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64 results for “nomadism”

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zenodo48/100

From 'digital nomadism' to 'rooted digitalism'

<p>Codebook along DDI standard, txt file.</p><p>This article explores the interplay between digital work and mobility through a look at the career trajectories, remote work practices and im/mobilities of professionals in the information technology (IT) sector. We draw upon a qualitative study conducted</p><p>with IT professionals who work remotely for Swiss or Swiss-based international companies. IT professionals have been pioneers in practising virtual work long before the outbreak of the COVID-19 crisis and have long engaged in various forms of mobility, including tourism and labour migration. A focus on their remote work and im/mobility practices can shed light on the possibilities and challenges of the virtualization of work, especially in the context of the pandemic. We discuss how geographical immobility, combined with digital technology, becomes important in building a career and a personal life, staying 'rooted' and reconstituting the boundaries between work and non-work.</p>

opencc-by-4.0Nov 2023View details →
zenodo48/100

Atom probe tomography nomad-FAIR demonstrator dataset R76-23219-v01.epos.apth5

<p>This is the dataset of an atom probe tomography experiment which is provided open source for testing the possibility of implementing an open source encyclopedia for experimental materials science datasets, including techniques to begin with such as Scanning Transmission Electron Microscopy (STEM), Multidimensional Photo Emission Spectroscopy (MPES), and Atom Probe Tomography (APT) / Field Ion Microscopy (FIM).</p> <p><strong>This repository serves three aims:</strong></p> <p>1. The dataset is of scientific interest. Specifically, it captures the result of a cutting-edge APT experiment detailed exemplarily in DOI: 10.1038/s41467-018-03115-0 (Fig. 6a &quot;Se+Na2Se treatment&quot;) by Torsten Schwarz and coworkers.</p> <p>2. The dataset contributes to tests of an extension to &quot;The NOMAD Laboratory&quot; (https://nomad-coe.eu/): nomad-FAIR. Specifically, to test various aspects of an automatized metadata parsing and processing pipeline to enable the extraction of domain-specific JSON metadata files into a NOMAD-conformant JSON file, ultimately aiming for searchable and repurposable dataset documentation. This serves two purposes: on the one hand to contextualize each dataset within NOMAD. On the other hand to serve as a starting point to parse potential interesting content from the heavy data HDF5 file to reduce unnecessary file access.<br> The implementation of nomad-FAIR is coordinated by Markus Scheidgen.<br> The APT domain-specific parser is developed by Markus K&uuml;hbach.</p> <p>3. The dataset constitutes further a test of an open format specification for storing atom probe tomography data using the Hierarchical Data Format (HDF5). This is a recent initiative of the International Field Emission Society&#39;s (IFES) atom probe tomography technical committee. In this repository it is detailed an exemplar proposal of how to store acquisition-side relevant results and context of an APT experiment into a HDF5 file and complementary metadata files such as JSON. Implementation of this HDF5-based storage solution for APT data is lead by Markus K&uuml;hbach.</p> <p><br> <strong>The organization of this repository with respect to above aims is as follows:</strong></p> <p>-The original EPOS file of the measured is contained in the compressed *.epos.tar.gz archive.</p> <p>-The *.apth5 file is a transcoded version of the EPOS file. Therein, x,y,z data columns are stripped.</p> <p>-The correspondingly named *.json file is the file which nomad-FAIR parses metadata from.</p> <p>-Other files constitute logs of the transcoding process.</p> <p><br> <strong>Funding:</strong><br> The work was partially supported by BiGmax, the Max Planck Society&#39;s Research Network on Big-Data-Driven Materials-Science.</p>

