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boron nitride is a new two-dimensional optoelectronic material that is beginning to play an important role in prototypes for next-generation optoelectronic and electronic devices. As it is produced in a
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projects aim to gain a better understanding of how unicellular photosymbiosis works by combining subcellular microscopy approaches (3D electron microscopy). This thesis is funded by a European ERC
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from ISMO's facilities as well as support from the laboratory's technical departments (mechanical workshop, instrumentation, electronics, and computing services). All components of the experimental setup
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cryogenics and high-frequency data acquisition. Experience in THz spectroscopy, laser magneto-spectroscopy, and/or high-frequency electronics will be considered an asset. Website for additional job details
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. The researcher will have an office space with a computer and a suitable technical environment. The IBMP is accessible by public transport. On-site cycle parking facilities and staff catering. Where to apply
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: skills in instrumentation and experimentation; signal processing and electronics; computer science, C/C++ coding; Familiarity with system dynamics and control; Familiarity with computer graphics, 3D
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) General information about the position and the project: Jean-Noël Castorio – Senior Vice-Rector in charge of major projects Email: jean-noel.castorio@univ-lehavre.fr Research-related questions: Céline
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details” fields) General information about the position and the project: Jean-Noël Castorio – Senior Vice-Rector in charge of major projects Email: jean-noel.castorio@univ-lehavre.fr Research-related
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: Jean-Noël Castorio – Senior Vice-Rector in charge of major projects Email: jean-noel.castorio@univ-lehavre.fr Research-related questions: Céline Picard – Vice-Rector for Research Email: celine.picard
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electronic properties of two-dimensional (2D) semiconductor materials, making them particularly attractive for applications such as catalysis and micro/nanoelectronics, for instance for the development