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25 results for “017”
Silk_machines_017
Loom (Silk Machine), Mingei project
ENDGAME - Laboratory Experiment 2023-02-21 Exp. 017 - High Speed Camera data
<p>Shock-tube experiments in combination with high speed Schlieren shadow photography. </p> <p>The shocktube setup consists of a high-pressure reservoir connected with a cylindrical tube through a diaphragm pulse valve which allows a fast release of pressurized gas into the ambient pressure tube. The high-pressure reservoir is filled with compressed air at a given overpressure with respect to ambient pressure (up to 8 bar). The pipe was either empty (i.e. with air at ambient conditions) or filled with a given amount of fluids (water or viscous fluid) or small particles. We adopted pipes with different inner diameters (3 and 4 cm) and different lengths (30 and 80 cm). Images were collected at a frame rate of 30000 fps.</p> <p>When the valve is open, a jet flow is produced, with shock and acoustic waves propagating in the atmosphere, which become visible due to the high speed Schlieren shadow photography.</p>
Amsterdam - 1890 Houses Lod2 017
<u>Coordinates</u>: N/A <br><u>Length</u>: 14.7 m<br><u>Width</u>: 16.35 m<br><u>Height</u>: 20.46 m<br><u>Vertices</u>: 12 <br><u>Primitives</u>: 10 <br><br> The Length, Width, Height, Vertices and Primitives listed above have been derived directly from the OBJ file.<br><br><u>Main Files:</u><br><table><tbody><tr><th>Filename</th><th>.mtl</th><th>.glb</th><th>.xml</th><th>.obj</th></tr><tr><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017.glb/content">1890_houses_LOD2_017.glb</a></td><td></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017.glb/content">Link</a></td><td></td><td></td></tr><tr><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017.mtl/content">1890_houses_LOD2_017.mtl</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017.mtl/content">Link</a></td><td></td><td></td><td></td></tr><tr><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017.obj/content">1890_houses_LOD2_017.obj</a></td><td></td><td></td><td></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017.obj/content">Link</a></td></tr><tr><td><a href="https://zenodo.org/api/records/12689610/files/11253073_metsmods.xml/content">11253073_metsmods.xml</a></td><td></td><td></td><td><a href="https://zenodo.org/api/records/12689610/files/11253073_metsmods.xml/content">Link</a></td><td></td></tr><tr><td><a href="https://zenodo.org/api/records/12689610/files/11253073_edm.xml/content">11253073_edm.xml</a></td><td></td><td></td><td><a href="https://zenodo.org/api/records/12689610/files/11253073_edm.xml/content">Link</a></td><td></td></tr></tbody></table><br><br><u>Thumbnails:</u><br><table><tbody><tr><th>Perspective</th><th>1000x1000</th><th>512x512</th><th>256x256</th><th>128x128</th></tr><tr><td>Perspective 1</td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_1.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_1_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_1_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_1_128x128.png/content">Link</a></td></tr><tr><td>Perspective 2</td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_2.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_2_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_2_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_2_128x128.png/content">Link</a></td></tr><tr><td>Perspective 3</td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_3.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_3_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_3_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_3_128x128.png/content">Link</a></td></tr><tr><td>Perspective 4</td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_4.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_4_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_4_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_4_128x128.png/content">Link</a></td></tr><tr><td>Perspective Top</td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_top.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_top_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_top_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12689610/files/1890_houses_LOD2_017_perspective_top_128x128.png/content">Link</a></td></tr></tbody></table><br><br><br><u>Changelog</u>: <br> - v<a href="https://doi.org/10.5281/zenodo.11483651">0.0.2</a>: Thumbnails added, Description updated with Link Tables.<br> - v<a href="https://doi.org/10.5281/zenodo.12689610">0.0.3</a>: Added XMLs for Europeana Data Model (EDM) and MetsMods.<br>
ENDGAME - Laboratory Experiment 2024-01-17 Exp. 017 - High Speed Camera data
