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- Bellvitge Biomedical Research Institute
- Centre Internacional de Mètodes Numèrics en la Enginyeria
- Centro de Investigaciones sobre Desertificación (CIDE, CSIC-UV-GVA)
- Fundació Centre de Recerca en Agrotecnologia-AGROTECNIO
- IDAEA-CSIC
- Institut Català de Nanociència i Nanotecnologia
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- University of Girona (UdG) - Institute of Computational Chemistry and Catalysis (IQCC)
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omics dataset generated to infer alterations in gene regulatory networks and cell-cell communication pathways responsible for the neurodegeneration. These predictions will be functionally validated using
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and AI techniques will be used to predict periods of harmful phytoplankton occurrence and to investigate their environmental triggers in the Galician Rías Baixas (NW Iberia). The work will also involve
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predict changes in the degree of overlap in species performance, phenology, and demographic responses under climatic stress, and whether such changes reduce the capacity of RD to promote ecosystem stability
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regularly in its various training and research activities, as well as the weekly seminars in IDAEA-CSIC. Where to apply Website https://www.idaea.csic.es/job-offer/phd-position-understanding-and-predicting-n
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for operation in extreme conditions). The doctoral research will focus on the development of advanced computational methodologies for the prediction of wear, damage evolution, crack initiation and crack
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University of Girona (UdG) - Institute of Computational Chemistry and Catalysis (IQCC) | Spain | 2 months ago
next-generation computational approaches to understand, predict, and engineer highly reactive intermediates in enzymatic catalysis. By combining quantum chemistry, molecular dynamics simulations, machine
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. This synergistic combination of multiplex GE, predictive AI and real-time phenotyping will shorten breeding cycles and enhance the accuracy of selection. The PhD candidate will conduct laboratory experiments
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, positional therapy validation, and prediction of cardiovascular risk and other comorbidities. The PhD project will be conducted in the frameworkof the project entitled: “Revolutionizing early sleep apnea
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of developing of energy autonomous neural interfaces. The researcher will be in charge of the finite elements simulations to predict and design novel materials and device designs for energy harvesting based