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Field
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PhD, you will: perform large-scale potato experiments using 100 contrasting soil microbiomes; use automated high-throughput phenotyping to quantify plant growth, physiology and disease development
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functional mobility in individuals with neurological disorders. A key component of the project is the use of plethysmography to assess physiological responses associated with physical and cognitive fatigue
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to increase resource use efficiency. However, managing and optimizing these new cultivation systems requires crop models that can predict plant growth, crop yield and resource use under highly dynamic
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Circulatory Support (MCS) experimental lab with real-world clinical analysis in patients with cardiogenic shock and cardiothoracic surgery. You will work at the frontline where engineering, physiology, and
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measure in breath and understand physiology. Every breath you exhale carries information about the health of your body and its systems. Trace gases can signal the presence of chronic or acute disorders
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component of the project is the use of plethysmography to assess physiological responses associated with physical and cognitive fatigue, combined with advanced motion analysis in the laboratory and wearable
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grow potato plants in the automated phenotyping facilities of the Netherlands Plant Eco-phenotyping Centre (NPEC) external link . Using high-resolution imaging, you will follow plant growth, physiology
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Are you curious about how photosynthesis performs in the real world, over hours, days, and weeks, and how can we use that knowledge to improve greenhouse production? As a PhD candidate, you will
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behaviour, escalation/de-escalation, and the possible use of coercive measures. Before interacting with clients, staff may differ in their physiological starting point due to sleep problems, recovery, chronic
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functional mobility in individuals with neurological disorders. A key component of the project is the use of plethysmography to assess physiological responses associated with physical and cognitive fatigue