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204 results for “Macedonia”
Nuclear Magnetic Resonance values for the Eptachori, Pentalofos and Tsotyli formations in West Macedonia
<p>The data comprises work under the Project Pilot Strategy GA No. 101022664, funded by the European Union. </p> <p>The work relates to rock samples collected in 2022 in West Macedonia, Greece. For full details, please refer to the following:</p> <ol> <li>Tsotyli formation: <a href="https://app.geosamples.org/sample/igsn/IE5770001">https://app.geosamples.org/sample/igsn/IE5770001</a> - <strong>WGS84 Lat : 40.3075, </strong><strong>WGS84 Long : 21.3354</strong></li> <li>Pentalofos formation: <a href="https://app.geosamples.org/sample/igsn/IE5770002">https://app.geosamples.org/sample/igsn/IE5770002</a> - <strong>WGS84 Lat : 40.1332,</strong> <strong>WGS84 Long : 21.1997</strong></li> <li>Eptachori formation: <a href="https://app.geosamples.org/sample/igsn/IE5770003">https://app.geosamples.org/sample/igsn/IE5770003</a> - <strong>WGS84 Lat : 40.1332, </strong><strong>WGS84 Long : 21.1997</strong></li> </ol> <p>The focus of the work is related to CO2 storage in appropriate saline aquifers in West Macedonia. The bulk samples were shipped to IFP Energies for porosity and permeability laboratory investigation conducted by Nuclear Magnetic Resonance techniques. </p> <p>Further to the raw data from the NMR, a depiction of the latter is provided in the corresponding figures</p> <p> </p>
X-ray diffraction laboratory investigation for the Eptachori, Pentalofos and Tsotyli formations in West Macedonia
<p>The data comprises work under the Project Pilot Strategy GA No. 101022664, funded by the European Union. </p> <p>The work relates to rock samples collected in 2022 in West Macedonia, Greece. For full details, please refer to the following:</p> <ol> <li>Tsotyli formation: <a href="https://app.geosamples.org/sample/igsn/IE5770001">https://app.geosamples.org/sample/igsn/IE5770001</a> - <strong>WGS84 Lat : 40.3075, </strong><strong>WGS84 Long : 21.3354</strong></li> <li>Pentalofos formation: <a href="https://app.geosamples.org/sample/igsn/IE5770002">https://app.geosamples.org/sample/igsn/IE5770002</a> - <strong>WGS84 Lat : 40.1332,</strong> <strong>WGS84 Long : 21.1997</strong></li> <li>Eptachori formation: <a href="https://app.geosamples.org/sample/igsn/IE5770003">https://app.geosamples.org/sample/igsn/IE5770003</a> - <strong>WGS84 Lat : 40.1332, </strong><strong>WGS84 Long : 21.1997</strong></li> </ol> <p>The focus of the work is related to CO2 storage in appropriate saline aquifers in West Macedonia. Here are listed the raw results from the X-ray diffraction laboratory investigation.</p> <p>XRD equipment: Bruker D8 Advance</p> <p>Configuration parameters for XRD analysis: </p> <table> <tbody> <tr> <td>Type</td> <td>Locked couple</td> </tr> <tr> <td>Start</td> <td>3.000 degrees</td> </tr> <tr> <td>End</td> <td>93.009 degrees</td> </tr> <tr> <td>Step</td> <td>0.019 degrees</td> </tr> <tr> <td>Step time</td> <td>96s </td> </tr> <tr> <td>Temp</td> <td>25 centigrade (room) </td> </tr> <tr> <td>Time started</td> <td>0s</td> </tr> <tr> <td>2-Theta</td> <td>3.000 degrees</td> </tr> <tr> <td>Theta</td> <td>1.500 degrees</td> </tr> </tbody> </table>
Results complementing the European Union summary report on surveillance for the presence of transmissible spongiform encephalopathies (TSE) - North Macedonia
<p>This dataset contains TSE surveillance results in cattle, sheep, goats, cervids and other species, and genotyping in sheep, pursuant to Regulation (EC) 999/2001.</p> <p><strong>Reporting authorities contributing to each data collection</strong>:</p> <ul> <li>TSE_2023_MK: Food and Veterinary Agency (FVA)</li> <li>TSE_2022_MK: Food and Veterinary Agency (FVA)</li> <li>TSE_2021_MK: Food and Veterinary Agency (FVA)</li> <li>TSE_2020_MK: Food and Veterinary Agency (FVA)</li> <li>TSE_2019_MK: Food and Veterinary Agency (FVA)</li> </ul>
National Checklists 2017: Macedonia Species List
Lists of taxa for each country and a few other administrative zones harvested from effechecka using simplified versions of geonames polygons. See <p></p>https://github.com/diatomsRcool/checklists for details<p></p>A list of species from Macedonia collected using effechecka and geonames polygons
National Checklists 2019: Macedonia Species List
Lists of taxa for each country and a few other administrative zones harvested from effechecka using simplified versions of geonames polygons. See <p></p>https://github.com/diatomsRcool/checklists for details.<p></p>A list of species from Macedonia collected using effechecka and geonames polygons
