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. You will develop methodologies to design, make, screen, and test de novo proteins for incorporation in a particle-based continuous sensing platform with single-molecule resolution, called Biosensing by
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and space. Design, build and implement an integrated regional and farm system MRV meta-model for several pilot regions across Europe Model evaluation of mitigation measures to ‘consolidate and improve
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this PhD project, you will design, build and validate a new generation of wideband current sensors that can reveal switching behaviour and losses that are difficult to observe with today’s instrumentation
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on https://www.heliabiomonitoring.com/publications . The research group integrates laboratory-based and computational approaches for advancing sensor technology and bioengineering. Research is done in close
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of the EU Common Agricultural Policy (CAP) and a proven ability to build trusted relationships with senior policy stakeholders. Strong quantitative expertise and familiarity with partial equilibrium modelling
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transition. See: https://www.tudelft.nl/en/2026/tbm/tpm-researchers-receive-nwo-kic-consumer-behaviour-for-a-circular-system-transition-grant . The project includes 2 PhD positions, 2 Postdoc positions, and
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circuits. Building on preliminary results for resistive circuits, you will study circuits containing memristive and capacitive elements, as well as more general dissipative networks. The project combines
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quantum technology by training researchers who will help build the future of secure and efficient communication networks: the Quantum Internet. PhD project - Important the start date for this PhD is 1 st
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agriculture with 1000 farmers. The aim is to make regenerative agriculture the new normal by 2040. In this role you support the monitoring and learning of the 1000 farmers in ReGeNL that commit to transition
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accompanied by relevant evidence, uncertainty estimates, and transparent explanations aligned with current clinical guidelines? Preferred starting date: 1 November 2026 Where to apply Website https