• Ah, la saison 4 du chapitre 6 de Fortnite, l’événement incontournable où l’on découvre que sa manette a plus de virages qu’une route de montagne. Si vous avez eu la chance de vivre dans une grotte ces derniers mois, préparez-vous à une mise à jour qui a plus d’explosions qu’un film d’action des années 90. Les nouveaux ajouts ? Des skins plus brillants que votre avenir, des danses qui feraient rougir un flamant rose, et bien sûr, le retour triomphant des joueurs qui pensent toujours que “construire” est un mot de passe secret.

    Allez, n’hésitez pas à plonger à nouveau dans l’arène, où
    Ah, la saison 4 du chapitre 6 de Fortnite, l’événement incontournable où l’on découvre que sa manette a plus de virages qu’une route de montagne. Si vous avez eu la chance de vivre dans une grotte ces derniers mois, préparez-vous à une mise à jour qui a plus d’explosions qu’un film d’action des années 90. Les nouveaux ajouts ? Des skins plus brillants que votre avenir, des danses qui feraient rougir un flamant rose, et bien sûr, le retour triomphant des joueurs qui pensent toujours que “construire” est un mot de passe secret. Allez, n’hésitez pas à plonger à nouveau dans l’arène, où
    Everything You Need Know About Jumping Back Into Fortnite For Chapter 6, Season 4
    kotaku.com
    Been out of the loop for a bit? Let’s fill you in on what’s been happening in one of the most popular battle royales out there The post Everything You Need Know About Jumping Back Into <i>Fortnite</i> For Chapter 6, Season 4 appeared fir
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  • Le trailer de la cinquième saison de Stranger Things nous promet un final bourré d'action et complètement délirant, mais qui peut encore y croire ? Après tant d'attente, on ne s'attendait pas à un tel gâchis ! Tout ce battage autour d'une série qui a perdu son essence, c'est vraiment frustrant. Cette saison s'annonce comme la plus spectaculaire, mais à quel prix ? On dirait que Netflix privilégie le fric au détriment d'une histoire cohérente et réfléchie. Les fans méritent mieux que des explosions et des effets spéciaux pour masquer un scénario vide ! J'en ai assez de ces promesses non tenues et de cette tendance à tout vouloir transformer en spectacle.
    Le trailer de la cinquième saison de Stranger Things nous promet un final bourré d'action et complètement délirant, mais qui peut encore y croire ? Après tant d'attente, on ne s'attendait pas à un tel gâchis ! Tout ce battage autour d'une série qui a perdu son essence, c'est vraiment frustrant. Cette saison s'annonce comme la plus spectaculaire, mais à quel prix ? On dirait que Netflix privilégie le fric au détriment d'une histoire cohérente et réfléchie. Les fans méritent mieux que des explosions et des effets spéciaux pour masquer un scénario vide ! J'en ai assez de ces promesses non tenues et de cette tendance à tout vouloir transformer en spectacle.
    Stranger Things Season 5 Looks Like An Action-Packed And Bonkers Finale
    kotaku.com
    After a very long wait, we finally have the first real trailer for the fifth and final season of Netflix’s Stranger Things. And folks, this might be the biggest and most bonkers season of the show yet. Read more...
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  • Oh, IMAX, the grand illusion of reality turned up to eleven! Who knew that watching a two-hour movie could feel like a NASA launch, complete with a symphony of surround sound that could wake the dead? For those who haven't had the pleasure, IMAX is not just a cinema; it’s an experience that makes you feel like you’re inside the movie—right before you realize you’re just trapped in a ridiculously oversized chair, too small for your popcorn bucket.

    Let’s talk about those gigantic screens. You know, the ones that make your living room TV look like a postage stamp? Apparently, the idea is to engulf you in the film so much that you forget about the existential dread of your daily life. Because honestly, who needs a therapist when you can sit in a dark room, surrounded by strangers, with a screen larger than your future looming in front of you?

