Training materials
Browse HEP training materials from the HEP Training catalogue.
Scoped to the CERN EOSC Node Space.
7 materials found
Intermediate
Soon you will find yourself in the situation that the input/output sandboxes for regular grid jobs are not big enough anymore. You will need to start using distributed mass storage systems on the grid. Rucio coordinates the ATLAS distributed data management systems and provides a convenient way to manage your files. More details about Rucio can be found in the Rucio users guide. The basic unit in Rucio is a data identifier (DID). A DID is nothing but a registered file, dataset (set of files), or container (set of datasets). These DIDs are stored at certain grid sites (like CERN, or BNL) and are registered in a central location (the DDM central catalogues). The logical mapping of files in a dataset to the physical location of the files on these grid sites is done by distributed file catalogues local to a certain site. (Multiple datasets can be aggregated into containers, but we will not cover this right now.)
Intermediate
A list of How-to to get started with Rucio: - Deploying OpenSearch monitoring for Rucio - Deploying ElasticSearch monitoring for Rucio - Getting Started - Rucio Command-Line Interface
Intermediate
This is a practical hands-on for analysis reinterpretability, following the first LHC BSM WG general meeting on Nov 10-13, 2025. The aim is to discuss show-case examples of reinterpretability as well of practical questions for specific analyses participants are working on. This specific session on Nov 13 will focus on preparing the HEPData record for your analyses. Part of the workshops of the LHC REI WG.
Intermediate
This short tutorial give a example macro on how to generate HEPData submission using hepdata_lib (https://github.com/HEPData/hepdata_lib/)
Intermediate
A set of examples for CERN SWAN a Service for Web based ANalysis. With SWAN you can: - Analyse data without the need to install any software - Access via Jupyter notebook interface or a shell from the browser - Use CERNBOX as your home directory and synchronise your local user space with the cloud storage - Access LCG and experiments' software on CVMFS - Share your work with your colleagues thanks to CERNBox - Document and preserve science - create catalogues of analyses: encourage reproducible studies and learning by example
Intermediate
SWAN training material Physics Analysis Use Case The notebooks in this folder guide through an examplary analysis producing a dimuon spectrum from CMS Open Data, both in C++ and Python. The tools used for the analysis include ROOT's RDataFrame and graphics, numpy, pandas and matplotlib, all of them available in SWAN via the LCG releases on CVMFS. This material is based on the analysis done by Stefan Wunsch, available here in CERN's Open Data portal
Intermediate
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