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: Design and conduct laboratory experiments. Characterize materials using advanced analytical techniques (XRD, SEM-EDS, ICP-OES/ICP-MS, FTIR, Raman and thermal analysis). Process and statistically analyse
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). The successful candidate will lead theoretical and computational activities concerned with the structure-property relationships that control electrical transport and thermal transport in organic semiconductors
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computational methods to investigate quantum, optical, thermal and spin-dependent transport in complex materials. A central expertise of the group is the LSQUANT methodology, a suite of linear-scaling, real-space
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techniques, cryogenic systems and magnetic, electrical, thermal and structural measurements. Strong skills in scientific data analysis and programming, together with experience in superconductivity, magnetism
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comprehensive miRNA analysis with equipment such as thermal cyclers, spectrophotometers, and automated genetic analysers. ● Drosophila “Fly Room” IDIBGI facility: The Drosophila laboratory is a fully equipped
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sintering with conventional thermal sintering in terms of electrical conductivity, adhesion, mechanical stability, and substrate compatibility. The candidate will perform material and device characterisation
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substrates and biodegradable PLH bioplastic substrates, supporting the preparation, treatment, and characterisation of printed metallic films and circuits comparing chemical sintering with conventional thermal