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. This project will develop a proof of concept ingestible device that attaches to the gut lining using microneedles for long term monitoring of luminal neurotransmitters. These microneedles will not just penetrate
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that the highest affinity minibinders will be both detectable by ITC/MST and modify effector phenotypes in plants. If successful, this will be the proof-of-concept that in-silico designed minibinders can interact
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numbers via inexpensive microfluidic techniques. While the mechanism of these drops’ motion is well-known, controlling their trajectory is often challenging. There exist some experimental proofs-of-concept
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impose stressful or frustrating situations which they cannot escape or avoid (e.g., regular veterinary health checks or treatment involving capture and sedation/anaesthesia, temporary or longer-term
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predictive checking, model comparison) • Computational modelling with Python and Dynesty, JAX, NumPyro, and PyTorch • Use of asteroseismic and spectroscopic survey data (e.g. PLATO, Gaia, APOGEE, TESS) • High
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, and can demonstrate competence in, two or more of the following areas are encouraged to get in touch. Please note that you **do not** have to check all of the boxes, but you should be excited to learn