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materials. It is expected that the properties of the fabricated devices will be suitable for applications in electric vehicle integrated photovoltaics (VIPV). Transparent Photovoltaic Windows for the Electric
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diabetes. The successful applicant will develop cell-based model systems such as human stem cell-derived beta cells, using single cell genomic read-outs, and will explore poorly understood genome regulatory
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inclusive environmentand welcomes applicants regardless of age, disability, gender, nationality, ethnicity, religion,sexual orientation or gender identity. The CRG is committed to reconcile a work and family
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also works towards the development of technological applications based on these materials such as electronics, bioelectronics and biosensing, neural interfaces, etc. The activities cut across different
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. The successful candidate will be joining the international QTWIST program that includes new joint laboratories of Prof. Jarillo-Herrero (MIT) and research groups of Prof. Adrian Bachtold, Prof. Carmen Rubio Verdú
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the Barcelona area, and with strong collaborations with our Spanish partners within the Complementary Plan of Quantum Communications (https://www.quantumcommunicationsspain.eu/en ). This project is funded by MCIN
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applications (e.g. MSCA). Training opportunities and international conference attendance. Space for creativity, with dedicated mentorship and team support. Possibility to supervise PhD and MSc students. Proposed
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enjoying a globally competitive start-up package and a collaborative environment. Applicants must hold a Ph.D. in Anesthesia, Pain or related fields (e.g., biology, biochemistry, neuroscience, pharmacology
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. The successful candidate will be joining the international QTWIST program that includes Prof. Jarillo-Herrero (MIT) and Amir Yacoby (Harvard) as well as research groups of Prof. Adrian Bachtold, Prof. Carmen Rubio
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(extended-SWIR) for applications related to remote sensing, spectroscopy, LIDAR and communications. The candidate will be in charge of the design, fabrication and characterization of quantum dot laser