Schema della sezione

  • in-person

    National Research Council, Pisa Research Area, Via Giuseppe Moruzzi 1, 56124 Pisa PI

    09 December 2024

    10 Decembre 2024

    11 Decembre 2024

    12 December 2024

    25 (in person)

    Massimiliano Assante (ISTI - CNR), Luca Frosini (ISTI - CNR), Lucio Lelii (ISTI - CNR), Francesco Mangiacrapa (ISTI - CNR), Alfredo Oliviero (ISTI -CNR), Marco Procaccini (ISTI - CNR), Eugenio Trumpy (IGG - CNR), Gian Luca Vannini (ISTI -CNR)

    Creating digital work environments that facilitate "Data -driven" research through analytical and application data streams, allowing the researchers to easily access different datasets, elaborate and use them through calculating and visualization tools is the idea behind the VREs supported by D4Sciences [1, 2].
    The training provides notions on the Digital Objects, the FAIR principles for research products and the scientific data repositories, the VRE usability (from data collection, to data analysis up to results publication), the practical sessions on data analyses, the Cloud Storage principles and it will address possible necessities of the ITINERIS VREs.

    Training objectives: use of VRE from collection to data elaboration, use of data analysis tools, Cloud Storage and Computing, Research Publishing, address ITINERIS VREs necessities.

  •  Introduction to ITINERIS Project, Digital Objects, FAIR principles for research products, Scientific Data Repository

     D4 Science and VRE concepts, VRE Common Services to support the entire research cycle

    Cloud computing, Data analysis tools, (JupiterLAb, CCP Method Executions)

    D4Sciences VREs case studies and ITINERIS VREs

    •  Digital object concepts
    •  FAIR principles and applications
    •  Data repositories
    •  Metadata introduction and persistent identifiers (e.g., DOI, ..)
    •  Open Access
    • VRE introduction
    • VRE implementation
    • Collaborative tools (i.g., workspace, communication environment, messaging, …)
    • VRE Publishing of Research Products
    • Open Science practices and VREs
    • Introduction to distributed computing
    • Cloud computing platform
    • Reproducible research
    • Hands-on (JupiterLab, CCP, Method Executions)
    • VRE real case studies in geology and geothermal domains
    • ITINERIS Gateway and VREs:
      • CZ VRE;
      • Biomass VRE;
      • CPP VRE;
      • EV VRE;
      • Carbon VRE;
      • AERO VRE;
      • Clima VRE;
      • Downstream VRE;
      • Isotope VRE;
    •  Mini project development using VRE tools