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? No Offer Description PID2022-141627NB-I00: A MODEL FOR LESS IS MORE: development of Oikopleura dioica as an evolutionary knockout model to study the impact of gene loss on the evolution of gene
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? No Offer Description PID2022-141627NB-I00: A MODEL FOR LESS IS MORE: development of Oikopleura dioica as an evolutionary knockout model to study the impact of gene loss on the evolution of gene
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of star formation histories and age-metallicity distributions of selected stellar samples in the Milky Way disk and halo Mechanisms of stellar migration in the Milky Way disk Chemical evolution modelling
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other territorial units. •Development and application of causal inference techniques (difference-in-differences, propensity score matching, multilevel models) to estimate the electoral effects of urban
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cerebrovascular diseases. Our research focuses on models of ageing, neuroinflammation and oxidative stress. To achieve this, we apply biomedical approaches including biochemical assays, in vivo and in vitro studies
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vacuum, chemistry labs and scanning probe microscopies. Fluent in English, good writing and interpersonal skills. Molecular modelling software and programming knowledge for data acquisition and data