14 master-"https:"-"https:"-"https:"-"https:"-"BioData" positions at Norwegian University of Life Sciences (NMBU)
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Science focusing more on the physiological part, as well as master students and veterinary students assigning to do their thesis connected to this project. The main goal of the project is to identify
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candidate will work in a team with several researchers/professors including international collaborators and another PhD at the Faculty of Biosciences, Department of Animal and Aquacultural science. The main
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, collaborative robotic mechanisms, or safety-driven system design applicable to drone deployment workflows. Main tasks Define a focused research topic within the broader area of autonomy, robotics, and drone
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for agricultural tasks and (2) manufacturing, particularly primary and secondary processing, prior to packaging. This position falls into the latter field, where the focus will be on projects related to industrial
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the Norwegian Institute of Bioeconomy Research (NIBIO) and NMBU is the main research partner. The applicants are made aware that an application for a PhD position at NMBU is also an application for admission
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data-driven maintenance planning for tall timber buildings with fire-retardant-treated or coated façades. Main tasks The candidate will: Develop microclimate and performance models for wooden façades
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(Canada). The main objective of MethanePasture is to improve the sustainability of ruminant livestock production, as well as national inventory and whole-farm greenhouse gas (GHG) estimates. This will be
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attachment. The position does not include teaching duties. The position will be affiliated with one of the research groups at the Department of Landscape Architecture. Main tasks The PhD candidate will carry
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animal husbandry. The candidate can select where to place the main emphasis of the work and may also explore life-cycle analysis, human exposure, or cost-benefit modelling. You will work with NIBIO, NGI
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vegetable species relevant for Northern food production. The primary objective is to characterize PFAS uptake patterns in selected vegetable crops and to identify the key factors governing these patterns