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3,596 results for “French”
Dataset - Characterization of Kazachstania humilis and Lactic Acid Bacteria interactions in French sourdoughs
<p>Here you can find the dataset and Rmarkdonw script associated to the scientific paper : Dataset - Characterization of Kazachstania humilis and Lactic Acid Bacteria interactions in French sourdoughs</p>
Ontolex-lemon and TIAD versions of Apertium Esperanto-French dictionary
<p>OntoLex-lemon and TSV conversion of Apertium Bidix. For more details, see <a href="https://www.aclweb.org/anthology/2020.lrec-1.401/">https://www.aclweb.org/anthology/2020.lrec-1.401/</a></p> <p>Authors of the original data:</p> (c) 2005--2007, Universitat d'Alacant (Transducens group) (c) 2007, Universitat Pompeu Fabra (c) 2009-, Hèctor Alòs i Font (c) 2010, Corinne Daudier (c) 2010, Jacob Nordfalk 2012, Bernard Chardonneau
Ontolex-lemon and TIAD versions of Apertium French-Catalan dictionary
<p>OntoLex-lemon and TSV conversion of Apertium Bidix. For more details, see <a href="https://www.aclweb.org/anthology/2020.lrec-1.401/">https://www.aclweb.org/anthology/2020.lrec-1.401/</a></p> <p>Authors of the original data:</p> (c) 2005, Universitat d'Alacant, (Transducens group) (c) 2007 Eleka Ingenieritza Linguistikoa S.L. Prompsit Language Engineering S.L. (c) 2009 Jimmy O'Regan 2017-2020, Hèctor Alòs i Font 2015-2018, Francis M. Tyers 2017-2018, Xavi Ivars 2017, Bernard Chardonneau 2017, Kevin Brubeck Unhammer
Fon French Daily Dialogues Parallel Data
<p>We aim to collect, clean, and store corpora of Fon and French sentences for Natural Language Processing researches including Neural Machine Translation, Named Entity Recognition, etc. for Fon, a very low-resourced and endangered African native language.</p> <p>Fon (also called Fongbe) is an African-indigenous language spoken mostly in Benin, Togo, and Nigeria - by about 2 million people.</p> <p>As training data is crucial to the high performance of a machine learning model, the aim of this project is to compile the largest set of training corpora for the research and design of translation and NLP models involving Fon.</p> <p>Through crowdsourcing, Google Form Surveys, we gathered and cleaned #25377 parallel Fon-French# all based on daily conversations.</p> <p>To the crowdsourcing, creation, and cleaning of this version have contributed:</p> <p>1) Name: Bonaventure DOSSOU<br> Affiliation: MSc Student in Data Engineering, Jacobs University<br> Contact: femipancrace.dossou@gmail.com</p> <p>2) Name: Ricardo AHOUNVLAME<br> Affiliation: Student in Linguistics<br> Contact: tontonjars@gmail.com</p> <p>3) Name: Fabroni YOCLOUNON<br> Affiliation: Creator of the Label IamYourClounon<br> Contact: iamyourclounon@gmail.com</p> <p>4) Name: BeninLangues<br> Affiliation: BeninLangues<br> Contact: https://beninlangues.com/</p> <p>5) Name: Chris Emezue<br> Affiliation: MSc Student in Mathematics in Data Science, Technical University of Munich<br> Contact: chris.emezue@gmail.com</p> <p>_______________________________________________________</p> <p>To join as a contributor, please contact us at:<br> 1) https://twitter.com/bonadossou<br> 2) https://twitter.com/ChrisEmezue<br> 3) https://twitter.com/edAIOfficial<br> Or contact Bonaventure Dossou (femipancrace.dossou@gmail.com), Chris Emezue (chris.emezue@gmail.com)<br> _______________________________________________________</p> <p>Clavier Fongbé (WebView): https://bonaventuredossou.github.io/clavierfongbe/ (Made by Bonaventure Dossou)<br> Clavier Fongbé (Mobile Android Version): https://play.google.com/store/apps/details?id=com.fulbertodev.clavierfongbe&hl=en&gl=US (Fabroni Yoclounon, Bonventure Dossou et. al.)</p>
Linguistic praxeological organization of French as the schooling language
<p>Elements of the linguistic praxeological organization of French as the schooling language used to produce the framework (https://zenodo.org/deposit/4462850) used for the PEAPL project (https://blog.hepfr.ch/create/peapl/) and the framework used for the COMPER project (https://comper.fr/accueil).</p> <p>The following article will give explanations about the elaboration of the linguistic praxeological organizations: https://www.researchgate.net/publication/333244876_Francais_langue_de_scolarisation_Reflexions_sur_les_referentiels_de_competences_et_l'adaptive_learning</p>
Photonics4All Bookmark Grade (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> How can light help improve students' grades?<br> <br> In a continent like Africa, night time comes early. For many families with no access to electricity, it means the end of access to light or the use of dangerous kerosene lamps. Thanks to photonics, cheap, portable, rechargeable lights can be provided to kids so they can continue their homework even when the sun has gone down. Families can recharge the lights during the day using in-built solar panels, and these lights can provide up to 4 hours of light and help students improve their grades at school.<br> All thanks to progress in Photonics.</p>
