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343 results for “lock”
Output from ICON v2.6.2.2 cloud locking simulations: 3D radiative fluxes and additional atmospheric variables
<p>Simulation output from a cloud locking experiment carried out by A. Voigt with ICON version 2.6.2.2, originally for use in M. Huber’s PhD thesis (<a href="https://utheses.univie.ac.at/detail/63548/">https://utheses.univie.ac.at/detail/63548/</a>) and described therein. This subset was processed by E.K. Van de Koot for use in a study by McGraw et al (submitted 2024). Vertically-resolved radiative flux output is in the ‘phy_3d’ files, while ‘atm_2d’ and ‘atm_3d’ include additional atmospheric quantities, such as temperatures, specific humidity, and 2D radiative fluxes at the top-of-atmosphere and surface. Each file name is prefaced with the name of the relevant simulation (e.g. ‘amip_T1C1W1’), which follows nomenclature described in the Huber thesis.</p> <p>*Updated Dec 4, 2024 to fix a very small issue on vertical levels in the 'phy' files.</p>
Fig. 3 in Sound production and pectoral spine locking in a Neotropical catfish (Iheringichthys labrosus, Pimelodidae)
Fig. 3. Sonogram (top) and oscillogram (below) swimbladder drumming sounds recorded underwater illustrating sound characteristics measured. TD = train durations; SD = sound duration; PP = pulse period; PD = pulse durations.
Fig. 1 in Sound production and pectoral spine locking in a Neotropical catfish (Iheringichthys labrosus, Pimelodidae)
Fig. 1. Sonogram (top) and oscillogram (below) of pectoral sounds illustrating sound characteristics measured. TD = train durations; SD = sound duration; PP = pulse period; PD = pulse durations.
Fig. 2 in Sound production and pectoral spine locking in a Neotropical catfish (Iheringichthys labrosus, Pimelodidae)
Fig. 2. Oscillogram of pectoral sound (all pulses in the oscillogram) emitted by Iheringichthys labrosus caught in the net in field.
Original raw data to paper "Towards Fourier Domain Mode Locked frequency combs"
<p>The file contains the 4 original datasets used in the paper. The format is HD5. The data represents transients recorded with a Keysight 63GHz real time oscilloscope. The data represents the output from fast 35GHz and 50GHz diode base photo receivers detecting beat signals of two independent lasers.</p> <p> </p> <p>The filename "#A_Bnm_Cnm_Dus.h5" contains the following information:</p> <p> - A is the number of the measurement<br> - B is the bandwidth of the FDML output in nanometers<br> - C is the wavelength of the CW laser in nanometers<br> - D is the length of the measurement in micrometers</p> <p>The data set "#9_80nm_1290nm_200us.h5" is shown in:<br> - Figure 4e (as Measurement 3)</p> <p>The data set "#10_80nm_1290nm_200us.h5" is shown in:<br> - Figure 4e (as Measurement 4)</p> <p>The data set "#17_40nm_1305nm_200us.h5" is shown in:<br> - Figure 2b, c, d, e<br> - Figure 3<br> - Figure 4a, b, c, d, e(as Measurement 1)<br> - Figure S2<br> - Figure S3<br> - Figure S4</p> <p>The data set "#18_40nm_1305nm_200us.h5" is shown in:<br> - Figure 4e (as Measurement 2)</p> <p>Each dataset contains two collections of data.<br> One is the beatsignal between FDML laser and CW laser.<br> The second is the beatsignal between the two CW lasers during the measurement time of the first beat signal.</p>
Fig. 5 in Hydrographic conditions driving sardine and anchovy populations in a land-locked sea Abstract
Fig. 5: Common trends (uniteless) and factor loadings of anchovy and sardine landings and recruits at age 0. Trends were calculated with DFA using three common trends and two explanatory variables (T100, S100). Factor loadings are plotted for: 1 - sardine recruits age 0, 2 - sardine landings, 3 - anchovy recruits, 4 - anchovy landings.
Fig. 4 in Hydrographic conditions driving sardine and anchovy populations in a land-locked sea Abstract
Fig. 4: Annual time series of temperature, salinity, apparent oxygen utilisation (AOU), total inorganic nitrogen (TIN) and orthophosphates (HPO 2-), all collected at station S between 1975 and 2010.
Fig. 3 in Hydrographic conditions driving sardine and anchovy populations in a land-locked sea Abstract
Fig. 3: From top to bottom: annual time series of total (sardine+anchovy) recruits and landings; sardine recruits and landings; and anchovy recruits and landings, all between 1975 and 2010.
Fig. 2 in Hydrographic conditions driving sardine and anchovy populations in a land-locked sea Abstract
Fig. 2: Schematic diagram of the fisheries and environmental data, methods and models used in analyses.
Fig. 6 in Hydrographic conditions driving sardine and anchovy populations in a land-locked sea Abstract
Fig. 6: Observed values (diamonds) and fitted values (black lines) of: sardine recruits age 0, sardine landings, anchovy recruits age 0, anchovy landings. Fitted values were calculated with DFA using three common trends and two explanatory variables (T100,S100).
