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capacity as a source or a sink of nitrous oxide (N2 O), a potent greenhouse gas. The PhD student will work within the Soil Microbiology group, which is internationally recognized in the areas of evolution
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sink of nitrous oxide (N2 O), a potent greenhouse gas. The PhD student will work within the Soil Microbiology group that works as a well-integrated team and is internationally recognized in the areas
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the degree of a soil’s capacity as a source or a sink of nitrous oxide (N2 O), a potent greenhouse gas. The PhD student will work within the Soil Microbiology group that works as a well-integrated team and is
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sink of nitrous oxide (N2 O), a potent greenhouse gas. The PhD student will work within the Soil Microbiology group that works as a well-integrated team and is internationally recognized in the areas
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increasingly environmentally friendly and energy efficient. Together, we expand knowledge that helps develop society sustainably. We collaborate with growers and industries to cultivate the crops of the future
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materials, and energy to meet the increasing demands for these resources and, at the same time, make plant production increasingly environmentally friendly and energy efficient. Together, we expand knowledge
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description A shift toward production and consumption of foods with lower environmental impact and better use of our food side streams is necessary. This PhD position addresses these challenges and aims
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of environmental changes on plant-associated microbial communities by carrying out both lab and field experiments and by using advanced molecular and data processing methods. Qualifications: The candidate is
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on the entire scale from molecular mechanisms and microbiology to the structure, function and behaviour of animals, and how these are affected by breeding, physical activity, care, production, stress