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218 results for “BUBBLES”

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zenodo48/100

Two-bubble simulation and gravitational wave spectrum codes and data

<p><span>Code and data used in the paper with title</span><a href="https://doi.org/10.1103/PhysRevD.104.075039"><span> <em>Vacuum bubble collisions: from microphysics to gravitational waves </em>by Oliver Gould, Satumaaria Sukuvaara, and David Weir</span></a><span> [</span><a href="https://arxiv.org/abs/2107.05657"><span>arXiv:2107.05657</span></a><span>].&nbsp;</span></p> <p><span>The field simulation and gravitational wave spectrum calculation codes are based on Gravitational radiation from colliding vacuum bubbles by Arthur Kosowsky, Michael S. Turner and Richard Watkins [</span><a href="https://inspirehep.net/literature/324187"><span>Inspire</span></a><span>].</span></p> <p><span>Contains files:</span></p> <ul> <li> <p><span>two_bubbles_code-v1.0.1.zip is a snapshot of a</span><a href="https://version.helsinki.fi/two_bubbles/two_bubbles_code/"><span> git repository</span></a><span>, corresponding to</span><a href="https://version.helsinki.fi/two_bubbles/two_bubbles_code/-/tree/v1.0.1?ref_type=tags"><span> commit v1.0.1</span></a><span>. Contains the codes with which the majority of the data was produced.</span><span><br><br></span></p> </li> <li> <p><span>two_bubbles_data-v1.0.1.zip is a snapshot of a</span><a href="https://version.helsinki.fi/two_bubbles/two_bubbles_data/"><span> git repository</span></a><span>, corresponding to</span><a href="https://version.helsinki.fi/two_bubbles/two_bubbles_data/-/tree/v1.0.1?ref_type=tags"><span> commit v1.0.1</span></a><span>. It contains the majority of data used in the paper. Note however that the simulation pickle files are examples run on a coarser lattice due to Zenodo file size restrictions. Apart from few exceptions, the data in this file was produced by the codes in two_bubbles_code-v1.0.1.zip.</span><span><br><br></span></p> </li> </ul> <p><span>README.md files, specifying and explaining the contents and usage, are included within. The v1.0.1 of</span><a href="https://version.helsinki.fi/two_bubbles/two_bubbles_code/-/blob/v1.0.1/README.md?ref_type=tags"><span> </span><span>code README.md</span></a><span> and the</span><a href="https://version.helsinki.fi/two_bubbles/two_bubbles_data/-/blob/v1.0.1/README.md?ref_type=tags"><span> </span><span>data README.md</span></a><span> can be found from the repositories as well.</span></p> <p><span>The update v1.0.1 updates the README and fixes a small error in the calculation of the gravitational wave spectrum. We thank Toby Opferkuch for pointing this out. The error in the code does not affect the results in two_bubbles_data-v1.0.0.zip or the paper as they were produced with a slightly earlier version of the code, before the appearance of this error. The version two_bubbles_data-v1.0.1 updates the README, clarifying some points.</span></p>

opencc-by-4.0Jul 2021View details →
zenodo48/100

Reproduction package for the paper "Bottling the Champagne: Dynamics and Radiation Trapping of Wind-Driven Bubbles around Massive Stars"

<p>Research&nbsp;Data&nbsp;Management package for&nbsp;&quot;Bottling the&nbsp;Champagne:&nbsp;Dynamics&nbsp;and&nbsp;Radiation&nbsp;Trapping&nbsp;of&nbsp;Wind-Driven&nbsp;Bubbles&nbsp;around&nbsp;Massive&nbsp;Stars&quot;</p> <p>Authors:&nbsp;Sam&nbsp;Geen&nbsp;&amp;&nbsp;Alex&nbsp;de&nbsp;Koter</p> <p>Status: Accepted by MNRAS<br> This package aims to provide a full data reproduction pipeline. Please see Readme.md for more information.</p>

opencc-by-4.0Apr 2021View details →
zenodo48/100

bubbling_5

This is the process of making a carafe Bontemps. The step depicted is called "bubbling"(from the Mingei project).