openapache2.0May 2019View details →
zenodo44/100

Atom probe tomography nomad-FAIR demonstrator dataset R76-20231-v01.epos.apth5

<p>This is the dataset of an atom probe tomography experiment which is provided open source for testing the possibility of implementing an open source encyclopedia for experimental materials science datasets, including techniques to begin with such as Scanning Transmission Electron Microscopy (STEM), Multidimensional Photo Emission Spectroscopy (MPES), and Atom Probe Tomography (APT) / Field Ion Microscopy (FIM).</p> <p><strong>This repository serves three aims:</strong></p> <p>1. The dataset is of scientific interest. Specifically, it captures the result of a cutting-edge APT experiment detailed exemplarily in DOI 10.1017/S1431927616012654 Fig. 1d by Zirong Peng and coworkers.</p> <p>2. The dataset contributes to tests of an extension to &quot;The NOMAD Laboratory&quot; (https://nomad-coe.eu/): nomad-FAIR. Specifically, to test various aspects of an automatized metadata parsing and processing pipeline to enable the extraction of domain-specific JSON metadata files into a NOMAD-conformant JSON file, ultimately aiming for searchable and repurposable dataset documentation. This serves two purposes: on the one hand to contextualize each dataset within NOMAD. On the other hand to serve as a starting point to parse potential interesting content from the heavy data HDF5 file to reduce unnecessary file access.</p> <p>The implementation of nomad-FAIR is coordinated by Markus Scheidgen.<br> The APT domain-specific parser is developed by Markus K&uuml;hbach.</p> <p>3. The dataset constitutes further a test of an open format specification for storing atom probe tomography data using the Hierarchical Data Format (HDF5). This is a recent initiative of the International Field Emission Society&#39;s (IFES) atom probe tomography technical committee. In this repository it is detailed an exemplar proposal of how to store acquisition-side relevant results and context of an APT experiment into a HDF5 file and complementary metadata files such as JSON. Implementation of this HDF5-based storage solution for APT data is lead by Markus K&uuml;hbach.</p> <p><br> <strong>The organization of this repository with respect to above aims is as follows:</strong></p> <p>-The original EPOS file of the measured is contained in the compressed *.epos.tar.gz archive.</p> <p>-The *.apth5 file is a transcoded version of the EPOS file. Therein, x,y,z data columns are stripped.</p> <p>-The correspondingly named *.json file is the file which nomad-FAIR parses metadata from.</p> <p>-Other files constitute logs of the transcoding process.</p> <p><strong>Funding:</strong><br> The work was partially supported by BiGmax, the Max Planck Society&#39;s Research Network on Big-Data-Driven Materials-Science.</p>

openapache2.0May 2019View details →
dryad40/100

Food and social cues modulate reproductive development but not migratory behavior in a nomadic songbird, the Pine Siskin (Pinus spinus)

<p>Many animals rely on photoperiodic and non-photoperiodic environmental cues to gather information and appropriately time life history stages across the annual cycle, such as reproduction, molt, and migration. Here, we experimentally demonstrate that the reproductive physiology, but not migratory behavior, of captive Pine Siskins responds to both food and social cues during the spring migratory-breeding period. Pine Siskins are a nomadic finch with a highly flexible breeding schedule and, in the spring, free-living Pine Siskins can wander large geographic areas and opportunistically breed. To understand the importance of non-photoperiodic cues to the migratory-breeding transition, we maintained individually housed birds on either a standard or enriched diet in the presence of group-housed heterospecifics or conspecifics experiencing either the standard or enriched diet type. We measured body condition and reproductive development of all Pine Siskins and, among individually housed Pine Siskins, quantified nocturnal migratory restlessness. In group-housed birds, the enriched diet caused increases in body condition and, among females, promoted reproductive development. Among individually housed birds, female reproductive development differed between treatment groups whereas male reproductive development did not. Specifically, individually housed females showed greater reproductive development when presented with conspecifics compared to heterospecifics. The highest rate of female reproductive development, however, was observed amongst individually housed females provided the enriched diet and maintained with group-housed conspecifics on an enriched diet. Changes in nocturnal migratory restlessness did not vary by treatment group or sex. By manipulating both the physical and social environment, this study demonstrates how multiple environmental cues can affect the timing of transitions between life history stages with differential responses between sexes and between migratory and reproductive systems.</p>

opencc-zeroJan 2024View details →
zenodo40/100

Paleolithic Divergence and Multiple Neolithic Expansions of Ancestral Nomadic Emperor-related Paternal Lineages

