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Within the Chair Group of Economic and Social History, Faculty of Arts at the University of Groningen, the Netherlands, a fully funded PhD position is currently available. The position will be
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of Law and the department of Social, Economic and Organizational Psychology at the Faculty of Social and Behavioural Sciences. This PhD project will be supervised by a multidisciplinary team consisting of
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of Social, Economic and Organizational Psychology at the Faculty of Social and Behavioural Sciences. This PhD project will be supervised by a multidisciplinary team consisting of dr. Elody Hutten, prof. dr
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behavior under different conditions; Conduct a risk assessment to identify potential hazards and develop safety protocols; Perform an economic analysis to evaluate the costs and benefits of different
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/ ) was established to perform fundamental and practical research required for realising and accelerating the hydrogen economy. Job description [1] The first position is part of WP2 of GVNL, that covers the transport
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Phd Position in Multiscale Spatiotemporal Modelling of Microbiome During the First 1000 Days of Life
exogenous factors encompass external elements such as socio-economic status, culture, diet, and lifestyle. By integrating these factors, you will simulate and explore their complex interactions and effects
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, Clinical Psychology, Cognitive Psychology, Developmental and Educational Psychology, Social, Economic and Organisational Psychology, and Methodology and Statistics. The PhD position is embedded in the Unit
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, Developmental and Educational Psychology, Social, Economic and Organisational Psychology, and Methodology and Statistics. The PhD position is embedded in the Unit of Developmental and Educational Psychology. What
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a Circular Economy, Language, Technology and Culture, Knowledge Infrastructures and Sustainable Health. In the summer of 2019, Campus Fryslân has moved to the new faculty building De Beurs: the first
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. green hydrogen, needs to economically compete with the conventional production methods. To this end, you will explore the optimization of hydrogen production through alkaline electrolysis in a larger