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microfluidic analogs of phloem sieve plates and other plant hydraulic elements. Conduct controlled flow-pressure experiments to evaluate aspects of the theoretical predictions and quantify resistance mechanisms
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microfluidics - Ability to work rigorously, independently, and as part of a team - Knowledge of standard safety rules for handling and synthesizing chemicals Website for additional job details https
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://doi.org/10.1111/ele.70027 [2] Hsu, R.H. et al. Microbial Interaction Network Inference in Microfluidic Droplets. Cell Systems 9(3), 229-242 (2019). https://doi.org/10.1016/j.cels.2019.06.008 " View
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DWI-Leibniz-Institute für Interaktive Materialien e.V. | Aachen, Nordrhein Westfalen | Germany | about 2 months ago
via microfluidics and scale-up, 3D bioprinting, and cell culture. The successful candidate will work jointly with the Pich and De Laporte research group. Your tasks Biomaterial synthesis and
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cutting-edge microfluidic approaches, fluorescence-based assays and advanced microscopy techniques to study the molecular interactions underlying protein aggregation and neurodegeneration. The candidate
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transcriptomics and microfluidic tissue processing. Develop protocols for volumetric molecular imaging, including expansion microscopy and multiplexed in situ hybridization workflows. Establish whole-mount and
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position: Title of Post: Post Doctoral Researcher (Level 1 or 2) in Microfluidics (2 Positions) JOB SYNOPSIS Join the TANGO project, an Enterprise Ireland–funded initiative developing a next-generation
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Sciences, to exercise the functions of developing a 3D bone model using micro-automation and microfluidic systems, within the METABONE project “Exploration of metastasis in the bone microenvironment – breast
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strengthen your application: Experience with fluidics/microfluidics to explore sample transportation to the sensor. What you will do Develop methods for functionalizing graphene with various bio-receptors
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consortium also includes industrial and clinical partners. This particular PhD project aims to develop the in-vitro vasculature-on-chip models, microfluidic chips in which controllable and physiologically