Open the record for dataset details and reuse information.

opencc-by-4.0Nov 2024View details →
zenodo40/100

Atom probe tomography nomad-FAIR demonstrator dataset R76-30057-v01.epos.apth5

<p>This is the dataset of an atom probe tomography experiment which is provided open source for testing the possibility of implementing an open source encyclopedia for experimental materials science datasets, including techniques to begin with such as Scanning Transmission Electron Microscopy (STEM), Multidimensional Photo Emission Spectroscopy (MPES), and Atom Probe Tomography (APT) / Field Ion Microscopy (FIM).</p> <p><strong>This repository serves three aims:</strong></p> <p>1. The dataset is of scientific interest. Specifically, it captures the result of a cutting-edge APT experiment whose details are going to be reported in an upcoming publication by Shyam Katnagallu and coworkers.</p> <p>2. The dataset contributes to tests of an extension to &quot;The NOMAD Laboratory&quot; (https://nomad-coe.eu/): nomad-FAIR. Specifically, to test various aspects of an automatized metadata parsing and processing pipeline to enable the extraction of domain-specific JSON metadata files into a NOMAD-conformant JSON file, ultimately aiming for searchable and repurposable dataset documentation. This serves two purposes: on the one hand to contextualize each dataset within NOMAD. On the other hand to serve as a starting point to parse potential interesting content from the heavy data HDF5 file to reduce unnecessary file access.<br> The implementation of nomad-FAIR is coordinated by Markus Scheidgen.<br> The APT domain-specific parser is developed by Markus K&uuml;hbach.</p> <p>3. The dataset constitutes further a test of an open format specification for storing atom probe tomography data using the Hierarchical Data Format (HDF5). This is a recent initiative of the International Field Emission Society&#39;s (IFES) atom probe tomography technical committee. In this repository it is detailed an exemplar proposal of how to store acquisition-side relevant results and context of an APT experiment into a HDF5 file and complementary metadata files such as JSON. Implementation of this HDF5-based storage solution for APT data is lead by Markus K&uuml;hbach.</p> <p><strong>The organization of this repository with respect to above aims is as follows:</strong></p> <p>-The original EPOS file of the measured is contained in the compressed *.epos.tar.gz archive.</p> <p>-The *.apth5 file is a transcoded version of the EPOS file. Therein, x,y,z data columns are stripped.</p> <p>-The correspondingly named *.json file is the file which nomad-FAIR parses metadata from.</p> <p>-Other files constitute logs of the transcoding process.</p> <p><br> <strong>Funding:</strong><br> The work was partially supported by BiGmax, the Max Planck Society&#39;s Research Network on Big-Data-Driven Materials-Science.</p>

