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767 results for “switzerland”
FIG. 1 in Neither fish nor fowl. Isotopic evidence of a plant-based diet in (captive?) brown bears from Roman Augusta Raurica, Switzerland
FIG. 1. — Map of Switzerland with the location of Roman Augusta Raurica (bottom right) and location of features with (almost) complete skeletons of brown bears (Ursus arctos Linnaeus, 1758) discussed in the text: MR 12 and well house Insula 8. Credit: image, Claudia Zipfel, RÖmerstadt Augusta Raurica. Abbreviations: A, Austria; D, Germany; F, France; I, Italy.
Fig. 3 in Calamagrostis lonana (Poaceae): a new grass species from the Pennine Alps (Switzerland)
Fig. 3. – Calamagrostis lonana Eggenb. & Leibundg. A. Habit of the aerial parts with moss cushion of Warnstorfia exannulata (Schimp.) Loeske. B. Upper root space in the moss layer.
Fig. 4 in Calamagrostis lonana (Poaceae): a new grass species from the Pennine Alps (Switzerland)
Fig. 4. – Alpine alluvial plain of Lona, with fens, alluvial and spring vegetation patches on both sides of the meandering Torrent de Lona.
Fig. 2 in Calamagrostis lonana (Poaceae): a new grass species from the Pennine Alps (Switzerland)
Fig. 2. – Calamagrostis lonana Eggenb. & Leibundg. A. Habit with stolons within the moss layer; B. Inflorescence (contracted panicle); C. Section of inflorescence with adjacent panicle branches; D. Spikelet peduncle with glumes; E. Glume and palea with callus hairs and awn (dorsally inserted).
Schranz, C. (2023). Commons in Design – Recordings of the Conference. Academy of Art & Design Basel, Switzerland.
<p>The conference was organized as part of a 4-year SNSF research project “Commons in Design” carried out at the Institute of Contemporary Design Practices (ICDP), FHNW Academy of Art and Design, Basel, Switzerland.</p> <p>(SNF-Project: 179178)</p>
Fig. 4 in First fossil record of Varanus (Reptilia, Squamata) from Switzerland and the earliest occurrences of the genus in Europe
Fig. 4 Parsimony-based character optimization on the tooth serrations based on the phylogeny of Pyron et al. (2013)
Fig. 2 in First fossil record of Varanus (Reptilia, Squamata) from Switzerland and the earliest occurrences of the genus in Europe
Fig. 2?Varanus sp. from Hüenerbach. a–f tooth NMBHüe.1 inlingual (a), labial (b), mesial (c), distal (d), occlusal (e), andventral (f) views; g–l) tooth NMBHüe.2 inlingual (g), labial (h), proximal (i), distal (j), occlusal (k), andventral (l) views
Fig. 3 in First fossil record of Varanus (Reptilia, Squamata) from Switzerland and the earliest occurrences of the genus in Europe
Fig. 3 Pulp cavity of extant varanoids. a–b Middle right dentary tooth (reversed) of Lanthanotus borneensis SMF 336 in lingual (a) and mesial (b) views. c–d Middle left dentary tooth (reversed) of Varanus indicus AMNH 58389 in lingual (c) and mesial (d) views. e–f Middle right maxilla tooth (inverted) of Varanus salvator PIMUZ A/III 1493 in lingual (e) and mesial (f) views
Fig. 5 in First fossil record of Varanus (Reptilia, Squamata) from Switzerland and the earliest occurrences of the genus in Europe
Fig. 5 Lacertidae indet. from Hüenerbach. Posterior portion of right maxilla NMB Hüe.3 in labial (a) and ventrolingual (b) views
Fig. 1 in First fossil record of Varanus (Reptilia, Squamata) from Switzerland and the earliest occurrences of the genus in Europe
Fig. 1 Location map of Hüenerbach by the city of Langnau im Emmental (Canton of Bern, Switzerland).The Swiss molasse Basin Tertiary Formations are marked highlighting the fact that the Hüenerbach locality is at the transition between the OMM and OSM. Ba. Basel, Be. Bern, Ge. Geneva, Zu. Zurich (modified after Mennecart, 2012)
Atmospheric observations of SF6, HFC-32, HFC-125, and HFC-134a at Sottens, Switzerland
<p>Atmospheric measurement data (mole fractions) for SF<sub>6</sub> (sulfur hexafluoride), HFC-32 (difluoromethane), HFC-125 (1,1,1,2,2-pentafluoroethane), and HFC-134a (1,1,1,2-tetrafluoroethane). Observations were made at Sottens, Switzerland, in 2021. Measurements were conducted using a Medusa pre-concentration unit coupled to gas chromatography and mass spectrometry (GC-MS), as is used within the global AGAGE network.</p>
Algal lipid distributions and hydrogen isotope ratios reflect phytoplankton community dynamics in Rotsee (Switzerland)
Open the record for dataset details and reuse information.
