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Astronomers Discover Youngest Transiting Exoplanet | Sci.News

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<div class="info"> <span class="date"> Nov 20, 2024 by </span> <a href="https://www.sci.news/author/scinews">News Staff</a> </div> </div> <div class="single-pagi"> <div class="prev-nav"> <a href="https://www.sci.news/astronomy/desi-theory-general-relativity-13442.html">&laquo; Previous </a></div> | <div class="next-nav"> <a href="https://www.sci.news/astronomy/vlti-image-red-supergiant-large-magellanic-cloud-13446.html">Next &raquo;</a></div> <div class="cb"></div> </div> <div class="cb"></div> </div> </header><!-- .entry-header --> <section> <div id="single-heading-content"> <!-- MetaData --> <div class="single-right"> <article id="post-101863" class="post-101863 post type-post status-publish format-standard has-post-thumbnail hentry category-astronomy tag-binary-star tag-exoplanet tag-gas-giant tag-iras-041252902 tag-iras-041252902b tag-nasa tag-orbit tag-protoplanet tag-protoplanetary-disk tag-protostar tag-star tag-taurus-molecular-cloud tag-tess tag-tidye-1 tag-tidye-1b tag-transit"> <div class="entry-content"> <p><strong>Astronomers have discovered a transiting exoplanet &#8212; named IRAS 04125+2902b &#8212; orbiting a 3-million-year-old, 0.7-solar-mass protostar in the Taurus Molecular Cloud.</strong></p> <div id="attachment_101864" style="width: 590px" class="wp-caption aligncenter"><a href="https://cdn.sci.news/images/enlarge12/image_13444e-TIDYE-1b.jpg"><img aria-describedby="caption-attachment-101864" class="wp-image-101864 size-full" src="https://cdn.sci.news/images/2024/11/image_13444-TIDYE-1b.jpg" alt="An artistic interpretation of the IRAS 04125+2902 system. Image credit: NASA / JPL-Caltech / R. Hurt &amp; K. Miller, Caltech &amp; IPAC." width="580" height="769" srcset="https://cdn.sci.news/images/2024/11/image_13444-TIDYE-1b.jpg 580w, https://cdn.sci.news/images/2024/11/image_13444-TIDYE-1b-226x300.jpg 226w" sizes="(max-width: 580px) 100vw, 580px" /></a><p id="caption-attachment-101864" class="wp-caption-text">An artistic interpretation of the IRAS 04125+2902 system. Image credit: NASA / JPL-Caltech / R. Hurt &amp; K. Miller, Caltech &amp; IPAC.</p></div> <p>IRAS 04125+2902b has a radius of 0.96 Jupiter radii and a mass of &lt;0.3 Jupiter masses.</p> <p>Also known as TIDYE-1b, the giant exoplanet orbits it parent star, <a href="https://simbad.cds.unistra.fr/simbad/sim-id?Ident=IRAS%E2%80%8904125%2B2902&amp;NbIdent=1&amp;Radius=2&amp;Radius.unit=arcmin&amp;submit=submit+id" target="_blank" rel="noopener">IRAS 04125+2902</a>, once every 8.83 days.</p> <p>The system is located approximately 522 light-years away in the constellation of Taurus.</p> <p>It is part of the <a href="https://en.wikipedia.org/wiki/Taurus_molecular_cloud" target="_blank" rel="noopener">Taurus Molecular Cloud</a>, an active stellar nursery with hundreds of newborn stars.</p> <p>“IRAS 04125+2902b challenges previous theories about the speed of planet formation,” said University of North Carolina at Chapel Hill astronomer Madyson Barber and colleagues.</p> <p>“While Earth took 10-20 million years to form, this exoplanet emerged in a mere 3 million years and orbits its star roughly every week.”</p> <p>“Discovering planets like this one allows us to look back in time, catching a glimpse of planetary formation as it happens.”</p> <p>First detected by NASA’s Transiting Exoplanet Survey Satellite (TESS), IRAS 04125+2902b is the youngest known transiting planet.</p> <p>The discovery sheds light on potential differences between our Solar System and planetary systems hosting close-in giant planets like IRAS 04125+2902b, providing a greater context for our own cosmic neighborhood.</p> <p>It also opens new research avenues, as this planet, still within its natal disk of material, allows scientists to study the formation process up close.</p> <p>Follow-up studies will analyze how the planet’s atmosphere compares to the surrounding disk material, providing clues about its journey to its compacted orbit.</p> <p>The astronomers will also examine whether IRAS 04125+2902b is still growing by accreting material or possibly losing its upper atmosphere due to the influence of its host star.</p> <p>“Planets typically form from a flat disk of dust and gas, which is why planets in our Solar System are aligned in a ‘pancake-flat’ arrangement,” said Dr. Andrew Mann, principal investigator of the Young Worlds Laboratory and an astronomer at the University of North Carolina at Chapel Hill.</p> <p>“But here, the disk is tilted, misaligned with both the planet and its star &#8212; a surprising twist that challenges our current understanding of how planets form.”