openapache2.0May 2019View details →
zenodo40/100

Atom probe tomography nomad-FAIR demonstrator dataset R76-31053-v01.epos.apth5

<p>This is the dataset of an atom probe tomography experiment which is provided open source for testing the possibility of implementing an open source encyclopedia for experimental materials science datasets, including techniques to begin with such as Scanning Transmission Electron Microscopy (STEM), Multidimensional Photo Emission Spectroscopy (MPES), and Atom Probe Tomography (APT) / Field Ion Microscopy (FIM).</p> <p><strong>This repository serves three aims:</strong></p> <p>1. The dataset is of scientific interest. Specifically, it captures the result of a cutting-edge APT experiment detailed in an upcoming paper by Ye Wei and coworkers.</p> <p>2. The dataset contributes to testing an extension of &quot;The NOMAD Laboratory&quot; (https://nomad-coe.eu/): nomad-FAIR. Specifically, to test various aspects of its automatized metadata parsing and processing pipeline to enable the extraction of domain-specific JSON metadata files into a NOMAD-conformant JSON file, ultimately aiming for searchable and repurposable dataset documentation. This serves two purposes: on the one hand to contextualize each dataset within NOMAD. On the other hand to serve as a starting point to parse potential interesting content from the heavy data HDF5 file to reduce unnecessary file access.<br> The implementation of nomad-FAIR is coordinated by Markus Scheidgen.<br> The APT domain-specific parser is developed by Markus K&uuml;hbach.</p> <p>2. The dataset constitutes further a test of an open format specification for storing atom probe tomography data using the Hierarchical Data Format (HDF5). This is a recent initiative of the International Field Emission Society&#39;s (IFES) atom probe tomography technical committee. In this repository it is detailed an exemplar proposal of how to store acquisition-side relevant results and context of an APT experiment into a HDF5 file and complementary metadata files such as JSON. Implementation of this HDF5-based storage solution for APT data is lead by Markus K&uuml;hbach.</p> <p><br> <strong>The organization of this repository with respect to above aims is as follows:</strong></p> <p>-The original EPOS file of the measured is contained in the compressed *.epos.tar.gz archive.</p> <p>-The *.apth5 file is a transcoded version of the EPOS file. Therein, x,y,z data columns are stripped.</p> <p>-The correspondingly named *.json file is the file which nomad-FAIR parses metadata from.</p> <p>-Other files constitute logs of the transcoding process.</p> <p><br> <strong>Funding:</strong><br> The work was partially supported by BiGmax, the Max Planck Society&#39;s Research Network on Big-Data-Driven Materials-Science.</p>

openapache2.0May 2019View details →
zenodo40/100

Supplementary material to "Habitat detection, habitat choice copying, or mating benefits: what drives conspecific attraction in a nomadic songbird?"

<p><strong>Abstract</strong></p> <ol> <li>Conspecific attraction during habitat selection is common among animals, but the ultimate (i.e., fitness-related) reasons for this behavior often remain enigmatic.</li> <li>We aimed to evaluate the following three hypotheses for conspecific attraction during the breeding season in male Wood Warblers (<em>Phylloscopus</em> <em>sibilatrix</em>): the habitat detection hypothesis, the habitat choice copying hypothesis, and the female preference hypothesis. These hypotheses make different predictions with respect to the relative importance of social and non-social information during habitat assessment, and whether benefits accrue as a consequence of aggregation.</li> <li>We tested the above hypotheses using a combination of a two-year playback experiment, spatial statistics and mate choice models.</li> <li>The habitat detection hypothesis was the most likely explanation for conspecific attraction and aggregation in male Wood Warblers, based on the following results: 1) males were attracted to conspecific song playbacks, but fine-scale habitat heterogeneity was the better predictor of spatial patterns in the density of settling males; 2) male pairing success did not increase, but instead slightly decreased, as connectivity with other males (i.e., the number and proximity of neighboring males) increased.</li> <li>Our study highlights how consideration of the process by which animals detect and assess habitat, together with the potential fitness consequences of resulting aggregations, are important for understanding conspecific attraction and spatially clustered distributions.</li> </ol>

opencc-by-4.0Nov 2022View details →
dryad40/100

Food and social cues modulate reproductive development but not migratory behavior in a nomadic songbird, the Pine Siskin (Pinus spinus)

Open the record for dataset details and reuse information.

publicJan 2024View details →
zenodo36/100

NOMAD mini-app suite checkpoints

<p>Checkpoint inputs for the execution of the NOMAD mini-apps suite. Calculation of ZrO2 crystal with the G0W0 implementations of exciting and Abinit, and FHI-aims, and hcp-Si test case for FHI-aims code.</p>

openapache2.0Nov 2023View details →
zenodo36/100

Mountain troll statue (Nomad test 2)