<p>Shock-tube experiments in combination with high speed Schlieren shadow photography. </p> <p>The shocktube setup consists of a high-pressure reservoir connected with a cylindrical tube through a diaphragm pulse valve which allows a fast release of pressurized gas into the ambient pressure tube. The high-pressure reservoir is filled with compressed air at a given overpressure with respect to ambient pressure (up to 8 bar). The pipe was either empty (i.e. with air at ambient conditions) or filled with a given amount of small particles. We adopted pipes an inner diameter of 4 cm and different lengths (20, 30 and 80 cm). We also considered different volumes of pressurized gas (~650 cm3 and ~1550 cm3). A pressure sensor has been placed at the vent of the conduit to record pressure variations during experiments. Images from the high speed camera were collected at a frame rate of 30000 fps.</p> <p>When the valve is open, a jet flow is produced, with shock and acoustic waves propagating in the atmosphere, which become visible due to the high speed Schlieren shadow photography.</p>
ENDGAME - Laboratory Experiment 2024-01-18 Exp. 017 - High Speed Camera data
<p>Shock-tube experiments in combination with high speed Schlieren shadow photography. </p> <p>The shocktube setup consists of a high-pressure reservoir connected with a cylindrical tube through a diaphragm pulse valve which allows a fast release of pressurized gas into the ambient pressure tube. The high-pressure reservoir is filled with compressed air at a given overpressure with respect to ambient pressure (up to 8 bar). The pipe was either empty (i.e. with air at ambient conditions) or filled with a given amount of small particles. We adopted pipes an inner diameter of 4 cm and different lengths (20, 30 and 80 cm). We also considered different volumes of pressurized gas (~650 cm3 and ~1550 cm3). A pressure sensor has been placed at the vent of the conduit to record pressure variations during experiments. Images from the high speed camera were collected at a frame rate of 30000 fps.</p> <p>When the valve is open, a jet flow is produced, with shock and acoustic waves propagating in the atmosphere, which become visible due to the high speed Schlieren shadow photography.</p>
ENDGAME - Laboratory Experiment 2024-03-21 Exp. 017 - High Speed Camera data
<p>Shock-tube experiments in combination with high speed Schlieren shadow photography. </p> <p>The shocktube setup consists of a high-pressure reservoir connected with a cylindrical tube through a diaphragm pulse valve which allows a fast release of pressurized gas into the ambient pressure tube. The high-pressure reservoir is filled with compressed air at a given overpressure with respect to ambient pressure (up to 8 bar). The pipe was either empty (i.e. with air at ambient conditions) or filled with a given amount of small particles. We adopted a pipe with an inner diameter of 4 cm (outer diameter 5 cm) and 80 cm long. The volume of pressurized gas injected into the pipe was ~3000 cm3. In some cases a pressure sensor has been placed at the vent of the conduit to record pressure variations during the experiment. Images from the high speed camera were collected at a frame rate of 30000 fps.</p> <p>When the valve is open, a jet flow is produced, with shock and acoustic waves propagating in the atmosphere, which become visible due to the high speed Schlieren shadow photography.</p>
101-nights -sleep and dream study night 017
<p>The research project presented aims at putting the personal perception of Nathalie’s dreams through an objective, quantitative analysis using electroencephalography (EEG), in an attempt to establish a linkage between the two dimensions. </p> <p>During sleep periods, brain activity is similar to that of an awakened state, yet the thalamus, a phylogenetically ancient structure in the nervous system, isolates us from the environment. But this isolation is not total, and sometimes external stimuli are incorporated into the plot of our dreams. To establish a bridge between the record (EEG) and Nathalie’s dream narrative, we experiment with auditory stimuli as a possible mechanism of interference. </p> <p>The 101 nights is a longitudinal dataset. At the core of the study is the concordance of two divergent fields of knowledge to record and represent the dream experience. For 101 nights physiological and behavioral data are continuously paired with the dreamer’s inner life, geared towards a dialogue.</p> <p>A unique dataset for scientific analyses, methodological developments as well artistic projects, including cognitive science and multiple modalities of art. The unprecedented project allows an internal and external perspective on Nathalie’s dreams, containing extensive data for 101 consecutive nights and days.</p> <p>the project produced four immediate results:</p> <p>1. 952 GB of brain data was produced by the registry of 256 sensors over the period of 101 nights in continuity, including her body movement (actimetry and infrared camera).<br> 2. the audio logs of the words triggered by the computer system, each night with their exact time.<br> 3. Nathalie’s daily dream diary entries.<br> 4. day-by-day activity.</p>
