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-optical network architecture. The proposed architecture makes reality an efficient 6G Cell-Free (CF)-based access network for high-density and high-coverage deployments taking full advantage of novel
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pathogens damage agricultural production and endanger food security. Their control relies heavily on the use of synthetic insecticides, leading to a negative environmental impact. Developing new methods
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months. The position is offered in the frame of the project MINAGRIS, an H2020 project funded under the call SFS-21-2020 – B EMERGING CHALLENGES FOR SOIL MANAGEMENT. Brief Project Description Plastic use
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and how these intersect, their labour cost rates will be calculated. These calculations, based on optimal socio-economic work patterns, and on pre-industrial agricultural subsistence activities, will
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to work autonomously and collaborate in a research environment LanguagesENGLISHLevelExcellent Research FieldBiological sciences » BiologyEnvironmental science » EcologyYears of Research Experience1 - 4
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LevelPhD or equivalent Skills/Qualifications • Ability to work closely and collaboratively with other team members. • Ability to multi-task, prioritize and meet deadlines. • Ability to be flexible and change
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working tasks of the successful candidate will be: to determine the abundance of microbial pesticides and other key functional microbial groups in soil samples via q-PCR to extract soil DNA and perform
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experience in the position topic Relevant publications in the position topic LevelExcellent Additional Information Work Location(s) Number of offers available1Company/InstituteFORTH-IESLCountryGreeceGeofield