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experience in the development of biosensors, preferably applied to the biomedical field, ranging from the design and optimization of sensory platforms to validation in relevant healthcare contexts. 5
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the candidate, and activities for the management of science, technology and innovation programs, or experience in observation and monitoring of the scientific and technological system, with a maximum weight of 20
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for MicroElectroMechanical Systems (CMEMS-UMinho), co-financed by European Regional Development Fund (FEDER) through the Innovation and Digital Transition Program | Compete 2030, under the following conditions: Scientific
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. Curricular assessment, weighted at 40%: A1: Final course average, weighted at 60%. A2: Relevance of the training area in the work plan (according to Table 1), weighted at 30%. A3: Motivation letter and/or
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/18_SMARTRETAIL, financed by the European Union, by Recovery and Resilience Plan (PRR) through the Agency for Competitiveness and Innovation – IAPMEI, I.P, under the following conditions: Scientific Area
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, namely in the context of the promotion of the cultural and scientific practices considered most relevant by the candidate, and activities for the management of science, technology and innovation programs
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of knowledge, namely in the context of the promotion of the cultural and scientific practices considered most relevant by the candidate, and activities for the management of science, technology and innovation
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of knowledge, namely in the context of the promotion of the cultural and scientific practices considered most relevant by the candidate, and activities for the management of science, technology and innovation
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Scientific Research Grant Regulations. The work plan will consist of: Development and characterization of materials (thin films, nanocapsules) responsive to stimuli (light, electrical, mechanical