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suppliers and purchase of components; 2. Prototype development and validation in the laboratory; 3. Design of test scenarios using different food formulations provided by project partners; 4. Verification and
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improve existing degradation models. T3 - combine computer vision and machine learning models to identify, delimit and classify the facades’ anomalies in photographs and thermal images; integrate the new
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Engineering, contributing to the following project activity, foreseen in the application: Activity 2 - Development / Prototype design Activity 3 - Integration, Testing, and Trials Activity 4 - Promotion and
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– Conception & Ecodesign Framework T1.3 – Development of Numerical Modelling Tools A2 – Prototype Production and Testing: T2.3 – Performance Testing and Economic Feasibility Studies A4 – Dissemination of Results
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) construction of a laboratory-scale prototype for the electrochemical generation of ozone; (ii) testing and optimization of the electrochemical ozone generation system; (iii) testing and optimization
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until the time of signing the contract. Activity Outline: Development of advanced quantitative image analysis methodologies to uncover significant correlations in multispecies chronic wounds biofilms
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work: Prototype of a membrane degasification module for ammonia recovery from landfill leachate, inserted in WP 5 - Renewable gases and biofuels. The selected researcher may also provide possible
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: Prototype of a membrane degasification module for ammonia recovery from landfill leachate , inserted in WP 5 - Renewable gases and biofuels. The selected researcher may also provide possible collaboration in
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work: Prototype of a membrane degasification module for ammonia recovery from landfill leachate, inserted in WP 5 - Renewable gases and biofuels. The selected researcher may also provide possible
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according to different types of applications. Construction of prototypes and tests development – support in constructing prototype products to demonstrate the plasters' quality in a real environment