanced structural and