Photonics4All Bookmark Cathedral (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> How can light enable you to travel in time?<br> <br> Ancient architectural buildings such as cathedrals were often colourfully painted. Unfortunately time has erased the colours from the stone - at least to our eyes. Light spectroscopy techniques however, can analyse very tiny amounts of pigment still present in the building materials to discover the original colour decoration.<br> Then, with the help of powerful projectors and lasers, we can project images directly onto the walls building to reproduce their original colours. This amazing technique can give us the feeling that we are seeing the cathedral as it was designed a thousand years ago.<br> All thanks to the progress of Photonics!</p> <p> </p>
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>
Photonics4All Bookmark Microscopy (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> Do cells have colors?<br> <br> These photos are taken by fluorescence microscope. Fluorescent matter will emit light when absorbing light with lower wavelength. Scientists make them into fluorescent stains, which can attach to the molecules in the cells. In this way, specific structures in the cells can be highlighted, and colorful photos are made. In 2014, "the development of super-resolved fluorescence microscopy" also received the Nobel Prize of Chemistry. In the future we will be able to understand the complicated running mechanism of the cells and maybe solve the puzzle of life.<br> All thanks to the progress of Photonics!</p> <p> </p>
Photonics4All Bookmark Blu-Ray (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).</p> <p>How many Blu-Ray movies can you download through one fibre optic cable?</p> <p>300 movies per second! Submarine communications cables which are laid on the sea bed between land-based stations carry telecommunication signals across the globe underwater. These cables can have total lengths of over 21,000 km and have a capacity of 10 Terabits per second (Tb/s). The information is carried by flashing laser light using a Morse-code like signal through the optical fibre. Nowadays the fibre optic comes straight into our homes to deliver on-line video and TV programmes with fantastic (4K) resolution.</p> <p>In the future, new types of optical switches (rather than electronic switches) made with a recently discovered material graphene will enable 1000 times faster connections.</p> <p>All thanks to progress with Photonics!</p>
Photonics4All Bookmark LED (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> How can Light Emitting Diodes (LEDs) transform local food production?<br> <br> Because LEDs emit pure and specific colours they can be used to make plants grow faster and larger. LEDs can replace sunlight or costly greenhouse lamps to grow crops in cold climates or during off-season periods. Growing food locally reduces the need for long-distance transport and lessens the environmental impact used to produce the food. All thanks to Photonics!</p> <p> </p>
Photonics4All Bookmark Crime (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> How can light help solve crimes?<br> <br> Light sources used to illuminate crime scenes help investigators solve crimes. Light is used by forensic detectives to help locate evidence such as latent fingerprints, bodily fluids, hair and fibres, bruises, wound patterns, shoe and foot imprints, gunshot residues or drug traces. All of these clues fluoresce - or glow brightly - under selectively coloured light. Photography is also vital to help collect and store this evidence. </p> <p>All thanks to Photonics! </p>
Photonics4All Bookmark Car (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> Do you know why the rear brake lights of cars are red?<br> <br> Red light can be seen better than other colours when it's raining or foggy because red light is made of longer wavelengths than other colours and scatters less. Shorter wavelengths - such as blue light - scatter more - which is why the sky appears blue. The light from red light appears brighter from further away than other colours would. Our eyes are also more sensitive in the dark to the colour red than any other colour - which is why brake lights are coloured red.<br> Nowadays, LEDs are replacing old light bulbs, bringing better lighting, better energy efficiency and more design freedom to our cars.<br> All thanks to progress with Photonics.</p>
Photonics4All Bookmark Laser Welding (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> Do you know how the metal pieces of your car have been welded?<br> <br> Nails and rivets are long gone! Today we use lasers to join multiple pieces of metal with different types of surfaces - curved or straight. Using lasers to cut and weld is cheaper, safer and faster than older techniques and lasers can be easily controlled by robots for high accuracy and high throughput.<br> New powerful lasers can also be used to cut different materials such as plastics, ceramics and metals. The emergence of new types of lasers made it possible.<br> All thanks to the progress in Photonics!</p>