opencc-by-sa-4.0Jul 2022View details →
zenodo48/100

bubbling_2

This is the process of making a carafe Bontemps. The step depicted is called "bubbling"(from the Mingei project).

opencc-by-sa-4.0Jul 2022View details →
zenodo48/100

bubbling_1

This is the process of making a carafe Bontemps. The step depicted is called "bubbling"(from the Mingei project).

opencc-by-sa-4.0Jul 2022View details →
zenodo48/100

bubbling_3

This is the process of making a carafe Bontemps. The step depicted is called "bubbling"(from the Mingei project).

opencc-by-sa-4.0Jul 2022View details →
zenodo48/100

bubbling_4

This is the process of making a carafe Bontemps. The step depicted is called "bubbling"(from the Mingei project).

opencc-by-sa-4.0Jul 2022View details →
zenodo48/100

Simulations of Rising Air Bubbles in Viscoelastic Fluids

<p>Videos, plots and the underlying data, generated from&nbsp;simulations of rising air bubbles in viscoelastic&nbsp;fluids for varying relaxation times and bubble volumes. The underlying model for the viscoelastic fluid is the Giesekus model, which was discretized with the fully implicit log-conformation approach. The free surface is modeled using an interface-tracking method. For more details cf.&nbsp;Knechtges, P. <em>Simulation of Viscoelastic Free-Surface Flows</em>&nbsp;PhD thesis (RWTH Aachen, 2018).</p>

opencc-by-4.0Jul 2018View details →
zenodo44/100

X-ray light-field - Gel bubbles - 1 deg angular range

<p>X-ray light-field of bubbles in hair gel, taken with the FleX-ray scanner, in the Computational Imaging group of CWI (Amsterdam).</p> <p>Angular range is ~1 degree, panel pixel size ~150 um.</p> <p>This bundle includes:</p> <ul> <li> <pre><code>light-field_corrected.vox</code></pre> Light-field in the VOX v0 data format (based on HDF5). Any HDF5 reader can open it. Native support is available here:&nbsp;<a href="https://github.com/cicwi/plenoptomos">https://github.com/cicwi/plenoptomos</a>. The image floating point precision is FP32. The images have been back-ground subtracted.</li> <li> <pre><code>light-field_acquisition_rawdata.tbz </code></pre> <p>Light-field acquisition raw data, archived with Tar and Bzip2. It contains TIF images as projections, dark-field and flat-field. The ini and txt files provide information about the scan (motor positions, etc).</p> </li> <li> <pre><code>tomo_acquisition_rawdata.tbz</code></pre> Tomographic acquisition raw data, archived with Tar and Bzip2. It contains TIF images as projections, dark-field and flat-field. The ini and txt files provide information about the scan (motor positions, angles, etc).</li> <li> <pre><code>tomo_reconstruction_and_segmentation.h5</code></pre> <p>Tomographic reconstruction of the raw data, in HDF5. Any HDF5 reader can open it. It contains two self-descriptive datasets: &quot;volume&quot; and &quot;segmentation&quot;.</p> </li> </ul>

opencc-by-4.0Sep 2020View details →
zenodo44/100

Photonics4All Bookmark Bubble (Swedish)

<p>The purpose of the bookmarks for the project Photonics4All is to increase the public awareness of photonics and especially of the technological advances of photonics which have changed and improved everyday life (basic technology introduction).<br> <br> Why do soap bubbles have colour?<br> <br> Light reflects off both the inner and outer surfaces of a soap bubble. As the bubble dries out it changes thickness and the light waves reflecting off both surfaces have to travel different distances. White light is made up of all different colours – or waves of different lengths and - when light waves meet – or overlap - they create different colours.  Because reflected light travels different distances due to the different film thicknesses we see iridescence in soap bubbles. This phenomenon is used in photonics to provide anti-reflection coating on your glasses for example.</p> <p> </p>

opencc-by-4.0Jul 2015View details →
zenodo44/100

Photonics4All Bookmark Bubble (Slovak)