20130516_017_M108_Rec_30
<p>User: Elodie Ey - email: eye@igbmc.fr<br> Mouse: M108 (group re-30 cage conditions study) - Sex: male - Strain: C57BL/6J - Genotype: +/+ - Treatment: none<br> Protocol: Male/male interaction – rectangle cage (30 min + 8 min) - File number: 1<br> Upon arrival, seven-week old C57BL/6J male mice were housed in groups of four in a colony room maintained at 23±1°C on a 12:12 hour light/dark cycle, with lights on at 8:00 AM. Mice had access to food and water ad libitum. One week after their arrival, the 48 males considered as occupants were socially isolated for 3 weeks before the experiments to increase their social motivation and reduce their aggressiveness. The 12 mice used as new-comers were kept in groups of four males throughout the experiment. The experiments were conducted when animals were 11 weeks of age. The day of testing, the tested mouse was left 30 min for habituation in the rectangle test cage (Plexiglas, 50×25×30 cm; 100 lx; clean sawdust bedding; sound-proof chamber). After this time, an unfamiliar C57BL/6 mouse of the same sex was introduced. The two animals were allowed to freely interact for 8 min. Vocalisations were recorded with a Condenser ultrasound microphone Polaroid/CMPA, the interface UltraSoundGate 416-200, and the software Avisoft SASLab Pro Recorder from Avisoft Bioacoustics (Berlin, Germany; sampling frequency: 300 kHz; FFT-length: 1024 points; 16-bit format). Simultaneously, social interactions were videotaped continuously (high-resolution CamTech Super-Hi-Res video camera; 25 fps; starting point for synchronization: the moment the hindlegs of the new comer touched the ground).<br> Number of audio files for each individual: 1 (the second file is the video file of the interaction)</p> <p>Experiment: cage conditions (30 min hab, rectangle)<br> Date experiment: 2013-04-30<br> Temperature: 22°C<br> Light cycle: day<br> Microphone: Avisoft Polaroid/CMPA<br> Acquisition hardware: Avisoft UltraSoundGate 416-200<br> Acquisition software: Avisoft-Recorder USG 4.2.15<br> Sampling frequency: 300<br> Bit depth: 16</p> <p>Laboratory: Institut Pasteur<br> 25, rue du Dr Roux<br> 75015 Paris<br> France</p>
20130516_017_M109_C_30
<p>User: Elodie Ey - email: eye@igbmc.fr<br> Mouse: M109 (group sq-30 cage conditions study) - Sex: male - Strain: C57BL/6J - Genotype: +/+ - Treatment: none<br> Protocol: Male/male interaction – square cage (30 min + 8 min) - File number: 1<br> Upon arrival, seven-week old C57BL/6J male mice were housed in groups of four in a colony room maintained at 23±1°C on a 12:12 hour light/dark cycle, with lights on at 8:00 AM. Mice had access to food and water ad libitum. One week after their arrival, the 48 males considered as occupants were socially isolated for 3 weeks before the experiments to increase their social motivation and reduce their aggressiveness. The 12 mice used as new-comers were kept in groups of four males throughout the experiment. The experiments were conducted when animals were 11 weeks of age. The day of testing, the tested mouse was left 30 min for habituation in the square test cage (Plexiglas, 50×50×30 cm; 100 lx; clean sawdust bedding; sound-proof chamber). After this time, an unfamiliar C57BL/6 mouse of the same sex was introduced. The two animals were allowed to freely interact for 8 min. Vocalisations were recorded with a Condenser ultrasound microphone Polaroid/CMPA, the interface UltraSoundGate 416-200, and the software Avisoft SASLab Pro Recorder from Avisoft Bioacoustics (Berlin, Germany; sampling frequency: 300 kHz; FFT-length: 1024 points; 16-bit format). Simultaneously, social interactions were videotaped continuously (high-resolution CamTech Super-Hi-Res video camera; 25 fps; starting point for synchronization: the moment the hindlegs of the new comer touched the ground).<br> Number of audio files for each individual: 1 (the second file is the video file of the interaction)</p> <p><br> Experiment: cage conditions (30 min hab, square)<br> Date experiment: 2013-04-30<br> Temperature: 22°C<br> Light cycle: day<br> Microphone: Avisoft Polaroid/CMPA<br> Acquisition hardware: Avisoft UltraSoundGate 416-200<br> Acquisition software: Avisoft-Recorder USG 4.2.15<br> Sampling frequency: 250<br> Bit depth: 16</p> <p>Laboratory: Institut Pasteur<br> 25, rue du Dr Roux<br> 75015 Paris<br> France</p>
Study of BMS-936558 (Nivolumab) Compared to Docetaxel in Previously Treated Advanced or Metastatic Squamous Cell Non-small Cell Lung Cancer (NSCLC) (CheckMate 017)
ClinicalTrials.gov study NCT01642004. IPD Sharing: Not stated. Countries: 21. Publications: 7.
