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14 results for “Baden-Württemberg”
Galls of Baden-Württemberg from the State Museum of Natural History Stuttgart
<p>A selection of preserved gall specimens used as a model for studying curation and digitization methods. The galls were collected in what is now the federal state of Baden-Württemberg between 1917 and 1986. Collectors include Jaap, Brielmaier, Wünsch, Möhn, Breunig, Thomas, Wunderle, and Grams. Gall forming taxa are primarily Cynipidae (Hymenoptera) and Cecidomyiidae (Diptera). Gall host plants include the genera <em>Acer, Alnus, Centaurea, Cirsium, Fagus, Filipendula, Hieracium, Quercus, Rorippa, Rosa, Rubus, Salix, Tilia, Urtica, </em>and <em>Vitis.</em></p>
FIGURE 5 in Trophic relationships in the Early Miocene Upper Marine Molasse of Baden-Württemberg, Southwest Germany, with special emphasis on the elasmobranch fauna
FIGURE 5. Similarity analyses (cluster analyses) of the shark and ray fauna of the OMM deposits in Baden-Württemberg, Bavaria and Switzerland. Redrawn after Höltke et al. (2020; 2022b).
FIGURE 3. A in Trophic relationships in the Early Miocene Upper Marine Molasse of Baden-Württemberg, Southwest Germany, with special emphasis on the elasmobranch fauna
FIGURE 3. A. Tearing type [Odontaspis molassica (Probst, 1878)]. Tooth height: c. 9. 8 mm. Locality: Messkirch-Walbertsweiler. Redrawn after Pfeil (1991, pl. 2, fig. 2). B. Tearing type [Carcharias contortidens (Agassiz, 1843)]. Tooth height: c. 17. 9 mm. Locality: Messkirch-Walbertsweiler. Redrawn after Pfeil (1991, pl. 2, fig. 3, named here as "Synodontaspis acutissima"). C. Cutting type - sensu stricto cutting subtype [Galeocerdo aduncus (Agassiz, 1843)]. Tooth width: c. 14. 2 mm. Locality: Messkirch-Walbertsweiler. Redrawn after Pfeil (1991, pl. 3, fig. 16). D. Cutting type - sensu stricto cutting subtype [Otodus (Megaselachus) chubutensis (Ameghino, 1901)]. Tooth height: c. 65 mm. Locality: Messkirch-Walbertsweiler. Redrawn after Pfeil (1991, pl. 2, fig. 10, named here as "Procarcharodon megalodon"). E. Cutting type – cutting-clutching subtype [Carcharhinus similis (Probst, 1878)]. Tooth height: c. 12. 9 mm. Locality: Baltringen. Redrawn after Probst (1878, pl. 1, fig. 19), Size according to Reinecke et al. (2011, Text-Fig. 21). F. Cutting type – cutting-clutching subtype [Paragaleus tenuis (Probst, 1878)]. Tooth height: c. 4 mm. Locality: Messkirch-Walbertsweiler. Redrawn after Pfeil (1991, pl. 3, fig. 8). G. Crushing type [Dasyatis rugosa (Probst, 1877)]. Tooth height: c. 3 mm. Locality: Messkirch-Walbertsweiler. Redrawn after Pfeil (1991, pl. 4, fig. 9)]. H. Crushing type [Rynchobatus pristinus (Probst, 1877)]. Tooth height: c. 4 mm. Locality: Baltringen. Redrawn after Probst (1877, pl. 1, fig. 19)]. I. Clutching type [Pachyscyllium dachiardii (Lawley, 1876)]. Tooth height c. 6 mm. Locality: Ursendorf. Redrawn after Höltke et al. (2020, pl. 7, fig. 1]. J. Clutching type [Ginglymostoma delfortriei Daimeries, 1889)]. Tooth width. c. 7. 6 mm. Locality: Baltringen. Redrawn after Pfeil [1991, pl. 2, fig. 1 named here as "Ginglymostoma grandis"). K. Grinding type [Aeobatus arcuatus (Agassiz, 1843)]. Tooth width. C. 14 mm. Locality: Ursendorf. Redrawn after Höltke et al. (2020, pl. 9, fig. 8). L. Grinding type [Rhinoptera cf. studeri (Agassiz, 1843). Tooth width: c. 23 mm. Locality: Ursendorf. Redrawn after Höltke et al. (2020, pl. 9, fig. 11).