<p>The purpose of the bookmarks for the project Photonics4All is to increase the public awareness of photonics and especially of the technological advances of photonics which have changed and improved everyday life (basic technology introduction).<br> <br> Why do soap bubbles have colour?<br> <br> Light reflects off both the inner and outer surfaces of a soap bubble. As the bubble dries out it changes thickness and the light waves reflecting off both surfaces have to travel different distances. White light is made up of all different colours – or waves of different lengths and - when light waves meet – or overlap - they create different colours.  Because reflected light travels different distances due to the different film thicknesses we see iridescence in soap bubbles. This phenomenon is used in photonics to provide anti-reflection coating on your glasses for example.</p> <p> </p>

opencc-by-4.0Jul 2015View details →
zenodo44/100

Photonics4All Bookmark Bubble (Russian)

<p>The purpose of the bookmarks for the project Photonics4All is to increase the public awareness of photonics and especially of the technological advances of photonics which have changed and improved everyday life (basic technology introduction).<br> <br> Why do soap bubbles have colour?<br> <br> Light reflects off both the inner and outer surfaces of a soap bubble. As the bubble dries out it changes thickness and the light waves reflecting off both surfaces have to travel different distances. White light is made up of all different colours – or waves of different lengths and - when light waves meet – or overlap - they create different colours.  Because reflected light travels different distances due to the different film thicknesses we see iridescence in soap bubbles. This phenomenon is used in photonics to provide anti-reflection coating on your glasses for example.</p> <p> </p>

opencc-by-4.0Jul 2015View details →
zenodo44/100

Photonics4All Bookmark Bubble (Italian)

<p>The purpose of the bookmarks for the project Photonics4All is to increase the public awareness of photonics and especially of the technological advances of photonics which have changed and improved everyday life (basic technology introduction).<br> <br> Why do soap bubbles have colour?<br> <br> Light reflects off both the inner and outer surfaces of a soap bubble. As the bubble dries out it changes thickness and the light waves reflecting off both surfaces have to travel different distances. White light is made up of all different colours – or waves of different lengths and - when light waves meet – or overlap - they create different colours.  Because reflected light travels different distances due to the different film thicknesses we see iridescence in soap bubbles. This phenomenon is used in photonics to provide anti-reflection coating on your glasses for example.</p> <p> </p>

opencc-by-4.0Jul 2015View details →
zenodo44/100

Photonics4All Bookmark Bubble (French)

<p>The purpose of the bookmarks for the project Photonics4All is to increase the public awareness of photonics and especially of the technological advances of photonics which have changed and improved everyday life (basic technology introduction).<br> <br> Why do soap bubbles have colour?<br> <br> Light reflects off both the inner and outer surfaces of a soap bubble. As the bubble dries out it changes thickness and the light waves reflecting off both surfaces have to travel different distances. White light is made up of all different colours – or waves of different lengths and - when light waves meet – or overlap - they create different colours.  Because reflected light travels different distances due to the different film thicknesses we see iridescence in soap bubbles. This phenomenon is used in photonics to provide anti-reflection coating on your glasses for example.</p> <p> </p>

opencc-by-4.0Jul 2015View details →
zenodo44/100

Photonics4All Bookmark Bubble (Dutch)

<p>The purpose of the bookmarks for the project Photonics4All is to increase the public awareness of photonics and especially of the technological advances of photonics which have changed and improved everyday life (basic technology introduction).<br> <br> Why do soap bubbles have colour?<br> <br> Light reflects off both the inner and outer surfaces of a soap bubble. As the bubble dries out it changes thickness and the light waves reflecting off both surfaces have to travel different distances. White light is made up of all different colours – or waves of different lengths and - when light waves meet – or overlap - they create different colours.  Because reflected light travels different distances due to the different film thicknesses we see iridescence in soap bubbles. This phenomenon is used in photonics to provide anti-reflection coating on your glasses for example.</p> <p> </p>

opencc-by-4.0Jul 2015View details →
zenodo44/100

Photonics4All Bookmark Bubble (Portuguese)

