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Field
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mechanism of action that does not depend on chemistry at all. The Quasi-Living Materials Research Group is looking for a postdoctoral researcher to determine whether such a mechanism works inside biofilms
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interest in driving development of sequencing methods to identify mRNA decay substrates and decipher degradation mechanisms. The role The successful candidate will join the Dynamics of Protein Synthesis and
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of the project ERC Consolidator Grant (ERC-CoG2025) “Regulatory mechanisms underlying chilling responses: towards the design of climate-smart plants” (tuneCHILL; GAP-101229978). Where to apply E-mail jobs
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. Our goal is to identify the mechanisms that promote effective anti-tumor immune responses and to exploit these findings to develop novel therapeutic strategies. The team is part of the Oncology
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bioGUNE (Bilbao-Spain), led by Dr. Ana Ruiz-Saenz, strive to understand the molecular mechanisms underlying resistance to targeting therapies. Current and future projects are exploring new aspects
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way patients are selected in the clinic to receive oncological treatments. This will also advance our understanding of the mechanisms of interaction between multiple types of tissue and cells given a
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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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of reporting mechanical damage through optical signals and (ii) functional polymeric nanoreactors for solar-driven chemical transformations. The project will exploit data-driven methodologies, computational
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simulations of the proposed functionalities, including the waveguide ability to detect the presence of analytes. These sensing capabilities will be explored through both optical absorption mechanisms and phase
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sintering in terms of electrical conductivity, adhesion, mechanical stability, and substrate compatibility. The candidate will perform material and device characterisation using techniques such as microscopy