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Field
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or experimentally test the vein network dynamics of our model organism Physarum polycephalum. Your findings pave the way for control of vein network architecture and their function. Requirements As a suitable
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that are essential for understanding the underlying processes are examined. We work closely with various institutions and companies from all over the world, especially the USA, the UK, and Germany. Your Profile
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family- and child allowances, if necessary non-material support in the form of, i.e., seminars, events and networking meetings Application Papers Application forms and further information
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participate in the design of the graduate school programme and thereby shape parts of it according to their specific needs and wishes. We are pleased to announce that the family of Thomas Sankara has kindly
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timely manner. Research topics are proposed and publicly advertised by the Munich Aerospace Research Groups. Being integral part of a recognised Research Group and at the same time attending in the in
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microfluidic techniques and 3D cell culture, you will grow human microvascular tissue on chip whose architecture self-organizes in response to vasoactive substances. Your work will lead the way to applications
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water are likely the cradle of life. Their caves and tunnels allow reactants to accumulate at catalytic sites to start the reactions at the origin of life. How do these catalytic sites form and grow
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will lead the way to applications of flow-adapted on-chip vascular networks to optimally perfuse 3D tissue constructs. Requirements As a suitable candidate, you have an outstanding Master's degree
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English or German, according to the candidate’s preference. Full-time / part-time full-time Mode of study 50 / 50 online and on-site Programme duration 6 semesters Beginning Winter semester Application
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on a part-time (65%) basis for an initial period of 1 year, with the option to prolong for another three years. Research project and work environment You will have the great opportunity to shape a