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6,170 results for “european”
Fig. 1 in Revisiting The Area Boundaries Of Carabus Coriaceus Linnaeus, 1758 In The European Part Of Russia
Fig. 1. Carabus coriaceus distribution near the east area boundaries in the European part of Russia.
Fig.6 in Reaching The Climate Objectives Of Forest Management In Latvia Within The Scope Of European Climate Policy
Fig.6. CO2 emissions in Latvia by sources in 2016, CO2 kt eq (Source: Created by authors after National GHG inventories).
Fig.2 in Reaching The Climate Objectives Of Forest Management In Latvia Within The Scope Of European Climate Policy
Fig.2. Scheme of LFSRI Silava changes in forest resources projections process based on Nation Forest Inventory data (Source: LFSRI Silava).
Fig.1 in Reaching The Climate Objectives Of Forest Management In Latvia Within The Scope Of European Climate Policy
Fig.1. Policy documents affecting the Climate Change Mitigation policy of the Forest sector by 2020.
Older than 4 Fig. 1 in Comparison Of Two Age Determination Methods Of The European Hares (Lepus Europaeus Pallas, 1778) In Southwest Lithuania
Older than 4 Fig. 1. The measurements of ulna-radius of the years European hares. 3-4 year old 18 a – juvenile, b- adult; 1 - length of epiphyses ossification in ulna; 2- width of epiphysis cartilage 2-3 year old 8 in ulna; 3- high of epiphyses in in ulna-radius; 4 - width of ulna-radius at the thickest part. Juvenile (under 1 year old)
Fig. 1 in Current State, Anthropogenic Threats And Conservation Of The European Pond Turtle (Emys Orbiclularis) In Belarus
Fig. 1. Typical specimen of Emys orbicularis orbicularis from north-east part of the range in Belarus.
Fig.1 in A Review Of Latvian Saproxylic Beetles From The European Red List
Fig.1. Red List Categories taken from International Union for Conservation of Nature (IUCN) (Nieto & Alexander 2010).
Fig. 6 in The Eco-Physiological Status Of Hibernating Bats (Chiroptera) In The North Of The European Distribution Range
Fig. 6. Total WBC count and absolute numbers of each type of leukocytes in peripheral blood in bats. 1 - leukocytes 2 - monocytes, 3 - lymphocytes 4 - stab neutrophils, 5 - segmented neutrophils, 6 - eosinophils, 7 - basophils.
Fig. 2 in The Eco-Physiological Status Of Hibernating Bats (Chiroptera) In The North Of The European Distribution Range
Fig. 2. Species structure of hibernating bat populations (% of the total number of animals in the counts): A – Leningrad Region (Стрелков 1958), B – Tver Region (ГлуШкова et al. 2006), C – Samara Region (Смирнов et al. 2012), D – Finland (Siivonen & Wermundsen 2008), E – Karelia (own data), F – Arkhangelsk Region (Рыков 2008). 1 – M. dasycneme, 2 – M. daubentoni, 3 – M. brandtii/mystacinus, 4 – M. nattereri, 5 – P. auritus, 6 – E. nilssonii.
Fig. 5 in The Eco-Physiological Status Of Hibernating Bats (Chiroptera) In The North Of The European Distribution Range
Fig. 5. Differential WBC count in different bat species. 1 - monocytes, 2 - lymphocytes, 3 - band neutrophils, 4 - segmented neutrophils, 5 - eosinophils, 6 - basophils.
Fig. 3 in The Eco-Physiological Status Of Hibernating Bats (Chiroptera) In The North Of The European Distribution Range
Fig. 3. Distribution patterns of the hibernating northern bat, % of the total number of animals in counts: Finland (Siivonen & Wermundsen 2008), Karelia (own data), Ural region (Орлов 2000, БольШаков et al. 2005), Samara Region (Смирнов et al. 2008, Смирнов & Вехник 2009).
Fig. 1 in The Eco-Physiological Status Of Hibernating Bats (Chiroptera) In The North Of The European Distribution Range
Fig. 1. Locations of bat hibernacula in the Republic of Karelia. Legend: 1 – Lahdenpohja, 2 – Ruskeala, 3 – Sona, 4 – Shcheleyki, 5 – Medvezhjegorsk, 6 – Shunga.
Fig.11 in The Experimental Data On Sun-Basking Activity Of European Pond Turtle Emys Orbicularis In Natural Climate In Latvia: Dynamics And Correlation With The Meteorological Factors
Fig.11. Ranking of meteorological factors by the quantity of significant positive or negative correlations with the number of sun-basking Emys orbicularis in the interval 8d"Nsbd"21.
Fig.3 in The Experimental Data On Sun-Basking Activity Of European Pond Turtle Emys Orbicularis In Natural Climate In Latvia: Dynamics And Correlation With The Meteorological Factors
Fig.3. Basic forms of sun-basking activity of Emys Fig.4. Basic forms of sun-basking activity of Emys orbicularis registered in the study: lying in the orbicularis registered in the study: heating under shadow. the sun in the shoal.