</p> <p>The discovery is reported in a <a href="https://www.nature.com/articles/s41586-024-08123-3" target="_blank" rel="noopener">paper</a> published today in the journal <em>Nature</em>.</p> <p><span style="color: #808080;">_____</span></p> <p><span style="color: #808080;">M.G. Barber <em>et al</em>. 2024. A giant planet transiting a 3-Myr protostar with a misaligned disk. <em>Nature</em> 635, 574-577; doi: 10.1038/s41586-024-08123-3</span></p> </div><!-- .entry-content --> </article><!-- #post-101863 --> </div><!-- .single-right --> <div class="single-left"> <div class="postedby"> Published in </div> <div class="single-category"><ul class="post-categories"> <li><a href="https://www.sci.news/news/astronomy" >Astronomy</a></li></ul></div> <div class="postedby2"> <div class="postedby"> Tagged as </div></div> <div class="single-tags"> <a href="https://www.sci.news/tag/binary-star" rel="tag">Binary star</a><a href="https://www.sci.news/tag/exoplanet" rel="tag">Exoplanet</a><a href="https://www.sci.news/tag/gas-giant" rel="tag">Gas giant</a><a href="https://www.sci.news/tag/iras-041252902" rel="tag">IRAS 04125+2902</a><a href="https://www.sci.news/tag/iras-041252902b" rel="tag">IRAS 04125+2902b</a><a href="https://www.sci.news/tag/nasa" rel="tag">NASA</a><a href="https://www.sci.news/tag/orbit" rel="tag">Orbit</a><a href="https://www.sci.news/tag/protoplanet" rel="tag">Protoplanet</a><a href="https://www.sci.news/tag/protoplanetary-disk" rel="tag">Protoplanetary disk</a><a href="https://www.sci.news/tag/protostar" rel="tag">Protostar</a><a href="https://www.sci.news/tag/star" rel="tag">Star</a><a href="https://www.sci.news/tag/taurus-molecular-cloud" rel="tag">Taurus Molecular Cloud</a><a href="https://www.sci.news/tag/tess" rel="tag">TESS</a><a href="https://www.sci.news/tag/tidye-1" rel="tag">TIDYE-1</a><a href="https://www.sci.news/tag/tidye-1b" rel="tag">TIDYE-1b</a><a href="https://www.sci.news/tag/transit" rel="tag">Transit</a></div> <div class="postedby3"></div> <div class="postedby3"></div> <div class="single-related"> <div class="postedby">You Might Like </div> <div class="related"> <div class="relatedpost"> <a href="https://www.sci.news/astronomy/ultrahot-neptune-toi-3261b-13466.html"><img width="104" height="75" src="https://cdn.sci.news/images/2024/11/image_13466-TOI-3261b-104x75.jpg" class="attachment-secondpostimg size-secondpostimg wp-post-image" alt="An artist’s concept of the ultrahot-Neptune exoplanet TOI-3261b. 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Study Demonstrates Existence of Nociceptive Responses in Shore Crabs"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13457f-Carcinus-maenas-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="Carcinus maenas. Image credit: Luis Miguel Bugallo Sánchez / CC BY-SA 3.0." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13457f-Carcinus-maenas-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13457f-Carcinus-maenas-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/biology/crustacean-nociceptors-13457.html' title='Do Crustaceans Feel Pain? Study Demonstrates Existence of Nociceptive Responses in Shore Crabs'>Do Crustaceans Feel Pain? Study Demonstrates Existence of Nociceptive Responses in Shore Crabs</a></h2><span class="block-meta">Nov 26, 2024 | Biology</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/space/uranian-moons-subsurface-oceans-13456.html" title="NASA to Search for Subsurface Oceans within Uranian Moons"><img width="50" height="50" src="https://cdn.sci.news/images/2023/05/image_11892-Uranian-Oceans-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="Castillo-Rogez et al. show that there likely is an ocean layer in four of Uranus’ major moons: Ariel, Umbriel, Titania, and Oberon; salty -- or briny -- oceans lie under the ice and atop layers of water-rich rock and dry rock; Miranda is too small to retain enough heat for an ocean layer. Image credit: NASA / JPL-Caltech." loading="lazy" srcset="https://cdn.sci.news/images/2023/05/image_11892-Uranian-Oceans-50x50.jpg 50w, https://cdn.sci.news/images/2023/05/image_11892-Uranian-Oceans-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/space/uranian-moons-subsurface-oceans-13456.html' title='NASA to Search for Subsurface Oceans within Uranian Moons'>NASA to Search for Subsurface Oceans within Uranian Moons</a></h2><span class="block-meta">Nov 26, 2024 | Planetary Science</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/paleontology/ninumbeehan-dookoodukah-13455.html" title="Triassic Amphibian Had Unique Adaptations for Seasonal Estivation"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13455-Ninumbeehan-dookoodukah-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="Life reconstruction of Ninumbeehan dookoodukah in a palaeoenvironment reconstruction depicting its life and burrowing across seasons: (left) Ninumbeehan dookoodukah is resting on the edge of a river with a low water table as the wet season ends; (center) a small community of Ninumbeehan dookoodukah are in their estivation burrows at the apex of the arid season; (right) the onset of the humid season brings rain, triggering a mass emergence of Ninumbeehan dookoodukah from their estivation burrows. Some individuals expire before the incoming rains, leaving them to be preserved as fossils. Image credit: Gabriel N. Ugueto." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13455-Ninumbeehan-dookoodukah-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13455-Ninumbeehan-dookoodukah-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/paleontology/ninumbeehan-dookoodukah-13455.html' title='Triassic Amphibian Had Unique Adaptations for Seasonal Estivation'>Triassic Amphibian Had Unique Adaptations for Seasonal Estivation</a></h2><span class="block-meta">Nov 26, 2024 | Paleontology</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/astronomy/456p-panstarrs-main-belt-comet-13454.html" title="Recently-Discovered Active Asteroid is in Fact Main-Belt Comet, Astronomers Say"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13454-456P-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="Images of 456P/PANSTARRS taken with the Magellan-Baade telescope in Chile on October 3, 2024, and the Lowell Discovery Telescope in Arizona on October 26, 2024, where the head, or nucleus, of the comet is at the center of each image, and the tail extends to the right. Image credit: Scott S. Sheppard / Carnegie Institution for Science / Audrey Thirouin, Lowell Observatory / Henry H. Hsieh, Planetary Science Institute." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13454-456P-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13454-456P-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/astronomy/456p-panstarrs-main-belt-comet-13454.html' title='Recently-Discovered Active Asteroid is in Fact Main-Belt Comet, Astronomers Say'>Recently-Discovered Active Asteroid is in Fact Main-Belt Comet, Astronomers Say</a></h2><span class="block-meta">Nov 26, 2024 | Astronomy</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/paleontology/nipponopterus-mifunensis-13453.html" title="New Pterosaur Species Discovered in Japan"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13453f-Nipponopterus-mifunensis-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="Life restoration of a group of giant azhdarchids, Quetzalcoatlus northropi, foraging on a Cretaceous fern prairie. Image credit: Mark Witton / Darren Naish." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13453f-Nipponopterus-mifunensis-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13453f-Nipponopterus-mifunensis-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/paleontology/nipponopterus-mifunensis-13453.html' title='New Pterosaur Species Discovered in Japan'>New Pterosaur Species Discovered in Japan</a></h2><span class="block-meta">Nov 25, 2024 | Paleontology</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/astronomy/webb-image-sombrero-galaxy-13452.html" title="Webb Captures New Image of Sombrero Galaxy"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13452f-Messier-104-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="This Webb image shows the Sombrero galaxy. Image credit: NASA / ESA / CSA / STScI." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13452f-Messier-104-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13452f-Messier-104-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/astronomy/webb-image-sombrero-galaxy-13452.html' title='Webb Captures New Image of Sombrero Galaxy'>Webb Captures New Image of Sombrero Galaxy</a></h2><span class="block-meta">Nov 25, 2024 | Astronomy</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/genetics/faroe-islands-colonization-13451.html" title="Viking Expansion into North Atlantic Was More Complex than Previously Thought"><img width="50" height="50" src="https://cdn.sci.news/images/2021/10/image_10195f-Vikings-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="Kuitems et al. provide evidence that the Norse were active on the North American continent in the year 1021 CE. Image credit: Oscar C.R." loading="lazy" srcset="https://cdn.sci.news/images/2021/10/image_10195f-Vikings-50x50.jpg 50w, https://cdn.sci.news/images/2021/10/image_10195f-Vikings-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/genetics/faroe-islands-colonization-13451.html' title='Viking Expansion into North Atlantic Was More Complex than Previously Thought'>Viking Expansion into North Atlantic Was More Complex than Previously Thought</a></h2><span class="block-meta">Nov 25, 2024 | Archaeology</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/othersciences/nanotechnologies/nanopasta-13450.html" title="World’s Thinnest Spaghetti Created: Nanopasta"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13450-Nanopasta-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="Britton et al. used a scanning electron microscope, scanning the mat with a focused beam of electrons and creating an image based on the pattern of electrons that are deflected or knocked-off; each individual strand is too narrow to be clearly captured by any form of visible light camera or microscope. Image credit: Beatrice Britton / Adam Clancy." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13450-Nanopasta-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13450-Nanopasta-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/othersciences/nanotechnologies/nanopasta-13450.html' title='World’s Thinnest Spaghetti Created: Nanopasta'>World’s Thinnest Spaghetti Created: Nanopasta</a></h2><span class="block-meta">Nov 25, 2024 | Materials Science</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/astronomy/hubble-flocculent-spiral-ngc-2090-13449.html" title="Hubble Space Telescope Looks at Flocculent Spiral: NGC 2090"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13449-NGC-2090-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="This Hubble image shows NGC 2090, a spiral galaxy some 40 million light-years away in the southern constellation of Columba. The color image was made from separate exposures taken in the ultraviolet, visible and near-infrared regions of the spectrum with Hubble’s Wide Field Camera 3 (WFC3). It is based on data obtained through six filters. The color results from assigning different hues to each monochromatic image associated with an individual filter. Image credit: NASA / ESA / Hubble / D. Thilker." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13449-NGC-2090-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13449-NGC-2090-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/astronomy/hubble-flocculent-spiral-ngc-2090-13449.html' title='Hubble Space Telescope Looks at Flocculent Spiral: NGC 2090'>Hubble Space Telescope Looks at Flocculent Spiral: NGC 2090</a></h2><span class="block-meta">Nov 25, 2024 | Astronomy</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/paleontology/terastiodontosaurus-marcelosanchezi-13448.html" title="World’s Largest Worm Lizard Lived 47 Million Years Ago"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13448f-Terastiodontosaurus-marcelosanchezi-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="Life reconstruction of Terastiodontosaurus marcelosanchezi ready to prey on a large snail of the family Bulimulidae. Image credit: Jaime Chirinos." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13448f-Terastiodontosaurus-marcelosanchezi-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13448f-Terastiodontosaurus-marcelosanchezi-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/paleontology/terastiodontosaurus-marcelosanchezi-13448.html' title='World’s Largest Worm Lizard Lived 47 Million Years Ago'>World’s Largest Worm Lizard Lived 47 Million Years Ago</a></h2><span class="block-meta">Nov 22, 2024 | Paleontology</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/othersciences/chemistry/carbon-dioxide-methane-conversion-13447.html" title="Researchers Find New Way to Convert Carbon Dioxide into Methane"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13447-Carbon-Dioxide-Methane-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="Direct electrochemical reduction of carbon dioxide capture species, i.e., carbamate and (bi)carbonate, can be promising for carbon dioxide capture and conversion from point-source. Image credit: Neves-Garcia et al., doi: 10.1021/jacs.4c09744." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13447-Carbon-Dioxide-Methane-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13447-Carbon-Dioxide-Methane-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/othersciences/chemistry/carbon-dioxide-methane-conversion-13447.html' title='Researchers Find New Way to Convert Carbon Dioxide into Methane'>Researchers Find New Way to Convert Carbon Dioxide into Methane</a></h2><span class="block-meta">Nov 22, 2024 | Chemistry</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/astronomy/vlti-image-red-supergiant-large-magellanic-cloud-13446.html" title="VLTI Captures Detailed Image of Red Supergiant in Large Magellanic Cloud"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13446f-WOH-G64-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="This image, taken by the GRAVITY instrument on ESO’s Very Large Telescope Interferometer, shows the red supergiant WOH G64. Image credit: ESO / Ohnaka et al., doi: 10.1051/0004-6361/202451820." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13446f-WOH-G64-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13446f-WOH-G64-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/astronomy/vlti-image-red-supergiant-large-magellanic-cloud-13446.html' title='VLTI Captures Detailed Image of Red Supergiant in Large Magellanic Cloud'>VLTI Captures Detailed Image of Red Supergiant in Large Magellanic Cloud</a></h2><span class="block-meta">Nov 21, 2024 | Astronomy</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/archaeology/earliest-known-alphabetic-writing-13445.html" title="Archaeologists Discover Earliest-Known Alphabetic Writing"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13445_1-Umm-el-Marra-Alphabet-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="The 4,400-year-old clay object discovered at the ancient city of Umm el-Marra, Syria; the engraved symbols may be part of the earliest known alphabet. Image credit: Glenn Schwartz, Johns Hopkins University." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13445_1-Umm-el-Marra-Alphabet-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13445_1-Umm-el-Marra-Alphabet-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/archaeology/earliest-known-alphabetic-writing-13445.html' title='Archaeologists Discover Earliest-Known Alphabetic Writing'>Archaeologists Discover Earliest-Known Alphabetic Writing</a></h2><span class="block-meta">Nov 21, 2024 | Archaeology</span> </div> </div> <div class="block-item-small"> <div class="block-image"><a href="https://www.sci.news/astronomy/youngest-transiting-exoplanet-13444.html" title="Astronomers Discover Youngest Transiting Exoplanet"><img width="50" height="50" src="https://cdn.sci.news/images/2024/11/image_13444-TIDYE-1b-50x50.jpg" class="attachment-sidebar-thumb size-sidebar-thumb wp-post-image" alt="An artistic interpretation of the IRAS 04125+2902 system. Image credit: NASA / JPL-Caltech / R. Hurt &amp; K. Miller, Caltech &amp; IPAC." loading="lazy" srcset="https://cdn.sci.news/images/2024/11/image_13444-TIDYE-1b-50x50.jpg 50w, https://cdn.sci.news/images/2024/11/image_13444-TIDYE-1b-150x150.jpg 150w" sizes="(max-width: 50px) 100vw, 50px" /></a></div> <div class="block-image-r"> <h2><a href='https://www.sci.news/astronomy/youngest-transiting-exoplanet-13444.html' title='Astronomers Discover Youngest Transiting Exoplanet'>Astronomers Discover Youngest Transiting Exoplanet</a></h2><span class="block-meta">Nov 20, 2024 | Astronomy</span> </div> </div> </div> <!-- END WIDGET --> </div></aside><div class="adspace-widget widget"> <div class="postedby"></div> <br/></div> </div> </div> </div> </div> <div class="cb"></div> </div></div></div> </section> <footer class="footer"> <div class="footer-holder"> <div class="container"> <div class="topsearch-wrapper2"> <form method="get" id="footersearch1" action="https://www.sci.news/"> <input type="text" name="s" value=" " onblur="if(this.value=='') this.value=' ';" onfocus="if(this.value==' ') this.value='';" id="s2" /> <input type="submit" value=" " id="searchsubmit" /> </form> </div> <nav class="nav"> <div id="fotnav" class="ddsmoothmenu1"><ul id="menu-menu-4" class="menu"><li id="menu-item-9173" class="menu-item menu-item-type-custom menu-item-object-custom menu-item-home menu-item-9173"><a href="https://www.sci.news">Home</a></li> <li id="menu-item-9174" class="menu-item menu-item-type-post_type menu-item-object-page menu-item-9174"><a href="https://www.sci.news/about-us">About Us</a></li> <li id="menu-item-9175" class="menu-item menu-item-type-post_type menu-item-object-page menu-item-9175"><a href="https://www.sci.news/archive">News Archive</a></li> <li id="menu-item-9176" class="menu-item menu-item-type-post_type menu-item-object-page menu-item-9176"><a href="https://www.sci.news/copyright">Copyright</a></li> <li id="menu-item-9177" class="menu-item menu-item-type-post_type menu-item-object-page menu-item-9177"><a href="https://www.sci.news/privacy-policy">Privacy Policy</a></li> <li id="menu-item-9179" class="menu-item menu-item-type-custom menu-item-object-custom menu-item-9179"><a href="https://www.sci.news/feed">RSS</a></li> <li id="menu-item-9180" class="menu-item menu-item-type-post_type menu-item-object-page menu-item-9180"><a href="https://www.sci.news/contact">Contact Us</a></li> </ul></div> </nav> <div class="cb"></div> </div> </div> </footer> <div class="footer"> <div class="footer2-wrapper"> <div class="footer2-area"> <div id="footerwrapper1"> <div class="box-hold footerwrapper"> <div class="box footer1"> <div class="cb"></div> </div> <div class="box footer2"> <div class="cb"></div> </div> <div class="box footer3"> <div class="cb"></div> </div> <div class="box footer4"> <div class="cb"></div> </div> </div> </div> </div> </div><!-- footer2-wrapper --> </div><!-- #footer --> <div class="footer"> <div class="copy"> <div id="bottomfooter"> <div class="site-footer"> © 2011-2024. 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