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140
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Dataset results
140 results for “upgrading”
Fig. 21 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 21: Type specimen (paratype, male) of Andrena lineolata WARNCKE, 1968 (OLML Nr. 6952455; ZOBODAT, 05.02.2020; biogeographical data set). (a) upper face with rugulae. (b) clypeus. (c) mesonotum. (d) propodeum.
Fig. 8 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 8: Type specimen (holotype, female) of Andrena catula WARNCKE, 1968 (OLML Nr. 6952777; ZOBODAT, 05.02.2020; biogeographical data set). (a) upper face with rugulae. (b) notum. (c) scopa. (d) T5 and T6.
Fig. 19 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 19: Type specimen (holotype, female) of Andrena lineolata WARNCKE, 1968 (OLML Nr. 6952456; ZOBODAT, 05.02.2020; biogeographical data set). (a) clypeus. (b) mesonotum. (c) propodeum. (d) scopa.
Fig. 7 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 7: Type specimen (holotype, female) of Andrena catula WARNCKE, 1968 (OLML Nr. 6952777; ZOBODAT, 05.02.2020; biogeographical data set). (a) habitus, dorsal view. (b) type label. (c) head, frontal view. (d) head, dorsal view. (e) mesosoma. (f) metasoma.
Fig. 15 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 15: Type specimen (holotype, female) of Andrena gomerensis WARNCKE, 1993 (OLML Nr. 6952779; ZOBODAT, 05.02.2020; biogeographical data set). (a) upper face with rugulae. (b) clypeus. (c) mesonotum. (d) propodeum. (e) abdomen. (f) scopa.
Fig. 20 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 20: Type specimen (paratype, male) of Andrena lineolata WARNCKE, 1968 (OLML Nr. 6952455; ZOBODAT, 05.02.2020; biogeographical data set). (a) habitus dorsal. (b) type label. (c) head frontal. (d) mesosoma. (e) head dorsal. (f) metasoma.
Fig. 10 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 10: Type specimen (paratype, male) of Andrena catula WARNCKE, 1968 (OLML Nr. 6952776; ZOBODAT, 05.02.2020; biogeographical data set). (a) upper face with rugulae. (b) clypeus. (c) notum. (d) propodeum. (e) genital, dorsal view. (f) genital, ventral view.
Fig. 4 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 4: Type specimen (holotype) of Andrena acuta acuta WARNCKE, 1968 (OLML Nr. 6952775; ZOBODAT, 05.02.2020); biogeographical data set). (a) upper face with rugulae. (b) clypeus. (c) scutum. (d) propodeum. (e) scopa. (f) metasoma.
Fig. 12 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 12: Type specimen (holotype, female) of Andrena dourada KRATOCHWIL & SCHEUCHL, 2014 (OLML Nr. 100415554; ZOBODAT, 05.02.2020; biogeographical data set). (a) upper face with rugulae. (b) clypeus. (c) notum. (d) scopa.
Fig. 9 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 9: Type specimen (paratype, male) of Andrena catula WARNCKE, 1968 (OLML Nr. 6952776; ZOBODAT, 05.02.2020; biogeographical data set). (a) habitus, dorsal view. (b) type label. (c) head, frontal view. (d) head, dorsal view. (e) mesosoma, dorsal view. (f) metasoma.
Fig. 3 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 3: Type specimen (holotype, female) of Andrena acuta acuta WARNCKE, 1968 (OLML Nr. 6952775; ZOBODAT 05.02.2020; biogeographical data set). (a) habitus dorsal. (b) type label. (c) head frontal. (d) head dorsal. (e) mesosoma. (f) metasoma.