Dataset for Green Transition Policies, Stakeholders and Practices in North Macedonia
<p>This dataset contributed to deliverable 4.2 Regional Mapping Report and shows the North Macedonian mapping. This report is the second deliverable of WP4 – Measuring and assessing impacts and costs of a just green transition in the WB, of the GreenFORCE project. It was jointly authored by the WB project partners, as well as 2 subcontracted parties from the region.</p> <p>The EU Economic and Investment Plan for the WB includes a green agenda for the WB, with pillars to be pursued for transitioning towards a carbon-neutral economy. Such a shift will surely challenge the economies and societies in the WB. The social and policy context is yet fragile to allow for the development and mass distribution of green transition technologies, while human resources are not prepared and/or are insufficient to produce and implement innovation. Yet, the green transition also paves the way towards new development and resilience opportunities. The research will inform on the readiness/potential of societal actors (industry, academia, policymakers, civic society) to embrace the pathways to transformation, and will propose a framework for continuous monitoring of impacts and costs. The key findings and lessons learnt derived within WP4 will be transferred into the scientific papers and policy briefs (WP 2 & 3) and published under the dissemination events (WP5).</p> <p>Regional mapping is a key task for the research, contributing to initial data gathering and the refinement of the research proposal, and to the sub-question on the identification of sectors and territories affected by the transitions and current progress of transition practices. This is a participatory mapping, engaging local stakeholders and communities to reveal local knowledge. Each WB partner will produce the respective country report, and Co-PLAN will work on the final regional report.</p> <p>This deliverable is the final regional report. It will also include the mapping frame used to conduct the mapping process. The WB partners will do the mapping for their own countries. The PC will subcontract data gathering for the remaining countries. The mapping is done for actors, practices and policies in place, territories upon the level of relevance and potential for engaging in green transition; and sectors. All partners will design the mapping frame, using also knowledge from other mapping processes. The frame will contain the type of information to be collected, the standardisation of data entry, and the tailored instruments to be deployed for accessing information.</p>
Data management in the social sciences in Macedonia [Webinar recording]
<p>This webinar aimed to introduce social science researchers to the basic principles of data management, including the creation of a Data management plan, which is an important tool for planning the research project.</p> <p>The webinar consisted of three parts. The first part introduced researchers with the basic principles of data management including the benefits of adopting Data management plans (DMPs). The DMP follows the research projects’ life cycle, starting with the initial phases of Planning and Organization and documentation of research data. This part also included a presentation of best practices for creation of appropriate structure of folders and data files, as well as instructions for their naming, documentation and organization.</p> <p>The second part of the webinar focused on the following three phases of the project life cycle: Data processing, Preservation and Protection. Contemporary social science presumes the respect of high level ethical standards during the handling of research data, in accordance with legal rules and best practices in this area.</p> <p>The last part of the webinar was dedicated to the phases of Publication - familiarizing the researchers with the possibilities of data preservation and publishing; and Data discovery - discussing the ways and means to acquire social science data, including the secondary use of data produced by other researchers.</p> <p>The video is available on<a href="https://www.youtube.com/watch?v=n05WTs58CMY"> the CESSDA Training YouTube channel</a>.</p>
FIG. 3 in The saber-toothed cat Homotherium latidens (Owen, 1846) from the lower Pleistocene locality Dafnero, Western Macedonia, Greece
FIG. 3. — Comparison of the crania of Homotherium latidens (Owen, 1846): A, DFN3-152 from Dafnero-3; B, MNHN.F.PET2000 (cast); C, Perrier (France), Senèze (France), FSL-210 991 (cast); D, IN-I 929 from Incarcal (Spain). Views: 1, lateral; 2, dorsal; 3, ventral. Scale bar: c. 10 cm.
