Prepare to be amazed by Webb's stunning new image of Arp 107—a cosmic collision between two galaxies happening 465 million light-years away! 🌌 This jaw-dropping snapshot reveals swirling gases, star formation, and a supermassive black hole in the heart of the spiral galaxy. 😱
Witness how these galaxies are literally colliding and evolving in front of our eyes! 💫🔭
📸 Check out the full story behind this galactic dance: [Link to full article]
#JamesWebb #GalacticCollision #NASA #Astronomy #SpaceExploration #Arp107 #Space
AT2021lwx has captivated the astrophysics community as the largest cosmic explosion ever observed. Its immense brightness and longevity have set it apart from other known supernovas, offering intriguing insights into the mysteries of the universe. In this article, we delve into the factors that make AT2021lwx unique and explore how its brightness compares to other celestial explosions.
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Check out this mind-blowing diagram that breaks down the anatomy of a black hole, one of the most enigmatic phenomena in the cosmos. From the event horizon to the singularity, black holes challenge everything we know about physics and space-time.
Swipe left to dive deep into the science behind these cosmic wonders! 🕳️Learn more --> https://www.jameswebbdiscovery.com/universe/100-fascinating-facts-about-black-holes
#BlackHole #SpaceExploration #CosmicMystery #NASA #Astrophysics #ScienceFacts #Universe
The James Webb Space Telescope captured a view between the Pisces and Andromeda constellations, revealing over 20,000 galaxies. Researchers focused their observations on a luminous quasar, J0100+2802, and analyzed 117 galaxies that existed about 900 million years after the big bang. Read full article here
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This image showcases the galaxy JADES-GS-z6, a research target in the deep galaxy field of GOODS-South, observed as part of the JWST Advanced Deep Extragalactic Survey (JADES). The galaxy's hazy appearance in blue, red, and green indicates the data captured by Webb's NIRCam at various near-infrared wavelengths. This finding by an international team of astronomers reveals the chemical signature of carbon-rich dust grains at redshift ~7, approximately one billion years after the Universe's birth, offering exciting insights into the early Universe's cosmic dust production and earliest stellar populations. Credits: ESA/Webb, NASA, ESA, CSA, B. Robertson (UC Santa Cruz), B. Johnson (Center for Astrophysics, Harvard & Smithsonian), S. Tacchella (University of Cambridge, M. Rieke (Univ. of Arizona), D. Eisenstein (Center for Astrophysics, Harvard & Smithsonian), A. Pagan (STScI). Read full article here
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The James Webb Space Telescope (JWST), poised to revolutionize our understanding of the universe, is eagerly awaited by scientists and astronomy enthusiasts alike to unravel the universe. Among the numerous celestial wonders it is set to explore, one captivating destination is the Mystic Mountain within the Carina Nebula. As the successor to the Hubble Space Telescope, the JWST is equipped with advanced instruments that promise to unlock the secrets hidden within this cosmic masterpiece. In this article, we delve into the mystical allure of the Carina Nebula's Mystic Mountain and speculate on the potential discoveries the JWST may make.
Unveiling the Mystic Mountain
The Mystic Mountain, an awe-inspiring formation within the Carina Nebula, has captured the imaginations of astronomers and stargazers alike. Composed of dense interstellar gas and dust, it is a breathtaking pillar that spans three light-years and houses a bustling stellar nursery. With the JWST's extraordinary capabilities, scientists anticipate observing the intricate details and unveiling the mysteries concealed within this celestial marvel.
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Relative sizes of the planets in the Solar System and several stars, including UY Scuti: 1. Mercury < Mars < Venus < Earth 2. Earth < Neptune < Uranus < Saturn < Jupiter 3. Jupiter < Proxima Centauri < Sun < Sirius 4. Sirius < Pollux < Arcturus < Aldebaran 5. Aldebaran < Rigel < Antares < Betelgeuse 6. Betelgeuse < NML Cygni < VV Cephei A < VY Canis Majoris (Wittkowski et al. 2012 estimate) < UY Scuti. Credit: Wikipedia
UY Scuti is a supergiant star located in the constellation Scutum, approximately 9,500 light-years away from Earth. It holds the title of being one of the largest known stars, with a size estimated to be around 1,700 times the diameter of our Sun. Despite its immense size, UY Scuti's nature and characteristics remain largely enigmatic. The JWST's high-resolution imaging and spectroscopic capabilities offer a unique opportunity to study this stellar behemoth in unprecedented detail. Read full article here
Neptune with its distinct rings seen through James Webb Telescope #JamesWebb #Neptune Inspired to explore the universe? Get your personalized telescope recommendations from TelescopeAdvisor using Telescope Finder Tool 👉 https://www.telescopeadvisor.com/telescope-finder-tool.php
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