    And don’t get me started on the “revolutionary technology.” IMAX is synonymous with larger-than-life images, but let's face it—it's just fancy pixels. I mean, how many different ways can you capture a superhero saving the world at this point? Yet, somehow, they manage to convince us that we need to watch it all in the world’s biggest format, because watching it on a normal screen would be akin to watching it through a keyhole, right?

    Then there’s the sound. IMAX promises "the most immersive audio experience." Yes, because nothing says relaxation like feeling like you’re in the middle of a battle scene with explosions that could shake the very foundations of your soul. You know, I used to think my neighbors were loud, but now I realize they could never compete with the sound of a spaceship crashing at full volume. Thanks, IMAX, for redefining the meaning of “loud neighbors.”

    And let’s not forget the tickets. A small mortgage payment for an evening of cinematic bliss! Who needs to save for retirement when you can experience the thrill of a blockbuster in a seat that costs more than your last three grocery bills combined? It’s a small price to pay for the opportunity to see your favorite actors’ pores in glorious detail.

    In conclusion, if you haven’t yet experienced the wonder that is IMAX, prepare yourself for a rollercoaster of emotions and a potential existential crisis. Because nothing says “reality” quite like watching a fictional world unfold on a screen so big it makes your own life choices seem trivial. So, grab your credit card, put on your 3D glasses, and let’s dive into the cinematic abyss of IMAX—where reality takes a backseat, and your wallet weeps in despair.

    #IMAX #CinematicExperience #RealityCheck #MovieMagic #TooBigToFail
    Oh, IMAX, the grand illusion of reality turned up to eleven! Who knew that watching a two-hour movie could feel like a NASA launch, complete with a symphony of surround sound that could wake the dead? For those who haven't had the pleasure, IMAX is not just a cinema; it’s an experience that makes you feel like you’re inside the movie—right before you realize you’re just trapped in a ridiculously oversized chair, too small for your popcorn bucket. Let’s talk about those gigantic screens. You know, the ones that make your living room TV look like a postage stamp? Apparently, the idea is to engulf you in the film so much that you forget about the existential dread of your daily life. Because honestly, who needs a therapist when you can sit in a dark room, surrounded by strangers, with a screen larger than your future looming in front of you? And don’t get me started on the “revolutionary technology.” IMAX is synonymous with larger-than-life images, but let's face it—it's just fancy pixels. I mean, how many different ways can you capture a superhero saving the world at this point? Yet, somehow, they manage to convince us that we need to watch it all in the world’s biggest format, because watching it on a normal screen would be akin to watching it through a keyhole, right? Then there’s the sound. IMAX promises "the most immersive audio experience." Yes, because nothing says relaxation like feeling like you’re in the middle of a battle scene with explosions that could shake the very foundations of your soul. You know, I used to think my neighbors were loud, but now I realize they could never compete with the sound of a spaceship crashing at full volume. Thanks, IMAX, for redefining the meaning of “loud neighbors.” And let’s not forget the tickets. A small mortgage payment for an evening of cinematic bliss! Who needs to save for retirement when you can experience the thrill of a blockbuster in a seat that costs more than your last three grocery bills combined? It’s a small price to pay for the opportunity to see your favorite actors’ pores in glorious detail. In conclusion, if you haven’t yet experienced the wonder that is IMAX, prepare yourself for a rollercoaster of emotions and a potential existential crisis. Because nothing says “reality” quite like watching a fictional world unfold on a screen so big it makes your own life choices seem trivial. So, grab your credit card, put on your 3D glasses, and let’s dive into the cinematic abyss of IMAX—where reality takes a backseat, and your wallet weeps in despair. #IMAX #CinematicExperience #RealityCheck #MovieMagic #TooBigToFail
    www.realite-virtuelle.com
    IMAX est mondialement reconnu pour ses écrans gigantesques, mais cette technologie révolutionnaire ne se limite […] Cet article IMAX : tout ce que vous devez savoir a été publié sur REALITE-VIRTUELLE.COM.
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  • Ah, California! The land of sunshine, dreams, and the ever-elusive promise of tax credits that could rival a Hollywood blockbuster in terms of drama. Rumor has it that the state is considering a whopping 35% increase in tax credits to boost audiovisual production. Because, you know, who wouldn’t want to encourage more animated characters to come to life in a state where the cost of living is practically animated itself?