FIG. 5 in The saber-toothed cat Homotherium latidens (Owen, 1846) from the lower Pleistocene locality Dafnero, Western Macedonia, Greece
FIG. 5. — Box-plot diagram comparing the upper carnassial length of Homotherium Fabrini, 1890 and Megantereon Croizet & Jobert, 1828 from various European localities. Data sources as in Fig. 3.
FIG. 1 in The saber-toothed cat Homotherium latidens (Owen, 1846) from the lower Pleistocene locality Dafnero, Western Macedonia, Greece
FIG. 1. — Homotherium latidens (Owen, 1846), Dafnero 3, Macedonia Greece, middle Villafranchian, cranium DFN3-152, in: A, left lateral; B, right lateral; C, dorsal; D, ventral; E, detailed canine views. Scale bar: 5 cm.
FIG. 2 in The saber-toothed cat Homotherium latidens (Owen, 1846) from the lower Pleistocene locality Dafnero, Western Macedonia, Greece
FIG. 2. — Homotherium latidens (Owen, 1846), Dafnero 3, Macedonia Greece, middle Villafranchian, humerus DFN3-153 in: A, anterior; B, posterior; C, lateral; D, medial views. Scale bar: 5 cm.
FIG. 4 in The saber-toothed cat Homotherium latidens (Owen, 1846) from the lower Pleistocene locality Dafnero, Western Macedonia, Greece
FIG. 4. — Scatter diagram comparing the upper canine dimensions of Homotherium Fabrini, 1890 and Megantereon Croizet & Jobert, 1828 from various Eurasian localities. Data sources: Bonis (1976), Koufos (1992), Galobart et al. (2003), Palmqvist et al. (2007) and Sardella & Iurino (2012).
North Macedonia results from the monitoring of pesticide residues in food
<p>This dataset contains the analytical results of pesticide residues measured in the food products analysed by the national competent authorities. Pesticide residues resulting from the use of plant protection products on crops that are used for food or feed production may pose a risk factor for public health. For this reason, a comprehensive legislative framework has been established in the European Union (EU), which defines rules for the approval of active substances used in plant protection products, the use of plant protection products and for pesticide residues in food. In order to ensure a high level of consumer protection, legal limits, so called “maximum residue levels” or briefly “MRLs”, are established in Regulation (EC) No 396/2005. EU-harmonised MRLs are set for all pesticides covering all types of food products. A default MRL of 0.01 mg/kg is applicable for pesticides not explicitly mentioned in the MRL legislation. Regulation (EC) No 396/2005 imposes on Member States the obligation to carry out controls to ensure that food placed on the market is compliant with the legal limits. The chemical monitoring data collected and published by EFSA include the analytical results provided by EU Member States, Iceland, Norway and three pre-accession countries: Bosnia-Herzegovina, Montenegro and North Macedonia. </p> <p>A sample is considered <strong>free of quantifiable residues</strong> if the analytes were not present in concentrations at or above the limit of quantification (LOQ). The LOQ is the smallest concentration of an analyte that can be quantified with the analytical method used to analyse the sample. It is commonly defined as the minimum concentration of the analyte in the test sample that can be determined with acceptable precision and accuracy.</p> <p>If a sample <strong>contains quantifiable residues</strong> but within the legally permitted limit (maximum residue level, MRL), it is described as a sample with quantified residue levels within the legal limits (below or at the MRL)</p> <p>A sample is considered <strong>non-compliant</strong> with the legal limit (MRL), if the measured residue concentrations clearly exceed the legal limits, taking into account the measurement uncertainty. It is current practice that the uncertainty of the analytical measurement is taken into account before legal or administrative sanctions are imposed on food business operators for infringement of the MRL legislation.</p> <p> </p> <p><strong>REPORTING AUTHORITIES CONTRIBUTING TO EACH DATA COLLECTION:</strong></p> <p>MOPER_2023 - Food and Veterinary Agency</p> <p>MOPER_2022 - Food and Veterinary Agency</p> <p>MOPER_2021 - Food and Veterinary Agency</p> <p>MOPER_2020 - Food and Veterinary Agency</p> <p>MOPER_2019 - Food and Veterinary Agency</p> <p>MOPER_2018 - Food and Veterinary Agency</p> <p>MOPER_2017 - Food and Veterinary Agency</p> <p> </p> <p><strong>We are seeking feedback on our open data please complete the survey at the link below:<br>https://ec.europa.eu/eusurvey/runner/9344dfa0-f384-cb72-65f6-6c187a6d0f14</strong></p>
Figure 5 in New Data on Niphargidae (Amphipoda) from Northern Macedonia, Niphargus lowryi sp. nov.