Fig. 1 in Hydrographic conditions driving sardine and anchovy populations in a land-locked sea Abstract
Fig. 1: The geography of the Adriatic-Ionian basin, with major dynamical features and oceanographic processes illustrated. WAC stands for the surface Western Adriatic Current driven by freshwater inputs, ADW denotes the bottom density current which originates from wintertime dense water generation at the shallow northern (D1) and deep southern (D2) Adriatic regions, while EAC stands for the Eastern Adriatic Current flowing at surface and intermediate layers. Ionian Sea circulation includes cyclonic (C) or anticyclonic (A) circular current regime in its northern parts, resulting in warm and saline Levantine Intermediate Water (LIW) and colder and less saline upper-layer Western Mediterranean Waters (WMW) flowing at different pathways depending on the BIOS (Bimodal Adriatic-Ionian Oscillation) phase (full line denotes pathways during cyclonic BIOS phase and dashed line during anticyclonic BIOS phase). Finally, EMT denotes the deep massive outflow of dense waters from the Aegean Sea to the Eastern Mediterranean during the Eastern Mediterranean Transient in early 1990s. Sardine and anchovy data were collected northwest from the GSA 17 line (pink, dashed). Station at which environmental data were collected is marked with S.
Model data used for the paper: "Heat extremes driven by amplification of phase-locked circumglobal waves forced by topography in an idealized atmospheric model"
<p>Atmospheric model output to reproduce the results of the study: "<strong>Heat Extremes Driven by Amplification of Phase-Locked Circumglobal Waves Forced by Topography in an Idealized Atmospheric Model" </strong>published in Geophysical Research letters.<br> <br> Authors: B. Jiménez-Esteve. K. Kornhuber and D. I.V. Domeisen <br> <br> DOI: <a href="https://doi.org/10.1029/2021GL096337">https://doi.org/10.1029/2021GL096337</a><br> <br> For more information about the model setup and the design of the experiments please refer to the above publication.</p>
Supplementary Data for 'A sensitive array for microRNA expression profiling (miChip) based on locked nucleic acids (LNA).'
<p>Supplementary Data for 'Castoldi, M., Schmidt, S., Benes, V., Noerholm, M., Kulozik, A.E., Hentze, M.W. and Muckenthaler, M.U., 2006. A sensitive array for microRNA expression profiling (miChip) based on locked nucleic acids (LNA). <em>Rna</em>, <em>12</em>(5), pp.913-920.'</p>
Land-Locked Convection as a Barrier to MJO Propagation across the Maritime Continent
<p>This dataset contains the subset model output variables that were used to derive the results presented in the following publication:</p> <p>Savarin, A. & S. S. Chen (2023): Land-Locked Convection as a Barrier to MJO Propagation across the Maritime Continent. <em>Journal of Advances in Modeling Earth Systems</em>, 15, e2022MS003503. https://doi.org/10.1029/2022MS003503</p> <p>For the sake of saving space, the model output variables (file names starting with <em>uwincm_</em>) are separated into 2D fields (latitude, longitude, land mask, precipitation, and surface zonal winds) for the duration of model simulation and 3D fields (pressure, temperature, and 3D winds) for selected times used in the manuscript. </p> <p>Additionally, results of large-scale precipitation tracking for MJO are stored in the file names that begin with <em>lpt_. </em></p> <p>HYCOM (ocean model) bathymetry and surface temperature for initial conditions are stored in <em>HYCOM_IC_</em> files. </p> <p> </p>
DS4. Experimental evaluation of the TERAWAY physical layer system, implementing optical injection locking and optical beamforming, using bulk components
<p>This set comprises experimental results from the performance evaluation of the TERAWAY system in the physical layer, implementing bulk components. This performance evaluation focused on the optical generation of millimeter-wave signals implementing injection locking technique by means of inserting an optical frequency comb into the reference optical laser source, the fiber transmission of the optical signals, as well as the processing of this signal via an optical beamforming network.</p> <p>The data set consists of multiple waveforms that correspond to 16-QAM electrical signals of 500 MBaud symbol rate, at a central frequency of 60 GHz. These waveforms were obtained directly after the photodetection stage that consists of two high-speed photodetectors in order to emulate an optical beamforming scenario. The set is separated into different folders that correspond to the injection-locked and unlocked scenarios, both in back-to-back configuration and after a 25 km transmission of the signal through an optical fiber. Each folder contains the waveforms of the electrical signals, as they were generated at the photodetection stage, under various optical power values.</p>
Data - Zero-Offset Frequency Locking of Lasers at Low Optical Powers with an Optical Phase Locked Loop
<p>This dataset contains measurement data and processing code for the results published in "Zero-Offset Frequency Locking of Lasers at Low Optical Powers with an Optical Phase Locked Loop". </p>
Do Generic Volar Locking Plates Provide Similar Outcomes at a Reduced Cost?
ClinicalTrials.gov study NCT06343467. IPD Sharing: NO. Countries: 1. Publications: 7.
CCSM3 simulation data for tidally locked planets
<p>This data set includes simulation results of atmosphere, ocean and sea ice on tidally locked planets, using the model CCSM3.</p>
Gold Lock Improved
An updated version of my previous gold lock, better metal loop ( more curved less weirdly shaped). Free. I am much happier with this cersion than the last. Source: Objaverse 1.0 / Sketchfab
WMID-73E1F1 - Medieval Key (locking)
An almost complete copper alloy rotary key of probable Medieval date (AD 1150 to AD 1400). The key can be described in several sections: The bow or handle, stem and bit. The bow is flat and lozengiform, with an incomplete tubular projection (perhaps a suspension loop) at one corner, on the outside edge. Four rectangular perforations (holes) are present in the bow, positioned centrally around a central square perforation. The stem is attached to the bow at another corner. A worn rectangular triple moulding or collar is present at the junction between stem and bow. The stem is circular in cross-section and hollow. For more information, please visit the online database record available at: https://finds.org.uk/database/artefacts/record/id/1056779. Source: Objaverse 1.0 / Sketchfab
ScienceDex guides
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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.