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2,113 results for “High resolution”
Datasets of high spatial resolution scans of the airborne ultrasound field at the front, back and left side of an ultrasonic welding machine
<p>This dataset contains measuring data which are the result of investigations of the airborne ultrasound field of an ultrasonic welding machine. These investigations have been conducted within the scope of the EMPIR project 15HLT03: “Ears II - Metrology for modern hearing assessment and protecting public health from emerging noise sources”. In the context of “Ears II”, they served gaining knowledge for occupational safety and health. Here, the aim was to investigate the structure of the airborne ultrasound field at ultrasound related workplaces. Therefore, a reference workstation was set up in the laboratory of the Physikalisch-Technische Bundesanstalt (PTB). The airborne ultrasound field of a typical industrial source of airborne ultrasound (an ultrasonic welding machine) was measured with a scanning microphone system with a high spatial resolution.</p> <p>The dataset contains data of 6 measurements:</p> <ul> <li>At the back of the ultrasonic welding machine at a vertical surface with dimensions 168 cm x 150 cm (width x height)</li> <li>At the left side of the ultrasonic welding machine at a vertical surface with dimensions 168 cm x 150 cm (width x height)</li> <li>At the front of the ultrasonic welding machine at a horizontal surface with dimensions 168 cm x 75 cm (width x depth)</li> <li>At the front of the ultrasonic welding machine at a vertical surface with dimensions 168 cm x 150 cm (width x height) with a distance of 24 cm to the sonotrode</li> <li>At the front of the ultrasonic welding machine at a vertical surface with dimensions 168 cm x 150 cm (width x height) with a distance of 99 cm to the sonotrode</li> <li>At the front of the ultrasonic welding machine in a volume with dimensions 58 cm x 33 cm x 50 cm (width x depth x height) </li> </ul> <p>The measuring data is the square of the absolute value of the discrete Fourier transform of the signal voltage re 1 V<sup>2</sup> represented in the frequency domain, converted by fast Fourier transform, in the frequency range 0 – 100 kHz with a frequency resolution of 15.625 Hz. The data can be converted to sound pressure levels (SPL) using the calibration values published as a supplementary dataset.</p>
Supplementary Information to: Increasing the spatial resolution of cloud property retrievals from Meteosat SEVIRI by use of its high–resolution visible channel: Evaluation of candidate approaches with MODIS observations
<p>This repository contains the Python programmes and datasets used for</p> <p>the research described in the following paper:<br> https://doi.org/10.5194/amt-2019-334</p> <p>It has been prepared as supplementary information to the final paper.<br> <br> Note that the actual Cloud Property Retrieval (CPP) which would be<br> required for full reproducability of the results cannot be made<br> available by the authors, that the code included here is based on Python2, and that<br> paths to the dataset have to be adapted in the code.<br> <br> The repository consists of three separate parts/directories:<br> <br> * method: Python routines for generating the cloud property retrieval<br> input based on the Meteosat and MODIS data<br> <br> * analysis: Python routines for analysing the different experiments<br> from the CPP outputs, producing the figures and calculating the<br> comparison statistics<br> <br> * datasets: the various input and output datasets used for the<br> analyses of the paper</p>
High-resolution and gapless dual comb spectroscopy with current-tuned quantum cascade lasers
<p>Data for figures 2-7 in</p> <p>M. Gianella et al., <em>High-resolution and gapless dual comb spectroscopy with current-tuned quantum cascade lasers, </em>Optics Express <strong>28</strong>, 6197-6208 (2020)</p> <p><a href="https://doi.org/10.1364/OE.379790">https://doi.org/10.1364/OE.379790</a></p> <p>Funding: Swiss National Science Foundation / InnoSuisse Grant 40B2-0_176584</p>
FIGURE 99 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 99. FMNH PR2081, Tyrannosaurus rex. Right second metatarsal (MTII) in medial (A), lateral (B), dorsal (C), and ventral (D) view. Scale =10 cm. Photographs by J. Weinstein.