Quick sculpt in **[Nomad Sculpt](https://play.google.com/store/apps/details?id=com.stephaneginier.nomad&amp;hl=enUS&amp;gl=US)** (full version). Smartphone - BV6000s (Android 7). * [**Troll test bust (Nomad test 1)**](https://sketchfab.com/3d-models/troll-test-bust-nomad-test-1-b28bd1af1a5049389045e3869f0f665b) * [**Troll bust (Nomad test 3)**](https://sketchfab.com/3d-models/troll-bust-nomad-test-3-c074ee24fc0946c98fcf3158d5111495/) # **[ArtStation](https://www.artstation.com/artwork/rAKXaE)** *Nomad (1.32.1), Blender (2.91), Substance Painter (2020.2.2)* Source: Objaverse 1.0 / Sketchfab

opencc-byJan 2021View details →
dryad36/100

Social environment influences termination of nomadic migration

<p>The final stage of migration, when animals terminate migratory movements and transition to a more sedentary state, remains the least understood phase of migration. Whereas migrants that return to the same locations each year may use mechanisms associated with locating a specific destination, migrants with low site fidelity, such as nomadic migrants, may rely on local environmental cues to determine when to cease migratory movements. Using an experiment with captive birds, we tested whether the presence of a conspecific influences the termination of migration, indicated by changes in behaviour and physiology, in a nomadic migrant (the pine siskin, <em>Spinus pinus</em>). We paired migratory birds with a non-migratory individual or left migratory and non-migratory individuals unpaired. Migratory paired birds had a significant decline in nocturnal activity immediately after pairing and activity levels remained lower two weeks later, with significant declines in energetic reserves and flight muscle size also observed. In contrast, migratory unpaired birds maintained high levels of activity and energetic reserves. These results provide evidence for a role of the social environment in migratory termination decisions. Social cues may be particularly useful in nomadic migrants, such as pine siskins, to facilitate settling in high quality, but unfamiliar, habitats.</p>

opencc-zeroMar 2022View details →
dryad36/100

Data for: Telomere length predicts timing and intensity of migratory behavior in a nomadic songbird

<p>Our understanding of state-dependent behavior is reliant on identifying physiological indicators of condition. Telomeres are of growing interest for understanding behavior as they capture differences in biological state and residual lifespan. To understand the significance of variable telomere lengths for behavior and test two hypotheses describing the relationship between telomeres and behavior (i.e., the causation and the selective adoption hypotheses), we assessed if telomere lengths are longitudinally repeatable traits related to spring migratory behavior in captive pine siskins (<em>Spinus pinus</em>). Pine siskins are nomadic songbirds that exhibit highly flexible, facultative migrations, including a period of spring nomadism. Captive individuals exhibit extensive variation in spring migratory restlessness and are an excellent system for mechanistic studies of migratory behavior. Telomere lengths were found to be significantly repeatable (R = 0.51) over 4 months, and shorter pre-migratory telomeres were associated with earlier and more intense expression of spring nocturnal migratory restlessness. Telomere dynamics did not vary with migratory behavior. Our results describe the relationship between telomere length and migratory behavior and provide support for the selective adoption hypothesis. More broadly, we provide a novel perspective on the significance of variable telomere lengths for animal behavior and the timing of annual cycle events.</p>

opencc-zeroJul 2022View details →
zenodo36/100

FAIRmat Tutorial 1: Publish and Explore Data with NOMAD

<p>This tutorial is dedicated to FAIR data management of materials science data based on the NOMAD platform.</p> <p>We will cover the whole data-life cycle: starting with data on your hard drive, we learn how to prepare, upload, publish data, and reference them with a DOI. Furthermore, we will learn how to explore, download, and use data that were published on NOMAD before. We will perform these steps with NOMAD's graphical user interface and its APIs. This is just one installment in a series of tutorials; other tutorials will cover data analysis, lab notebooks, using NOMAD locally (NOMAD Oasis), workflows, and much more.<br><br><strong>Disclaimer:</strong> NOMAD is being continuously developed based on input and feedback from the scientific community. Hence the features, services or interface may have changed since the time of recording of this video. For up-to-date information please consult our latest tutorials and the NOMAD documentation <a href="https://nomad-lab.eu/prod/v1/docs/">https://nomad-lab.eu/prod/v1/docs/</a></p>