Database of 242 vegetation surveys from Ticino Canton (Switzerland) grasslands
<p>This is a database of 242 vegetation surveys carried out in semi-natural grasslands of Ticino Canton (Switzerland), managed as conventionally managed grasslands (CMG) or biodiversity promotion areas (BPA). Many topographic, climatic, ecological, and vegetation variables are reported.</p>
Microplastic and macroplastic yearly emission maps for Switzerland
<p>Dataset connected to the following publication:</p> <p><strong>Title: </strong><em>A proxy-based approach to predict spatially resolved emissions of macro- and microplastic to the environment</em><br> <strong>Authors:</strong> Delphine Kawecki; Bernd Nowack<br> <strong>Journal:</strong> Science of the Total Environment<br> <strong>Year: </strong>2020<br> <strong>DOI: </strong>10.1016/j.scitotenv.2020.141137</p> <p><strong>Contents:</strong><br> - Raster maps of emissions to soil and air<br> - Shapefiles of emissions to lakes and rivers</p> <p>Separate files are provided for:<br> - the seven different polymers included in the study: LDPE, HDPE, PP, PS, EPS, PVC, PET<br> - the two sizes of plastic modelled: macroplastic and microplastic (files for microplastic contain the string "MP")<br> - the maps created using the mean, the 5th percentile and the 95th percentile of the original emission flows<br> - the receiving environmental compartment: soil, air, rivers and lakes</p> <p>For a detailed description of the method, see the publication.</p>
Data from: A taxonomic revision of the whitefish radiation of lakes Brienz and Thun, Switzerland, with descriptions of four new species (Teleostei: Coregonidae)
<p>The alpha taxonomy of the endemic whitefish of lakes Brienz and Thun, Switzerland, is revised. We evaluate the status of seven known species: <em>Coregonus steinmanni </em>sp. nov., <em>Coregonus profundus</em> sp. nov. and <em>Coregonus acrinasus</em> sp. nov. are endemic to Lake Thun; <em>Coregonus brienzii </em>sp. nov. is endemic to Lake Brienz; and <em>C. alpinus, C. albellus,</em> and <em>C. fatioi</em> from lakes Brienz and Thun are redescribed. One of these species, <em>C. alpinus</em>, is revised, since the lectotype for this species is incongruent with the species description given by Kottelat (1997) and Kottelat and Freyhof (2007). The name <em>C. alpinus</em> is thus retained for the lectotype designated by Kottelat (1997) and a new description of this taxon provided. For the species otherwise described by Kottelat (1997) and Kottelat and Freyhof (2007) as C. alpinus the new name C. profundus is designated. <em>Coregonus acrinasus </em>is genetically partially of allochthonous origin, closely related to the radiation of Lake Constance, and we therefore compare it to all recognized species of Lake Constance, <em>C. wartmanni, C. macrophthalmus, C. arenicolus,</em> and <em>C. gutturosus.</em></p>
Google Trends normalized hits for COVID-19 generated in Switzerland
<p>This dataset contains the normalized hits of the queries on COVID-19 generated in Switzerland between July 2019 and July 2020, the timeline of the normalized hits per Canton, the top associated queries, the frequency analysis of the top associated queries, the categorization of the top associated queries, and the rising queries. </p> <p>Query: Coronavirus + covid + 2019-nCoV + SARS-CoV2</p> <p>Query type: keyword</p> <p>Timeframe: 01/01/2020 - 11/06/2021</p> <p>Date of search: 22/06/2021</p> <p>Data source: Web searches</p> <p>Location:CH (by canton)</p> <p>Query category:all</p> <p>Rationale for keywords: main semi-synonims for covid-19</p> <p>This dataset has been generated by and used for the <a href="https://www.ibme.uzh.ch/en/Biomedical-Ethics/Research/Ongoing-Research/Public-Health-Ethics/PubliCo.html">PubliCo research project</a>.</p>
Alpine Building Ruins, Grisons, Switzerland
Ruins of an alpine building situated at around 2200 m a.s.l. in the Val Urschai, Lower Engadine, Switzerland (see [here](https://s.geo.admin.ch/8b6c7900a9) for a map). The two room structure measures 8 x 11 m. Its exact age is unknown, it belongs most probably to the Middle Ages or Early Modern Age. Nearby is another, seemingly associated, [structure](https://sketchfab.com/3d-models/alpine-structure-ruins-grisons-switzerland-bdbac0b032e6422eb0b8d3874f74ea6b). Imagery shot in July 2011 using Kite Aerial Photography, see [https://silvrettahistorica.wordpress.com/2011/07/05/kinderspielzeug-im-dienste-der-archaologie/](https://silvrettahistorica.wordpress.com/2011/07/05/kinderspielzeug-im-dienste-der-archaologie/) (in German), and reprocessed in August 2020. Source: Objaverse 1.0 / Sketchfab