Data for the paper 'Design and Implementation of a prototype infrared video bolometer (IRVB) in MAST Upgrade'
<p>Raw and processed data from the MASTU IRVB infrared camera for the calibration of the diagnostic and from the first experimental campaign.</p>
Figures and datasets of paper titled "Phosphorous diffusion gettering of trapping centers in upgraded metallurgical-grade solar silicon"
<p>Datasets and figures of paper titled "Phosphorous Diffusion Gettering of Trapping Centers in Upgraded Metallurgical-Grade Solar Silicon" published in arXiv (<a href="http://arxiv.org/abs/2101.07145">http://arxiv.org/abs/2101.07145</a>)</p>
Floating Upgrades Or Checkpoint Assets
Collection of Floating Assets use as checkppoints, upgrades, crystals or power ups raw and un textured made with google sketchup Free for anyone to use; no credit needed (However would love to see it rigged, animated, textured or used in something if so please send me a link to it) Source: Objaverse 1.0 / Sketchfab
Upgrade of bio-oil produced from the sisal residue composting
<p>The present work studies the composting effects on the chemical characteristics of bio-oil produced by pyrolysis of sisal residue. Three systems were composted with sisal residue proportions to sisal fiber powder of 100:0, 90:10, and 75:25, respectively. The systems showed reductions of 33–48% (extractive), 70–80% (hemicellulose), and 80–90% (cellulose) after composting. An increase in lignin content was observed in all systems. The pyrolysis of the composted systems was performed at 450 and 550 °C. At both temperatures, this process was selective in producing a large concentration of hydrocarbons (>160% increase), mainly alkanes and alkenes, reducing the concentrations of ketones, aldehydes, and phenolics (>50%) and eliminating esters, furans, and acetic acid to composted biomasses. The higher temperature favored aromatics and cyclic hydrocarbon production from the pyrolysis of composted samples. In addition to these results, composting helped reduce the oxygenated bio-oil species by approximately 44 - 75% at the lowest and ~ 69% at the highest temperatures. These results indicate that composted sisal residue can produce bio-oils that are more suitable for biorefineries since they are rich in aliphatic hydrocarbons and non-oxygenated species.</p>
Conjunto de datos sobre gobernanza, upgrading y reshoring en las cadenas de valor. Grupo de Investigación INGLOBEST
<p>Esta base de datos contiene información recogida a través de cuestionarios con 240 respuestas de empresas manufactureras españolas acerca de la organización internacional de su cadena de valor y su relación con otros actores internacionales. Además se ha recogido información sobre el tipo de actividad de las empresas, relación con la cadena de valor global a la que pertenecen, la deslocalización y relocación de actividades internacionales y sus estrategias de mejora competitiva. El conjunto de datos ha sido construido en el marco del proyecto del Ministerio en la convocatoria <span>MINISTERIO DE CIENCIA E INNOVACIÓN. PROYECTOS DE I+D+i. MODALIDADES “GENERACIÓN DEL CONOCIMIENTO” Y “RETOS INVESTIGACIÓN” 2020 y con referencia de proyecto <span>PID2020-118340RB-I00.</span></span></p>
Figures and datasets of paper titled "Bulk carrier lifetime surpassing 600 us in Upgraded Metallurgical-grade Silicon multicrystalline wafers after Phosphorus Diffusion Gettering"
<p>Datasets and figures of paper titled "Figures and datasets of paper titled "Bulk carrier lifetime surpassing 600 us in Upgraded Metallurgical-grade Silicon multicrystalline wafers after Phosphorus Diffusion Gettering" published in arXiv (<a href="https://arxiv.org/abs/2111.13522">https://arxiv.org/abs/2111.13522</a>).</p>
Data Set "Protein-Ligand Interaction Energies from Quantum-Chemical Fragmentation Methods: Upgrading the MFCC-Scheme with Many-Body Contributions"
<p>This data set accompanies the publication "Protein-Ligand Interaction Energies from Quantum-Chemical Fragmentation Methods: Upgrading the MFCC-Scheme with Many-Body Contributions" by Johannes Vornweg and Christoph R. Jacob (TU Braunschweig, Germany) </p> <p>It contains the following files:</p> <p><br>Directory 1_structures:</p> <p> PDB files of all structures used for the test calculations. <br> The PDB files correspond to the protonated structures obtained <br> as described in the main text.</p> <p><br>Directory 02_figure_scripts:</p> <p> Jupyter Notebook for generating all plots included in the manuscript, <br> including raw numerical data.</p> <p><br>Directory 03_input_scripts:</p> <p> - min_congrad.mdp: input file for partial optimization of protonated <br> protein--ligand complexes with Gromacs</p> <p> PyADF input scripts:</p> <p> - sp_single.pyadf: single-point calculations of separate protein and ligand<br> - sp_complex.pyadf: single-point calculation of protein-ligand complex<br> - mfccmbe3.pyadf: MFCC and MFCC-MBE(2) calculations of P-L interaction energy</p> <p> These scripts can be used with PyADF v1.5 (DOI: 10.5281/zenodo.13236550)</p>
FIG. 7 in Saint-Hilaire virtual herbarium, a new upgradeable tool to study Brazilian botany
FIG. 7. — Results for collection number.
FIG. 3 in Saint-Hilaire virtual herbarium, a new upgradeable tool to study Brazilian botany
FIG. 3. — Collaborative interface.
ScienceDex guides
Understand access before you commit
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.