Photonics4All Bookmark Chip (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> How light makes computers and phones smaller and faster?</p> <p>Did you know that we use light to fabricate the electronic chips in computers and mobile phones? Recent developments in photolithography where light is used to control where conductive metal is placed on the chips - have enabled us to put more transistors than there are people on earth! Transistors are responsible for controlling the path of electricity/information through a chip. These technological developments have led to improving the speed, size and energy consumption of our chips, making them smaller and more efficient.</p> <p> </p>
Photonics4All Bookmark UV Light (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> How UV light can fight Ebola?</p> <p>UV light has been used for decades to disinfect air and water. Some parts of UV light are dangerous for our skin, but if well-managed UV is safe to use.<br> Recently, new types of light sources are producing UV light powers 25,000 times more intense than produced by the sun. These new light sources make it faster to kill a wider range of germs, and light is currently being used to eradicate the Ebola virus on both medical instruments and furniture in some hospitals.<br> All thanks to the progress in Photonics.</p>
Photonics4All Bookmark Needle (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> How can light replace a needle?</p> <p>We no longer need to use a needle to monitor the level of oxygen in your blood! We can use light emitting diodes (LEDs) attached to the top of your finger - and a light detector underneath to measure the amount of light passing through your finger. As Hemoglobin - the proteins in red blood cells which carry oxygen - absorbs light we can determine whether you have enough oxygen in your blood. More advanced devices can also monitor your heart-rate and blood pressure. We'll even be using light to measure your blood-sugar level in the future. All thanks to Photonics!</p> <p> </p>
Photonics4All Bookmark 3D Printing (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> How is Light revolutionizing manufacturing?<br> <br> During the last 5 years, a huge improvement has been made in laser sources, which has enabled the growth of 3D printing.<br> 3D Printing is such a new type of process, offering so many applications that this technology opens new doors to manufacturing industries. The Aerospace and Automotive industries are already making parts for the International Space station in space, aeroplanes and cars. And in medicine, implants and prosthetics are being made, and smart objects and new optical components are emerging. Home 3D printers are also just starting to hit the market. Who knows what will be made next!<br> All thanks to the progress in Photonics!</p> <p> </p>
Impact of vaccinations, boosters and lockdowns on COVID-19 waves in French Polynesia
<p>COVID-19 case, hospitalisation, death, seroprevalence, vaccination and population data, and age-dependent contact rate, severe burden risk and vaccine effectiveness parameter estimates, required to fit model and run simulations in article "Impact of vaccinations, boosters and lockdowns on COVID-19 waves in French Polynesia"</p>
FOPPA: A database of French Open Public Procurement Award notices
<p>The FOPPA database (French Open Public Procurement Award notices) is a database constituted in the framework of the ANR DeCoMaP project (ANR-19-CE38-0004). It contains public procurement notices published in France from 2010 to 2020. It relies on a subset of the TED database. These data have a number of issues, the most serious being that the unique ID of most involved agents are missing. We performed a number of operations to solve these issues and obtain a usable database. These operations and their outcomes are described in detail in the following technical report:</p> <p>L. Potin, V. Labatut, R. Figueiredo, C. Largeron & P. H. Morand. <em>FOPPA: A database of French Open Public Procurement Award notices</em>, Technical Report, Avignon Université, 2022. ⟨<a href="https://hal.archives-ouvertes.fr/hal-03796734">hal-03796734</a>⟩</p> <p>The report also describes the database itself. </p> <p> </p> <p><strong>Source code: </strong>The source code implementing these operations is publicly available as a GitHub repository:</p> <p><a href="https://github.com/CompNet/FoppaInit/releases/tag/v1.0.3">https://github.com/CompNet/FoppaInit/releases/tag/v1.0.3</a></p> <p> </p> <p><strong>Cite as: </strong>If you use these data or the associated source code, please cite the following article :</p> <p>Potin, L.; Labatut, V.; Morand, P.-H. & Largeron, C. <em>FOPPA: an Open Database of French Public Procurement Award Notices From 2010-2020</em>. Scientific Data 10:303<em>, </em>2023<em>. </em>DOI: <a href="http://doi.org/10.1038/s41597-023-02213-z">10.1038/s41597-023-02213-z</a> <em> </em>⟨<a href="https://hal.archives-ouvertes.fr/hal-04101350">hal-04101350</a>⟩</p> <p><br><code>@Article{Potin2023,</code><br><code> author = {Potin, Lucas and Labatut, Vincent and Morand, Pierre-Henri and Largeron, Christine},</code><br><code> title = {{FOPPA}: an Open Database of French Public Procurement Award Notices From 2010-2020},</code><br><code> journal = {Scientific Data},</code><br><code> year = {2023},</code><br><code> volume = {10},</code><br><code> pages = {303},</code><br><code> doi = {10.1038/s41597-023-02213-z},</code><br><code>}</code></p>
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.