Database Chagas Switzerland
<p>Database of the study entitled:</p> <p>Screening strategy for Chagas disease in a non-endemic country (Switzerland): a prospective evaluation</p>
Chemical characterization of atmospheric ions at the High-Alpine station Jungfraujoch (Switzerland)
<p>The ion composition at high-altitude (3454 m a.s.l.) was measured with an Atmospheric<br> Pressure interface Time of Flight mass spectrometer (APi-TOF) during a period of nine<br> months, from August 2013 to April 2014. The negative mass spectra were dominated by the<br> ions of sulfuric, nitric, malonic and methanesulfonic acid (MSA) as well as SO5- . The most<br> prominent positive ion peaks were from amines. The other cations were mainly organic compounds<br> clustered with a nitrogen-containing ion, which could be either NH4+ or an aminium.<br> Occasionally the positive spectra were characterized by groups of compounds each differing<br> by a methylene group. In the negative spectrum, sulfuric acid was always observed during<br> clear sky conditions following the diurnal cycle of sun irradiation. On many occasions we<br> also saw a high signal of sulfuric acid during night time when clusters up to the tetramer<br> were observed. A plausible reason for these events could be evaporation from particles at low<br> relative humidity. A remarkably strong correlation between the signals of SO5- and CH3SO3-<br> was observed for the full measurement period. The presence of these two ions during both<br> the day and the night suggests a non-photochemical channel of formation which is possibly<br> linked to halogen chemistry. Halogenated species, especially Br– and IO3- , were frequently<br> observed in air masses that originated mainly from the Atlantic Ocean and occasionally from<br> continental areas based on back trajectory analyses. We found I2O5 clustered with an ion, a<br> species that was proposed from laboratory and modelling studies. All halogenated ions exhibited<br> an unexpected diurnal behaviour with low values during day time. New particle formation<br> (NPF) events were observed and characterized by 1) highly oxygenated molecules (HOMs) and<br> low sulfuric acid or 2) ammonia-sulfuric acid clusters. We present characteristic spectra for<br> each of these two event types based on 26 nucleation episodes. The mass spectrum of the<br> ammonia-sulfuric acid nucleation event compares very well with laboratory measurements<br> reported from the CLOUD chamber. A source receptor analysis indicates that new particle<br> formation events at the Jungfraujoch take place within a restricted period of time of 24-48<br> hours after air masses have had contact with boundary layer. This time frame appears to be<br> crucial to reach an optimal oxidation state and concentration of organic molecules necessary<br> to facilitate nucleation.</p>
Number and proportion of social workers in the cantonal and national parliaments of Switzerland in 2024
<p>Dieser Datensatz trägt für den Stichtag 1.1.2024 die Anzahl und Anteile von Sozialarbeitenden in allen 26 kantonalen Parlamenten sowie im nationalen Parlament (National- und Ständerat) der Schweiz zusammen. Die Anzahl und Anteile werden mit anderen Berufsangaben (z.B. Jurist:innen, Landwirt:innen, Lehrpersonen) verglichen. Die Berufsangaben wurden den kantonalen Staatskalendern oder den offiziellen Webseiten der jeweiligen Parlamente entnommen. Die Berufsangaben wurden von den jeweiligen Parlamentsmitgliedern selbst gemacht und sind teils nicht eindeutig zuzuordnen (z.B. "Unternehmer:in", "Geschäftsleiter:in" etc.).</p> <p>Für eine zusammenfassende Darstellung der Ergebnisse siehe: Kindler, T. (2024). Democratic advocacy: Representation of social workers in the cantonal and national parliaments of Switzerland. Eastern Switzerland University of Applied Sciences. https://doi.org/10.5281/zenodo.10413049</p>
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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.