opencc-by-4.0Feb 2022View details →
zenodo36/100

FAIRmat Tutorial 4: NOMAD Oasis and FAIR data collaboration and sharing

<p>FAIRmat further develops NOMAD from a central publishing service to a federated data management platform. The NOMAD Oasis is part of this. Institutes, universities, and research groups use NOMAD Oasis as a local repository to manage their research data. Each method is different and requires ways of data acquisition, different data formats, different analysis tools, but FAIR-ness requires that all data is well described with rich specific metadata.</p> <p>In this tutorial, we focus on how to get started with NOMAD Oasis and adapt it to your research. One the first day, two talks will introduce you the general FAIRmat strategy and its "bottom-up" approach to manage heterogenous but FAIR data. On the second day, we will give the practical, step-by-step guides to get started with an Oasis: How you can install NOMAD Oasis, create example data, add schemas, and create ELNs.</p> <p>&nbsp;</p> <p><strong>Disclaimer:</strong> NOMAD is being continuously developed based on input and feedback from the scientific community. Hence the features, services or interface may have changed since the time of recording of this video. For up-to-date information please consult our latest tutorials and the NOMAD documentation <a href="https://nomad-lab.eu/prod/v1/docs/">https://nomad-lab.eu/prod/v1/docs/</a></p> <p><strong>&nbsp;</strong></p>

opencc-by-4.0May 2022View details →
zenodo36/100

FAIRmat Tutorial 13: NOMAD for Experimental Data Management in Synthesis

<p>FAIRmat Tutorial 13, presented by&nbsp;<a href="https://www.fairmat-nfdi.eu/fairmat/areas-fairmat/area-a-fairmat" target="_blank" rel="noopener">FAIRmat Area A Synthesis</a>, introduces&nbsp;<a href="https://nomad-lab.eu/nomad-lab/" target="_blank" rel="noopener">NOMAD</a>&nbsp;and&nbsp;<a href="https://nomad-lab.eu/nomad-lab/nomad-oasis.html">NOMAD Oasis</a>&nbsp;as essential tools for research data management (RDM). This tutorial will specifically demonstrate how to utilize these tools for managing experimental materials science data, with a particular focus on synthesis data.</p> <p>Participants will learn about NOMAD's versatile data model, which ensures data interoperability, and its various types and levels of schemas, including custom yaml schemas, community standards, plugins, and BaseSections. The tutorial will also cover the integration of NOMAD with Electronic Lab Notebooks (ELNs) to enhance data documentation and management.&nbsp;A practical session will guide users through a typical synthesis data example, demonstrating how to start from NOMAD's built-in ELNs, develop a data schema, convert it into a NOMAD plugin for automated data processing, and deploy the schema on a local NOMAD Oasis. This hands-on approach will provide invaluable insights into customizing NOMAD to fit specific experimental workflows.</p> <p>The session is designed to serve various user groups, including standard users, data stewards &amp; data scientists, and system administrators, ensuring that each participant gains a comprehensive understanding of the tool's capabilities and applications in their respective roles. Join us to explore how NOMAD can transform your approach to data management in experimental synthesis, leading to more efficient and coherent research outputs - FAIR principles in practice.</p> <p>&nbsp;</p> <p>Disclaimer: NOMAD is being continuously developed based on input and feedback from the scientific community. Hence the features, services or interface may have changed since the time of recording of this video. For up-to-date information please consult our latest tutorials and the NOMAD documentation <a href="https://nomad-lab.eu/prod/v1/docs/">https://nomad-lab.eu/prod/v1/docs/</a></p>