Efficacy and Safety of Imipenem+Cilastatin/Relebactam (MK-7655A) in Japanese Participants With Complicated Intra-abdominal Infection or Complicated Urinary Tract Infection (MK-7655A-017)
ClinicalTrials.gov study NCT03293485. IPD Sharing: YES. Countries: 1. Publications: 1.
Pembrolizumab + Imprime PGG for Metastatic Non-small Cell Lung Cancer After Progression on First-Line Therapy: Big Ten Cancer Research Consortium BTCRC-LUN15-017
ClinicalTrials.gov study NCT03003468. IPD Sharing: NO. Countries: 1. Publications: 1.
Safety and Efficacy of a Switch to Doravirine/Islatravir in Participants With HIV-1 (MK-8591A-017)
ClinicalTrials.gov study NCT04223778. IPD Sharing: YES. Countries: 15. Publications: 1.
ELITE SLWR: global 1km 5-min SLDR at SIN Grid-Terra (2003_017-031)
<p>The <strong>E</strong>ssential therma<strong>l</strong> <strong>I</strong>nfrared remo<strong>T</strong>e s<strong>E</strong>nsing (<strong>ELITE</strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth’s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (<a href="https://elite.bnu.edu.cn/">https://elite.bnu.edu.cn</a>).</p> <p> </p> <p>This dataset is ELITE surface longwave downward radiation (SLDR) product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data, ELITE emissivity product and MERRA2 reanalysis data using the algorithms developed by Cheng et al. (2016), Cheng et al. (2017) and Yang and Cheng. (2020).</p> <p> </p> <p>This is the ELITE SLDR product in 2003 (DOY: 017-031). Please <a href="../records/10863827"><strong><em>click here</em></strong></a> to download the ELITE SLDR product in 2003 (DOY:032-046).</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2003-01-17 ~ 2003-01-31</li> <li>Spatial Resolution: 1 km</li> <li>Temporal Resolution: 5-min</li> <li>Data Format: h5</li> <li>Projection: Sinusoidal</li> <li>Scale: 0.05</li> <li>Offset: -1000</li> </ul> <p> </p> <p><strong>Citation </strong>(Please cite these papers when using the data)<strong>:</strong></p> <ol> <li>Cheng, J., & Liang, S. (2016). Global estimates for high spatial resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 54, 4115-4129</li> <li>Cheng, J., Liang, S., Wang, W., & Guo, Y. (2017). An efficient hybrid method for estimating clear-sky surface downward longwave radiation from MODIS data. Journal of Geophysical Research: Atmospheres, 122, 2616-2630</li> <li>Yang, F., & Cheng, J. (2020). A framework for estimating cloudy sky surface downward longwave radiation from the derived active and passive cloud property parameters. Remote Sensing of Environment, 248, 111972</li> </ol>
ELITE SLWR: global 1km 5-min SLUR at SIN Grid-Terra (2003_017-031)
<p>The <strong>E</strong>ssential therma<strong>l</strong> <strong>I</strong>nfrared remo<strong>T</strong>e s<strong>E</strong>nsing (<strong>ELITE</strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth’s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (<a href="https://elite.bnu.edu.cn/">https://elite.bnu.edu.cn</a>).</p> <p> </p> <p>This dataset is ELITE surface longwave upward radiation (SLUR) product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data using the algorithms developed by Cheng et al. (2016).</p> <p> </p> <p>This is the ELITE SLUR product in 2003 (DOY: 017-031). Please <a href="../records/10868868"><strong><em>click here</em></strong></a> to download the ELITE SLUR product in 2003 (DOY:032-046).</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2003-01-17 ~ 2003-01-31</li> <li>Spatial Resolution: 1 km</li> <li>Temporal Resolution: 5-min</li> <li>Data Format: h5</li> <li>Projection: Sinusoidal</li> <li>Scale: 0.05</li> <li>Offset: -1000</li> </ul> <p> </p> <p><strong>Citation </strong>(Please cite these papers when using the data)<strong>:</strong></p> <ol> <li>Cheng, J., & Liang, S. (2016). Global estimates for high spatial resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 54, 4115-4129.</li> </ol>
ELITE SLWR: global 1km 5-min SLDR at SIN Grid-Aqua (2003_017-031)