FIGURE 1 in Trophic relationships in the Early Miocene Upper Marine Molasse of Baden-Württemberg, Southwest Germany, with special emphasis on the elasmobranch fauna
FIGURE 1. New lithostratigraphic terminology for the Ottnangian deposits of the OMM in Southwest Germany. Modified after Heckeberg et al. (2010).
FIGURE 4 in Trophic relationships in the Early Miocene Upper Marine Molasse of Baden-Württemberg, Southwest Germany, with special emphasis on the elasmobranch fauna
FIGURE 4. Generalized trophic interaction scheme of the five OMM deposits discussed in this paper. Some of the fish feeding taxa also feed on invertebrates. A definitive separation in exclusive fish and invertebrate feeders is often not possible. The same problem exists for members of the shark genus Isistius, which are ectoparasites of large marine animals but also feed on cephalopods.
Consensual videos of potentially re-identifiable individuals recorded at the Autonomous Driving Test Area Baden-Württemberg (raw images with location and IMU data).
<p>For the purpose of research on data intermediaries and data anonymisation, it is necessary to test these processes with realistic video data containing personal data. For this purpose, the <a href="http://treumoda.de">Treumoda</a> project, funded by the German Federal Ministry of Education and Research (BMBF), has created a dataset of different traffic scenes containing identifiable persons.</p> <p>This video data was collected at the <a href="https://taf-bw.de/">Autonomous Driving Test Area Baden-Württemberg</a>. On the one hand, it should be possible to recognise people in traffic, including their line of sight. On the other hand, it should be usable for the demonstration and evaluation of anonymisation techniques.</p> <p><strong>The legal basis for the publication of this data set the consent given by the participants as documented in the file Consent.pdf (all purposes) in accordance with Art. 6 1 (a) and Art. 9 2 (a) GDPR. Any further processing is subject to the GDPR.</strong></p> <p>We make this dataset available for non-commercial purposes such as teaching, research and scientific communication. Please note that this licence is limited by the provisions of the GDPR. Anyone downloading this data will become an independent controller of the data. This data has been collected with the consent of the identifiable individuals depicted.</p> <p>Any consensual use must take into account the purposes mentioned in the uploaded consent forms and in the privacy terms and conditions provided to the participants (see Consent.pdf). All participants consented to all three purposes, and no consent was withdrawn at the time of publication. KIT is unable to provide you with contact details for any of the participants, as we have removed all links to personal data other than that contained in the published images.</p>
Consensual videos of potentially re-identifiable individuals recorded at the Autonomous Driving Test Area Baden-Württemberg (raw images recorded daytime).
<p>For the purpose of research on data intermediaries and data anonymisation, it is necessary to test these processes with realistic video data containing personal data. For this purpose, the <a href="http://treumoda.de/">TreuMoDa</a> project, funded by the German Federal Ministry of Education and Research (BMBF), has created a dataset of different traffic scenes containing identifiable persons.</p><p>This video data was collected at the <a href="https://taf-bw.de/">Autonomous Driving Test Area Baden-Württemberg</a>. On the one hand, it should be possible to recognise people in traffic, including their line of sight. On the other hand, it should be usable for the demonstration and evaluation of anonymisation techniques.</p><p><strong>The legal basis for the publication of this data set the consent given by the participants as documented in the file Consent.pdf (all purposes) in accordance with Art. 6 1 (a) and Art. 9 2 (a) GDPR. Any further processing is subject to the GDPR.</strong></p><p>We make this dataset available for non-commercial purposes such as teaching, research and scientific communication. Please note that this licence is limited by the provisions of the GDPR. Anyone downloading this data will become an independent controller of the data. This data has been collected with the consent of the identifiable individuals depicted.</p><p>Any consensual use must take into account the purposes mentioned in the uploaded consent forms and in the privacy terms and conditions provided to the participants (see Consent.pdf). All participants consented to all three purposes, and no consent was withdrawn at the time of publication. KIT is unable to provide you with contact details for any of the participants, as we have removed all links to personal data other than that contained in the published images.</p>