opencc-by-4.0Jun 2024View details →
zenodo36/100

FAIRmat Tutorial 7: Molecular Dynamics Trajectories and Workflows in NOMAD

<p>The FAIRmat consortium is committed to extending the NOMAD infrastructure to a wide variety of materials science data. To support soft matter simulations (e.g., atomistic molecular dynamics simulations), a number of challenges arise, primarily due to the volume and variety of data. The FAIRmat team is working to overcome these challenges, and the NOMAD infrastructure is now equipped with new metadata, features, and tools specifically designed to ease the FAIR treatment of trajectory data and workflows. Parsers have been implemented for two of the most popular molecular dynamics codes (Gromacs and Lammps), with plans for quick expansion to additional codes within the next year. The NOMAD Metainfo now describes the system&rsquo;s hierarchical structure (in terms of bond topology) through the concept of fixed chemical bonds defined within classical force fields. The NOMAD GUI provides a bespoke overview page for molecular dynamics data, which includes tools that ease visualization of the system topology and automatically displays structural, dynamic, and thermodynamic observables that can assist in a fast assessment of system equilibration. Additionally, a native workflow visualizer allows the user to connect individual simulation entries into complex workflows. Finally, the NOMAD Python module facilitates custom trajectory analysis, for instance in a Jupyter notebook, with functions that convert a NOMAD archive entry to an instance of the MDAnalysis data class.</p> <p>This tutorial invites both experienced and completely novice NOMAD users to learn about these new features for molecular dynamics trajectories. A brief introduction to the FAIRmat consortium and the NOMAD infrastructure will be given, followed by guided and interactive tutorials highlighting the various features described above</p> <p><strong>Disclaimer:</strong> NOMAD is being continuously developed based on input and feedback from the scientific community. Hence the features, services or interface may have changed since the time of recording of this video. For up-to-date information please consult our latest tutorials and the NOMAD documentation <a href="https://nomad-lab.eu/prod/v1/docs/">https://nomad-lab.eu/prod/v1/docs/</a></p>

opencc-by-4.0Mar 2023View details →
zenodo36/100

FAIRmat Tutorial 8: Using NOMAD as an Electronic lab notebook (ELN) for FAIR data

<p>Approaching the era of big data-driven materials science, one crucial step to collecting, describing, and sharing experimental data is the adoption of electronic laboratory notebooks (ELN). At present, most synthesis data are not structured comprehensively or not even stored digitally but in handwritten lab books. The&nbsp;<a href="https://www.fairmat-nfdi.eu/fairmat" target="_blank" rel="noopener">FAIRmat project</a>&nbsp;is offering a solution by developing and operating the open-source software&nbsp;<a href="https://nomad-lab.eu/" target="_blank" rel="noopener">NOMAD</a>. NOMAD provides ELN functionalities that aim for a secure environment to protect the integrity of both data and metadata, whilst also affording the flexibility to adopt new synthetic processes or changes to existing ones without recourse to further software development.</p> <p>In this FAIRmat tutorial, we focus on the usage of NOMAD as an ELN which enables the users to generate data following the FAIR principles. We will show how we adopted NOMAD to capture data from synthesis and experiment and make use of an automated data workflow. The key point here is writing a data schema and its implementation in NOMAD. After defining the used terms, we will start explaining this process by writing a simple schema and then go on to more advanced usage of NOMAD, e.g. using the build in csv/xlsx-file parser, automatized data visualization, adding extra functionality by usage of base classes, referencing to other data entries in NOMAD, and searching your ELN data. The tutorial is aimed at both scientists new to NOMAD and structured data as well as data stewards. Each lecture of the tutorial will be followed directly by a Q&amp;A session and a hands-on tutorial.</p> <p><strong>Disclaimer:</strong> NOMAD is being continuously developed based on input and feedback from the scientific community. Hence the features, services or interface may have changed since the time of recording of this video. For up-to-date information please consult our latest tutorials and the NOMAD documentation <a href="https://nomad-lab.eu/prod/v1/docs/">https://nomad-lab.eu/prod/v1/docs/</a></p>