FIGURE 85 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 85. FMNH PR2081, Tyrannosaurus rex. Right humerus in dorsal (A), ventral (B), proximal (C), and distal (D) views. Closeups of the anterior (E) and posterior (F) surfaces of the proximal end are included. Scale = 5 cm. Abbreviations in Appendix 1. Photographs by J. Weinstein.
FIGURE 101 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 101. FMNH PR2081, Tyrannosaurus rex. Right fourth metatarsal (MTIV) in medial (A), lateral (B), dorsal (C), and ventral (D) view. Scale =10 cm. Photographs by J. Weinstein.
FIGURE 72 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 72. Putative proatlas arch or atlantal rib in tyrannosaurid theropods. A-D, FMNH PR2081, Tyrannosaurus rex. Dorsal (left) and ventral (right) views of putative right (A, C) and left (B, D) elements; scale = 5 cm. Specimen orientation would be appropriate for either the proatlas or rib interpretation. E, FMNH PR308 (either Albertosaurus or Daspletosaurus), left dorsolateral view of craniovertebral joint showing putative proatlas elements in articulation. Photographs by J. Weinstein.
FIGURE 91 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 91. FMNH PR2081, Tyrannosaurus rex. Left pelvic girdle articulated. Scale = 30 cm. Photograph by J. Weinstein.
FIGURE 23 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 23. FMNH PR2081, Tyrannosaurus rex. Isolated left postorbital in medial (A) and lateral (B) view. Scale = 5 cm.
FIGURE 76 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 76. FMNH PR2081, Tyrannosaurus rex. Anterior view of head of left rib from p17. Scale = 5 cm. See Appendix 1 for abbreviations.
FIGURE 79. RTMP 91.36.500 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 79. RTMP 91.36.500, cf. Albertosaurus libratus. Dorsal view of partial gastral basket in articulation.
FIGURE 46 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 46. FMNH PR2081, Tyrannosaurus rex. Right articular in dorsal view, showing extra foramen aereum (fa). Other abbreviations in Appendix 1. Photograph by J. Weinstein.
FIGURE 109 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 109. FMNH PR2081, Tyrannosaurus rex. Muscle attachment scars on lateral surface of femur and subtrochanteric complex (stc). A, cast of left femur, lateral view. B, Cartoon interpretation of same specimen. C, Cast of right femur, lateral view. Abbreviations in Appendix 1.
FIGURE 102 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 102. FMNH PR2081, Tyrannosaurus rex. Right fifth metatarsal (MTV) in lateral (A) and medial (B) view. Scale =10 cm. Photographs by J. Weinstein.
FIGURE 100 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 100. FMNH PR2081, Tyrannosaurus rex. Right third metatarsal (MTIII) in medial (A), lateral (B), dorsal (C), and ventral (D) view. Scale = 10 cm. Photographs by J. Weinstein.
FIGURE 103 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 103. FMNH PR2081, Tyrannosaurus rex. Right metatarsus from proximal (above) and distal (below) view. Scale = 10 cm. Photographs by J. Weinstein.
FIGURE 98 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 98. FMNH PR2081, Tyrannosaurus rex. Right lateral distal tarsal in (clockwise from top) lateral, distal, medial, and proximal views. Scale = 5 cm.
FIGURE 104 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 104. FMNH PR2081, Tyrannosaurus rex. Articulated right pes in anterior view. Photographs by J. Weinstein.
FIGURE 70 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 70. FMNH PR2081, Tyrannosaurus rex. Gastral basket, dorsal view. Anterior at top; note extensive fusion of first segments. Scale = 30 cm. Photograph by J. Weinstein.
FIGURE 106 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 106. FMNH PR2081, Tyrannosaurus rex. Phalanges of right pes in ventral view. Scale — 10 cm. Photographs by J. Weinstein.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.