-
or an equivalent quantitative optical technique. A solid background in plant cell and molecular biology, including proficiency in standard molecular biological and cell biology techniques. Experience working with
-
processes at oxide–water interfaces, investigated using advanced experimental and theoretical methods. The position is for four years of doctoral studies, including participation in research and postgraduate
-
. The thesis project will focus on radiation-induced processes at oxide–water interfaces, investigated using advanced experimental and theoretical methods. The position is for four years of doctoral
-
7.5 credits in genetics and 22,5 credits in the fields of microbiology, physiology and cell-and molecular biology. Additionally, at least 45 credits from second cycle studies in cell- and molecular
-
architecture and viral factories within infected cells. The project will combine virology and structural biology approaches and involves training in cellular cryogenic electron tomography (cryo-ET) data
-
courses (at least 120 ECTS credits) within a first-cycle subject relevant to environmental science, such as marine science, environmental engineering, earth system science, geoinformatics, oceanography