opencc-by-4.0Apr 2023View details →
zenodo36/100

FAIRmat Tutorial 10: FAIR electronic-structure data in NOMAD

<p>The FAIRmat consortium aims to extend the current NOMAD-Lab (meta)data structure to a large variety of materials-science data. Given our strong foundation in computational data, especially DFT, we are now extending our scope. In this tutorial, we will explain the (meta)data structure for&nbsp;<em>ab initio</em>&nbsp;calculations, with an emphasis on precision and on going beyond the accuracy limits of DFT.</p> <p>This tutorial is suitable for new and experienced researchers who want to learn about the latest features in treating DFT and beyond DFT methodologies. We will give a brief introduction to the NOMAD Lab and the FAIRmat consortium, followed by a guided tutorial where we will:</p> <ol> <li>Show you how you can upload, publish, and explore&nbsp;<em>ab initio</em>&nbsp;computational data.</li> <li>Show you how to define your own complex workflows, linking between DFT and beyond DFT calculations.</li> <li>Give you examples of the post-processing capabilities of the NOMAD Lab.</li> </ol> <p>In more detail: Precision settings are now searchable, allowing for &ldquo;data-quality&rdquo; filtering over the NOMAD data. Using simple queries, we will show how to generate a sampling that extrapolates towards the basis set limit. For those already familiar with their code of choice, there is also the native tier quick filter that matches recommended developer settings. Moreover, for ease in navigating the density-functional space, we will be presenting a new, knowledge-based categorization system that is more refined and semantically richer than Jacob&rsquo;s ladder. Finally, we will show the latest developed schemas which try to cover computational techniques that go beyond DFT and which are useful to treat excited-state and advanced many-body properties: the&nbsp;<em>GW</em> approximation, Bethe-Salpeter equation (BSE) solutions, tight-binding-based modeling (using Wannier projections or Slater-Koster fittings), and Dynamical Mean-Field Theory (DMFT).&nbsp;</p> <p><strong>Disclaimer: </strong>NOMAD is being continuously developed based on input and feedback from the scientific community. Hence the features, services or interface may have changed since the time of recording of this video. For up-to-date information please consult our latest tutorials and the NOMAD documentation <a href="https://nomad-lab.eu/prod/v1/docs/">https://nomad-lab.eu/prod/v1/docs/</a></p>

opencc-by-4.0Jul 2023View details →
zenodo36/100

FAIRmat Tutorial 12: Getting started with NOMAD and NOMAD Oasis for research data management (RDM)

<p>In this online tutorial we will cover the first steps with NOMAD and NOMAD Oasis. We will briefly cover the core NOMAD functionality on exploring, uploading, sharing and publishing data with NOMAD. We will then explore options for creating your own schemas and plugins to support new file formats and create custom electronic lab notebooks (ELNs), we show ways to customize an NOMAD Oasis, and how to contribute to the development of NOMAD and its ecosystem.</p> <p>The tutorial includes an introduction talk about NOMAD and FAIRmat, including the latest changes and features in NOMAD. This is followed by a practical follow along session, where we go through a Jupyter notebook that demonstrates how to use NOMAD for managing custom data and file types. Based on a simple given dataset, we show how to model the data in a schema, do parsing and normalization, process data, access existing data with NOMAD's API for analysis, and how to add visualization to your data.</p> <p>&nbsp;</p> <p><strong>Disclaimer: </strong>NOMAD is being continuously developed based on input and feedback from the scientific community. Hence the features, services or interface may have changed since the time of recording of this video. For up-to-date information please consult our latest tutorials and the NOMAD documentation <a href="https://nomad-lab.eu/prod/v1/docs/">https://nomad-lab.eu/prod/v1/docs/</a></p>

opencc-by-4.0Mar 2024View details →

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