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162 results for “tem”
plan view TEM stereo pair of microcracks
<p><a name="_Toc162747595"></a><strong><em><span>Figure SI1.</span></em></strong><span><strong><em><span><span>2</span></span></em></strong></span><span><em><span>: The cross-eye stereo pair can be difficult to visualise.<span> </span>This animation of the same images allows the three-dimensional structure to be seen using motion parallax.</span></em></span></p>
TEM Data on Strontium-deficient SrxCoO2–CoO2 nanotubes
<p>Raw data ((scanning) transmission electron microscopy images, diffraction patterns and EDX/EELS spectra) obtained for work on Strontium-deficient SrxCoO2–CoO2 nanotubes as a high ampacity and high conductivity material published in Materials Horizons</p>
Herbarium specimen image of Cruciata mixta Ehrend. & Schönb.-Tem., part of the collection of Royal Botanic Gardens, Kew
Part of a training dataset of scanned herbarium specimens. The data paper and a summary landing page will be published on Zenodo as it gets published.<br><br>Content of this deposition:<br><br>- A JSON-LD datafile listing the label data associated with this herbarium specimen. The Darwin and Dublin Core data standards are used for most values.<br>- A JPEG image file of the scanned herbarium sheet.<br>- A lossless TIFF image from which the JPEG image has been derived.
Data-Mining of In-Situ TEM Experiments: Towards Understanding Nanoscale Fracture
<p>Datasets for the publication in the "Computational Materials Science". This is essentially a snapshot of the gitlab repository https://gitlab.com/computational-materials-science/public/publication-data-and-code/2022-data-mining-of-in-situ-tem-experiments that might contain additional updates and scripts. A version of the manuscript can also be found at https://arxiv.org/abs/2206.11355</p>
TEM images of Cu decorated carbon nanotubes
<p>Atlas of TEM images for proprietary copper-decorated carbon nanotubes.</p>
FIG. 3 in Asperula fidanii sp. nov. (Rubiaceae, Asperula L. sect. Oppositifoliae Schischk. ex Schönb.-Tem.): a new species from South Eastern Anatolia, Turkey
FIG. 3. — Asperula fidanii Eroğlu, sp. nov.: A, habit; B, inflorescence and flowers; C, fruit and ovaries; D, basal leaves; E, middle and upper leaves; F, 4- and 5-lobed flowers on same plant.
FIG. 4 in Asperula fidanii sp. nov. (Rubiaceae, Asperula L. sect. Oppositifoliae Schischk. ex Schönb.-Tem.): a new species from South Eastern Anatolia, Turkey
FIG. 4. — Flowers of Asperula fidanii Eroğlu, sp. nov.; A, B, general wiew; A, 5-lobed flower; B, 4-lobed flower; C, D, dissected flowers; E, ovarium. Scale bars: 1 mm.
FIG. 2 in Asperula fidanii sp. nov. (Rubiaceae, Asperula L. sect. Oppositifoliae Schischk. ex Schönb.-Tem.): a new species from South Eastern Anatolia, Turkey
FIG. 2. — Distribution map of Asperula fidanii Eroğlu, sp. nov. and its relatives: ●, A. fidanii sp. nov.; ■, Asperula friabilis Schönb.-Tem.; ▲, Asperula podlechii Schönb.-Tem.; ♦, Asperula virgata Hub.-Mor. ex Ehrend. & Schönb.-Tem.; ◘, Asperula fragillima Boiss. & Hausskn.; *, Asperula cilicica Hausskn. ex Ehrend. Map taken from Google Earth.
FIG. 1 in Asperula fidanii sp. nov. (Rubiaceae, Asperula L. sect. Oppositifoliae Schischk. ex Schönb.-Tem.): a new species from South Eastern Anatolia, Turkey
FIG. 1. — Type specimens of Asperula fidanii Eroğlu, sp. nov. and relative species:A, A. fidanii sp. nov. [VANF165222]; B, A. fragillima Boiss. & Hausskn.[W0047267]; C, A. friabilis Schönb.-Tem. [K000770021]; D, A. podlechii Schönb.-Tem. [MSB, MSB120178].
FIG. 5 in Asperula fidanii sp. nov. (Rubiaceae, Asperula L. sect. Oppositifoliae Schischk. ex Schönb.-Tem.): a new species from South Eastern Anatolia, Turkey
FIG. 5. — SEM micrographs of pollen grains and mericarp of Asperula fidanii Eroğlu, sp. nov.; A, equatorial view; B, polar view; C, D, close ornamentation and colpus views of pollen grains; E, general view of mericarp; F, close view of mericarp. Scale bars: A, B, 2 µm; C, D, 1 µm; E, 300 µm; F, 20 µm.