Browsing of oak and fir saplings in Baden-Württemberg (Southern Germany) 2017/2018
<p>The tables contain information about the number of browsed and unbrowsed fir and oak saplings (<=130cm) for 98 locations in southern Germany (2017/2018). The columns read as: 1)the year were the field survey was conducted (Year), 2) the location (xcoord, yccord - WGS 84, EPSG: 4326), 3) an ID of the sampling unit (ID), 4) the number of browsed trees - height <=20 cm, 21-50 cm, 51-80 cm, 81-130 cm (X_B_HC1,..., X_B_HC4), 5) the number of unbrowsed trees - height <=20 cm, 21-50 cm, 51-80 cm, 81-130 cm (X_UB_HC1,..., X_UB_HC4) with "X" being O for oak (Quercus petraea, (Mattuschka) Liebl. and Quercus robur (L.)) or F for fir (Abies alba (Mill.)).<br> <br> Example: "O_B_HC2" - contains the number of browsed oak saplings being taller than 20 cm but smaller than or equal to 50 cm. "NA" means the absence of tree saplings for a specific tree species.</p> <p>Data of the tables was used/published in the following article/manuscript: Hagen, Robert; Kühl, Norbert; Hanewinkel, Marc; Suchant, Rudi; Number and height of unbrowsed saplings are more appropriate than the proportion of browsed saplings for predicting silvicultural regeneration success</p>
FIGURE 2 in Trophic relationships in the Early Miocene Upper Marine Molasse of Baden-Württemberg, Southwest Germany, with special emphasis on the elasmobranch fauna
FIGURE 2. Map showing the fossiliferous localities studied herein.
Parturition date of roe deer in Baden-Württemberg (Southern Germany) 1972/2019
<p>The table contains information about each parturition date. The columns read as: 1) the year were the offspring was born, 2) the sex of the offspring (m- male, f – female), 3) the height above sea level (m), 4) the parturition date (Julian date)<br> <br> Data of the table was used/published in the following article/manuscript: Hagen, Robert; Ortmann, Sylvia; Elliger, Andreas; Arnold, Janosch, <strong>Advanced roe deer (Capreolus capreolus) parturition date in response to climate change</strong></p>
Data from: Variation in seed traits, leaf phenology and growth performance among sessile oak provenances from Baden-Württemberg and Alsace
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Rohstoffdatenbank Landwirtschaftlicher Reststoffe für Bayern und Baden-Württemberg
<p>Ergebnis des reGIOcycle Projekts, Arbeitspaket B.2.1 "Ermittlung regionaler Potenziale nachwachsender Rohstoffe"</p>
Projektvideo - Implementierung von Open Access an Hochschulen für Angewandte Wissenschaften und Pädagogischen Hochschulen in Baden-Württemberg
<p>Projektvideo des vom Ministerium für Wissenschaft, Forschung und Kunst Baden-Württemberg geförderten Projekts "Implementierung von Open Access an HAWen und PHen in Baden-Württemberg"</p>
Digitaler Anhang zum Projektbericht "Erosionsmodellierung für Baden-Württemberg (Glemsregion)"
<p>Dieser digitale Anhang enthält die:</p> <ul> <li>Anleitung zum Erfassungsbogen für Bodenerosion und die damit erfassten Ereignisse</li> <li>Modellierungsdateien für openLISEM und EROSION-3D <ul> <li>Parametertabellen, Modelleinstellungen und Simulationsergebnisse</li> <li>Ergebniskarten der Senkenbehandlung</li> <li>Scripte und Ergebnisse der Testhangberechnung</li> </ul> </li> <li>Karten der Simulationsergebnisse im PDF-Format</li> </ul> <p>Eine ausführliche Beschreibung zu diesen Daten erfolgt in der Datei read_me_digitalerAnhang.pdf.</p> <p>Die Daten wurden im Rahmen des Projektes “Entwicklung einer Bearbeitungsstrategie Erosionsrisikomodellierung für Baden-Württemberg anhand des Einzugsgebiets der Glems“ erstellt. Dieses Projekt wurde mit Mitteln der Ministerien für Umwelt, Klima und Energiewirtschaft (UM) sowie für Ernährung, Ländlichen Raum und Verbraucherschutz (MLR) Baden-Württemberg gefördert.</p>
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