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methodology, complemented by microscopy and dynamic light scattering, among other methods. The aim is to develop a fundamental understanding of the leading interactions between nanoparticles and biology
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. Empa is a research institution of the ETH Domain. In a joint project with a young and dynamic industrial partner from the Medtech field, we will develop a production process suitable for the large-scale
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from the Medtech field, we will develop a production process suitable for the large-scale manufacturing of ceramic-based micro-medical devices. The formulation and stability of the starting suspension
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at Empa and an excellent academic environment during the stay at WUT An international network and contacts to academic and industrial partners Opportunity to develop and make your own contribution in a
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to develop a new and improved Safe and Sustainable by Design (SSbD) Assessment framework. For this, CHIASMA will focus on developing New Approach Methodologies (NAMs) and improved Life Cycle Impact Assessment
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. Empa is a research institution of the ETH Domain. The potential of dual-comb spectroscopy (DCS) is rapidly unfolding and opens up new fields of applications. You will leverage on DCS to develop a mid-IR
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at Empa and an excellent academic environment during the stay at WUT An international network and contacts to academic and industrial partners Opportunity to develop and make your own contribution in a
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to develop a new and improved Safe and Sustainable by Design (SSbD) Assessment framework. For this, CHIASMA will focus on developing New Approach Methodologies (NAMs) and improved Life Cycle Impact Assessment
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aim of the project is to develop thermocatalytic methods for efficient reduction of CO2 to methanol and olefins over the methanol route. Specifically, you will investigate sorption-enhanced and hybrid
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to develop the key know-how and process chain in this collaborative research project. A careful, meticulous and creative mindset will be appreciated in facing the manifold of project challenges and risks. Your