<p>The <strong>E</strong>ssential therma<strong>l</strong> <strong>I</strong>nfrared remo<strong>T</strong>e s<strong>E</strong>nsing (<strong>ELITE</strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth’s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (<a href="https://elite.bnu.edu.cn/">https://elite.bnu.edu.cn</a>).</p> <p> </p> <p>This dataset is ELITE surface longwave downward radiation (SLDR) product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data, ELITE emissivity product and MERRA2 reanalysis data using the algorithms developed by Cheng et al. (2016), Cheng et al. (2017) and Yang and Cheng. (2020).</p> <p> </p> <p>This is the ELITE SLDR product in 2003 (DOY: 017-031). Please <a href="10906384"><strong><em>click here</em></strong></a> to download the ELITE SLDR product in 2003 (DOY: 032-046).</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2003-01-17 ~ 2003-01-31</li> <li>Spatial Resolution: 1 km</li> <li>Temporal Resolution: 5-min</li> <li>Data Format: h5</li> <li>Projection: Sinusoidal</li> <li>Scale: 0.05</li> <li>Offset: -1000</li> </ul> <p> </p> <p><strong>Citation </strong>(Please cite these papers when using the data)<strong>:</strong></p> <ol> <li>Cheng, J., & Liang, S. (2016). Global estimates for high spatial resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 54, 4115-4129</li> <li>Cheng, J., Liang, S., Wang, W., & Guo, Y. (2017). An efficient hybrid method for estimating clear-sky surface downward longwave radiation from MODIS data. Journal of Geophysical Research: Atmospheres, 122, 2616-2630</li> <li>Yang, F., & Cheng, J. (2020). A framework for estimating cloudy sky surface downward longwave radiation from the derived active and passive cloud property parameters. Remote Sensing of Environment, 248, 111972</li> </ol>
ELITE SLWR: global 1km 5-min SLUR at SIN Grid-Aqua (2003_017-031)
<p>The <strong>E</strong>ssential therma<strong>l</strong> <strong>I</strong>nfrared remo<strong>T</strong>e s<strong>E</strong>nsing (<strong>ELITE</strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth’s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (<a href="https://elite.bnu.edu.cn/">https://elite.bnu.edu.cn</a>).</p> <p> </p> <p>This dataset is ELITE surface longwave upward radiation (SLUR) product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data using the algorithms developed by Cheng et al. (2016).</p> <p> </p> <p>This is the ELITE SLUR product in 2003 (DOY: 017-031). Please <a href="../records/10931942"><strong><em>click here</em></strong></a> to download the ELITE SLUR product in 2003 (DOY: 032-046).</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2003-01-17~ 2003-01-31</li> <li>Spatial Resolution: 1 km</li> <li>Temporal Resolution: 5-min</li> <li>Data Format: h5</li> <li>Projection: Sinusoidal</li> <li>Scale: 0.05</li> <li>Offset: -1000</li> </ul> <p> </p> <p><strong>Citation </strong>(Please cite these papers when using the data)<strong>:</strong></p> <ol> <li>Cheng, J., & Liang, S. (2016). Global estimates for high spatial resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 54, 4115-4129.</li> </ol>
FIGURE 16. Coelorinchus yurii, IOM M.003–017 in Revision of the Grenadier Genus Coelorinchus (Teleostei: Macrouridae) from the Mascarene Ridge, Western Indian Ocean, with Description of Two New Species
FIGURE 16. Coelorinchus yurii, IOM M.003–017, non-type specimen. A. Lateral view of head. B. Preoral region. C. Periproct. D, E. Nasal fossa and its squamation. Scale bars: A–C, 10.0 mm. D, 1.2 mm. E, 5.0 mm.
IO Islamic 017. Ta'rîkh-i-Jahânkushâi, The History of Nâdirshâh
<p>IO Islamic 017. Ta’rîkh-i-Jahânkushâi, The History of Nâdirshâh</p>
RNA Extraction and Amplification From Biopsy Specimens in Subjects With Metastatic Renal Cell Carcinoma (AGS-NTS-017)
ClinicalTrials.gov study NCT02026960. IPD Sharing: Not stated. Countries: 1. Publications: 0.
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.