Sort by
Refine Your Search
-
adds value and where its risks lie, is lacking. In this PhD project you will map current and future GenAI use across the full HTA lifecycle, from horizon scanning to reassessment, and translate
-
, climate risk is typically framed as a technical issue to be quantified and absorbed into evaluative procedures. Tools such as cost-benefit analysis (CBA) translate uncertain futures into calculable present
-
to define glycan features that govern influenza attachment and to develop advanced in vitro receptor models reflecting airway tissues. Your tools: Interdisciplinary receptor analysis: you will work with
-
forms of climate risk. Focusing on local processes during this period allows us to trace when and why cooperation breaks down or endures, and to assess the consequences for sustainable development
-
systematic evidence on where it adds value and where its risks lie, is lacking. In this PhD project you will map current and future GenAI use across the full HTA lifecycle, from horizon scanning
-
that become imaginable? In planning, climate risk is typically framed as a technical issue to be quantified and absorbed into evaluative procedures. Tools such as cost-benefit analysis (CBA) translate uncertain
-
shareholding and subsidization in the EU, creating new risks for so-called mixed markets, where SOEs and private firms compete. This, in turn, raises questions about competition law enforcement of such markets
-
developments have led to a resurgence of state ownership through nationalization, active shareholding and subsidization in the EU, creating new risks for so-called mixed markets, where SOEs and private firms
-
forms of climate risk. Focusing on local processes during this period allows us to trace when and why cooperation breaks down or endures, and to assess the consequences for sustainable development
-
reflecting airway tissues. Your tools: Interdisciplinary receptor analysis: you will work with glycan arrays, engineered glycans, influenza binding assays, and—depending on expertise—molecular biology