Dataset of historical hourly information of four european wind farms for wind energy forecasting and maintenance
<p><strong>If you use this dataset please cite this paper: Sánchez-Soriano, J.; Paniagua-Falo, P.J.; Gómez Muñoz, C.Q. Historical Hourly Information of Four European Wind Farms for Wind Energy Forecasting and Maintenance. Data 2025, 10, 38. <a href="https://doi.org/10.3390/data10030038" target="_blank" rel="noopener">https://doi.org/10.3390/data10030038</a></strong></p> <p>For an electric company, having an accurate forecast of the expected electrical production and maintenance from its wind farms is crucial. This information is essential for operating in various existing markets such as Iberian Energy Market Operator - Spanish Hub (OMIE in its Spanish acronym), Portuguese Hub (OMIP in its Spanish acronym), and Iberian electricity market between the Kingdom of Spain and the Portuguese Republic (MIBEL in its Spanish acronym), among others. The accuracy of these forecasts is vital for estimating the costs and benefits of the handling of electricity. This article explains the process of creating the complete dataset, which includes the acquisition of the hourly information of four European wind farms as well as a description of the structure and content of the dataset which amounts to 2 years of hourly information. The wind farms are in three countries, two from Auvergne-Rhône-Alpes (France), Aragon (Spain) and the Piemonte region (Italy). The presented dataset is available and accessible to improve the forecasting and management of wind farms, especially for the detection of faults and the elaboration of a preventive maintenance plan.</p> <p>The full description of the characteristics of the dataset, as well as its components, format and methodology, can be found here: "Historical Hourly Information of Four European Wind Farms for Wind Energy Forecasting and Maintenance". Data 2025, 10, 38. <a href="https://doi.org/10.3390/data10030038" target="_blank" rel="noopener">https://doi.org/10.3390/data10030038</a></p>
Figure 6 in A third European species of grayling (Actinopterygii, Salmonidae), endemic to the Loire River basin (France), Thymallus ligericus n. sp.
Figure 6. – Dorsal fin on a live paratype of Thymallus ligericus n. sp. MNHN 2018-0726, 290 mm SL ♀, Lignon River at Boën-surLignon, 29 May 2015, Persat, Juglaret and Buttazzoni coll.
Figure 4 in A third European species of grayling (Actinopterygii, Salmonidae), endemic to the Loire River basin (France), Thymallus ligericus n. sp.
Figure 4. – Mouth in ventral view of Thymallus spp. A: Holotype of Thymallus ligericus n. sp. MNHN 2018-0722, 337 mm SL J, Alagnon River at La Chapelle d'Alagnon, 9 Sep. 2016, Persat and FDAAPPMA15 coll.; B: Thymallus thymallus UCBLZ 2012.9.1010, 376 mm TL, Rhône drainage, Ain River at Crotenay, 10 Jun. 2014, Persat and FDAAPPMA39 coll.
Figure 2 in A third European species of grayling (Actinopterygii, Salmonidae), endemic to the Loire River basin (France), Thymallus ligericus n. sp.
Figure 2. – Specimens of Thymallus spp. in lateral view. Holotype of Thymallus ligericus n. sp. MNHN 2018- 0722, 337 mm SL J, Alagnon River at La Chapelle d'Alagnon, 9 Sep. 2016, Persat and FDAAPPMA 15 coll., in live (A) and after preservation (B); Paratype of Thymallus ligericus n. sp. MNHN 2019-0267 (C), 269 mm SL ♀, Loire River at Chadron, 22 Sep. 2016, Persat and ONEMA43 coll; UCBLZ – 2012.9.1011 (D), 292 mm TL, Rhône drainage, Ain River at Crotenay, 10 Jun. 2014, Persat and FDAAPPMA39 coll.
Figure 1 in A third European species of grayling (Actinopterygii, Salmonidae), endemic to the Loire River basin (France), Thymallus ligericus n. sp.
Figure 1. – The three supplementary measurements made on the ventral side of the head, in addition to those of Surre et al. (1986): the mandible width, the chin length (from the basibranchial junction to the extremity of the mandible) and the ventral snout length (from the same point to the extremity of the snout).
Figure 3 in A third European species of grayling (Actinopterygii, Salmonidae), endemic to the Loire River basin (France), Thymallus ligericus n. sp.
Figure 3. – Head profiles of Thymallus spp. A: Paratype of Thymallus ligericus n. sp. MNHN 2018-0728, 300 mm SL J, Dore River at Vertolaye, 29 May 2015, Persat, Juglaret and Buttazzoni coll.; B: Thymallus thymallus UCBLZ – 2012.9.1010, 376 mm TL, Rhône drainage, Ain River at Crotenay, 10 Jun. 2014, Persat and FDAAPPMA39 coll.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.