<p>The purpose of the bookmarks for the project Photonics4All is to increase the public awareness of photonics and especially of the technological advances of photonics which have changed and improved everyday life (basic technology introduction).<br> <br> Why do soap bubbles have colour?<br> <br> Light reflects off both the inner and outer surfaces of a soap bubble. As the bubble dries out it changes thickness and the light waves reflecting off both surfaces have to travel different distances. White light is made up of all different colours – or waves of different lengths and - when light waves meet – or overlap - they create different colours.  Because reflected light travels different distances due to the different film thicknesses we see iridescence in soap bubbles. This phenomenon is used in photonics to provide anti-reflection coating on your glasses for example.</p> <p> </p>

opencc-by-4.0Jul 2015View details →
zenodo44/100

Photonics4All Bookmark Bubble (English)

<p>The purpose of the bookmarks for the project Photonics4All is to increase the public awareness of photonics and especially of the technological advances of photonics which have changed and improved everyday life (basic technology introduction).<br> <br> Why do soap bubbles have colour?<br> <br> Light reflects off both the inner and outer surfaces of a soap bubble. As the bubble dries out it changes thickness and the light waves reflecting off both surfaces have to travel different distances. White light is made up of all different colours – or waves of different lengths and - when light waves meet – or overlap - they create different colours.  Because reflected light travels different distances due to the different film thicknesses we see iridescence in soap bubbles. This phenomenon is used in photonics to provide anti-reflection coating on your glasses for example.</p> <p> </p>

opencc-by-4.0Jul 2015View details →
zenodo44/100

Photonics4All Bookmark Bubble (Spanish)

<p>The purpose of the bookmarks for the project Photonics4All is to increase the public awareness of photonics and especially of the technological advances of photonics which have changed and improved everyday life (basic technology introduction).<br> <br> Why do soap bubbles have colour?<br> <br> Light reflects off both the inner and outer surfaces of a soap bubble. As the bubble dries out it changes thickness and the light waves reflecting off both surfaces have to travel different distances. White light is made up of all different colours – or waves of different lengths and - when light waves meet – or overlap - they create different colours.  Because reflected light travels different distances due to the different film thicknesses we see iridescence in soap bubbles. This phenomenon is used in photonics to provide anti-reflection coating on your glasses for example.</p> <p> </p>

opencc-by-4.0Jul 2015View details →
zenodo44/100

Photonics4All Bookmark Bubble (German)

<p>The purpose of the bookmarks for the project Photonics4All is to increase the public awareness of photonics and especially of the technological advances of photonics which have changed and improved everyday life (basic technology introduction).<br> <br> Why do soap bubbles have colour?<br> <br> Light reflects off both the inner and outer surfaces of a soap bubble. As the bubble dries out it changes thickness and the light waves reflecting off both surfaces have to travel different distances. White light is made up of all different colours – or waves of different lengths and - when light waves meet – or overlap - they create different colours.  Because reflected light travels different distances due to the different film thicknesses we see iridescence in soap bubbles. This phenomenon is used in photonics to provide anti-reflection coating on your glasses for example.</p> <p> </p>

opencc-by-4.0Jul 2015View details →
zenodo44/100

Idealized wave data in support of Modulation of Bubble Mediated Gas Transfer due to Wave-Current Interactions

<p>WaveWatchIII data output from idealized solutions reported by Romero 2019</p> <p>Data are in Netcdf format and include metadata.</p> <p>Each file corresponds to a duration-limited solution with constant wind speed as indicated in the filename</p> <p>(e.g. 10mps means 10 m/s winds)</p> <p>&nbsp;</p>

opencc-by-4.0Oct 2022View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record