FIG. 6 in Asperula fidanii sp. nov. (Rubiaceae, Asperula L. sect. Oppositifoliae Schischk. ex Schönb.-Tem.): a new species from South Eastern Anatolia, Turkey
FIG. 6. — Habitat of Asperula fidanii Eroğlu, sp. nov.: A, general view; B, close view. Note: the white arrows in the photo A show the spots on the rock where the species was present.
Dataset: Tempus AI, Inc (TEM) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Figs 17–23. Trigonaspis melvillea. TEM whole mounts from the Weddell Sea, Antarctica. 17 in Coccolithophorids in Polar Waters: Trigonaspis spp. Revisited
Figs 17–23. Trigonaspis melvillea. TEM whole mounts from the Weddell Sea, Antarctica. 17 – whole cell with flagella and a curled up haptonema positioned inside a corona of distinct flagellar pole coccoliths; 18 – complete cell with flagella and partly extended haptonema; 19 – detail of the distal termination of a flagellar pole coccolith (from Fig. 18); 20 – rimmed body coccoliths supporting densely packed layers of crystallite groups (from Fig. 18). Unmineralized under layer scales are pointed out; 21 – detail of unmineralized termination of flagellar pole coccolith. The still remaining organic matrix clearly reveals the triangular shape of a crystallite group; 22 – detail of body coccolith calcification. Notice that the triangles are united to form hexagonal rings; 23 – uncalcified specimen showing body coccolith base plates and under layer scales (arrows).
TEM_Data_AEK-1
<p>TEM data on the neutron irradiated RPV base metal steel AEK-1, from the LONGLIFE Project, for the ENTENTE Database. </p>
TEM holography characterization of the first element of the fan-out sorter
<p>This dataset contains the phase reconstraction of the first element of an OAM sorter.</p> <p>The phase mask has be rialized in the fan-out configuration via FIB milling of a thin SiN membrane.</p> <p>The reconstruction is obtained via TEM holography experiments.</p> <p> </p>
Evolution of IT system and TEM camera performance
<p>This Excel file collates throughput specifications of transmission electron microscopy (TEM) cameras, mass storage, network and memory between 1996 and 2018. The absolute and relative development of the throughput is analyzed in charts.</p>
Figs 24–27 in On the Nature of Tintinnid Loricae (Ciliophora: Spirotricha: Tintinnina): a Histochemical, Enzymatic, EDX, and High-resolution TEM Study
Figs 24–27. Transmission electron micrographs of a lorica surface in Eutintinnus angustatus at middle (24) and higher (25–27) resolution. 24 – crystal lattice; 25 – digitally enlarged detail of Fig. 24 (bottom part). The periodicity of the hexagonal structures amounts to ~ 23.7 nm with a resolution of ~ 3 nm for the smallest details; 26 – fast Fourier transform of Fig. 25; 27 – noise filtered bright field image after inverse Fourier transform of Fig. 26, using only the diffraction spots. Due to the enhanced contrast, the ultrastructure of the crystal lattice appears more distinct.
Figs 20–23 in On the Nature of Tintinnid Loricae (Ciliophora: Spirotricha: Tintinnina): a Histochemical, Enzymatic, EDX, and High-resolution TEM Study
Figs 20–23. Transmission electron micrographs of a lorica surface in Eutintinnus angustatus at middle resolution. 20 – a crystalline region ~ 1.5 µm in diameter is shown in the centre of the micrograph. An aggregate of bitter salt (MgSO 4) is attached to the wall (arrow); 21 – crystalline area at higher magnification showing dark spots of sodium and potassium chloride on the lorica wall; 22 – each black spot represents a NaCl or KCl nanocrystal (arrows), which has almost the same size as the unit cells of the crystal lattice (~ 20 nm); 23 – Fourier filtered high-resolution micrograph of a sodium chloride nanocrystal.
Fig. 15. Energy-dispersive X in On the Nature of Tintinnid Loricae (Ciliophora: Spirotricha: Tintinnina): a Histochemical, Enzymatic, EDX, and High-resolution TEM Study
Fig. 15. Energy-dispersive X-ray spectrometric (EDX) analysis in the scanning electron microscope, using uncoated material. The analysed area of the Eutintinnus angustatus lorica is marked by a white frame (~ 11 × 9 µm in size). Since this part of the lorica was freely suspended in the vacuum, elemental detection occurred without influence of the carbon substrate.
Figs 16–19 in On the Nature of Tintinnid Loricae (Ciliophora: Spirotricha: Tintinnina): a Histochemical, Enzymatic, EDX, and High-resolution TEM Study
Figs 16–19. Transmission electron micrographs of an uncoated lorica surface of Eutintinnus angustatus at different magnifications. 16 – overview of right lorica half. The lorica lies nearly horizontally on the electron transparent holey carbon substrate. The black rectangular structures are the copper bars of the TEM grid; 17 – anterior portion of right lorica half; 18 – apical lorica portion; 19 – lateral lorica portion. The dark crystalline dendritic structures consist of sodium chloride nanocrystals, which probably originate in the sea water.
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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.