Figure 5. Niphargus lowryi sp. nov., spring near Monastery St. Naum, Ohrid Lake coast, female 22.0 mm (holotype): (A–B) pereopod 5; (C–E) pereopod 6; (F–H) pereopod 7.
Figure 3 in New Data on Niphargidae (Amphipoda) from Northern Macedonia, Niphargus lowryi sp. nov.
Figure 3. Niphargus lowryi sp. nov., spring near Monastery St. Naum, Ohrid Lake coast, female 22.0 mm (holotype): (A–B) gnathopod 1, outer face; (C) corner of gnathopod 1 propodus, outer face [s = corner S-spine; l = lateral L-spines; r = subcorner R-spine; m = corner facial M-setae]; (D–E) gnathopod 2, outer face; (F) corner of gnathopod 2 propodus, outer face [s = corner S-spine; l = lateral L-spines; r = subcorner R-spine; m = corner facial M-setae].
Figure 4 in New Data on Niphargidae (Amphipoda) from Northern Macedonia, Niphargus lowryi sp. nov.
Figure 4. Niphargus lowryi sp. nov., spring near Monastery St. Naum, Ohrid Lake coast, female 22.0 mm (holotype): (A) maxilla 1; (B–C) pereopod 3; (D–E) pereopod 4; (F) epimeral plates 1–3; (G) telson.
Figure 2 in New Data on Niphargidae (Amphipoda) from Northern Macedonia, Niphargus lowryi sp. nov.
Figure 2. Niphargus lowryi sp. nov., spring near Monastery St. Naum, Ohrid Lake coast, female 22.0 mm (holotype): (A) labrum; (B) labium; (C) right mandible; (D) mandibular palp, inner face [b = facial B-setae; d = marginal D-setae; e = distal E-setae]; (E) mandibular palp distal article, outer face [a= facial A-setae]; (F) maxilla 2; (G) maxilliped; (H) maxilliped, distal part of palp; (I) pleopod 1 peduncle; (J) pleopod 2 peduncle; (K) pleopod 3 peduncle; (L) uropod 3.
Figure 1 in New Data on Niphargidae (Amphipoda) from Northern Macedonia, Niphargus lowryi sp. nov.
Figure 1. Niphargus lowryi sp. nov., spring near Monastery St. Naum, Ohrid Lake coast, female 22.0 mm (holotype): (A) head; (B) antenna 1; (C) accessory flagellum; (D) aesthetasc on antenna 1; (E) antenna 2; (F) urosome and uropods 1–2.
Vulnerability tools - Maleshevski Mountains (North Macedonia)
<p><span>The MOVING project has developed accessible <strong>tools </strong>designed to assess susceptibility and vulnerability within the region, ready to be used by both experts and the general audience. This document synthesises crucial information for the Maleshevski Mountains Region, particularly focusing on the Participatory Vulnerability Matrix and the Spatial Vulnerability Map. Furthermore, it includes <strong>supplementary maps and figures </strong>detailing various aspects such as the delineation of Reference Landscape, distribution of land systems, areas affected by wildfires, susceptibility to floods across different return periods, severity of forest disturbances, rainfall erosivity, and more.</span></p>
Figure 23 in Fauna of the Neuropterida (Raphidioptera, Neuroptera) of the Protected Area Jasen, Macedonia: a summer flash
Figure 23. Distribution of the Neuropterida collected in habitats with different altitudes of the Protected Area Jasen, July 2011.
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OpenNeuro
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