    Let’s talk about these legislative gems—Assembly Bill 1138 and Senate Bill 630. Apparently, they’re here to save the day, expanding the scope of existing tax aids like some overzealous superhero. I mean, why stop at simply attracting filmmakers when you can also throw in visual effects and animation? It’s like giving a kid a whole candy store instead of a single lollipop. Who can say no to that?

    But let’s pause for a moment and ponder the implications of this grand gesture. More tax credits mean more projects, which means more animated explosions, talking squirrels, and heartfelt stories about the struggles of a sentient avocado trying to find love in a world that just doesn’t understand it. Because, let’s face it, nothing says “artistic integrity” quite like a financial incentive large enough to fund a small country.

    And what do we have to thank for this potential windfall? Well, it seems that politicians have finally realized that making movies is a lot more profitable than, say, fixing potholes or addressing climate change. Who knew? Instead of investing in infrastructure that might actually benefit the people living there, they decided to invest in the fantasy world of visual effects. Because really, what’s more important—smooth roads or a high-speed chase featuring a CGI dinosaur?

    As we delve deeper into this world of tax credit excitement, let’s not forget the underlying truth: these credits are essentially a “please stay here” plea to filmmakers who might otherwise take their talents to greener pastures (or Texas, where they also have sweet deals going on). So, here’s to hoping that the next big animated feature isn’t just a celebration of creativity but also a financial statement that makes accountants drool.

    So get ready, folks! The next wave of animated masterpieces is coming, fueled by tax incentives and the relentless pursuit of cinematic glory. Who doesn’t want to see more characters with existential crises brought to life on screen, courtesy of our taxpayer dollars? Bravo, California! You’ve truly outdone yourself. Now let’s just hope these tax credits don’t end up being as ephemeral as a poorly rendered CGI character.

    #CaliforniaTaxCredits #Animation #VFX #Hollywood #TaxIncentives
    Ah, California! The land of sunshine, dreams, and the ever-elusive promise of tax credits that could rival a Hollywood blockbuster in terms of drama. Rumor has it that the state is considering a whopping 35% increase in tax credits to boost audiovisual production. Because, you know, who wouldn’t want to encourage more animated characters to come to life in a state where the cost of living is practically animated itself? Let’s talk about these legislative gems—Assembly Bill 1138 and Senate Bill 630. Apparently, they’re here to save the day, expanding the scope of existing tax aids like some overzealous superhero. I mean, why stop at simply attracting filmmakers when you can also throw in visual effects and animation? It’s like giving a kid a whole candy store instead of a single lollipop. Who can say no to that? But let’s pause for a moment and ponder the implications of this grand gesture. More tax credits mean more projects, which means more animated explosions, talking squirrels, and heartfelt stories about the struggles of a sentient avocado trying to find love in a world that just doesn’t understand it. Because, let’s face it, nothing says “artistic integrity” quite like a financial incentive large enough to fund a small country. And what do we have to thank for this potential windfall? Well, it seems that politicians have finally realized that making movies is a lot more profitable than, say, fixing potholes or addressing climate change. Who knew? Instead of investing in infrastructure that might actually benefit the people living there, they decided to invest in the fantasy world of visual effects. Because really, what’s more important—smooth roads or a high-speed chase featuring a CGI dinosaur? As we delve deeper into this world of tax credit excitement, let’s not forget the underlying truth: these credits are essentially a “please stay here” plea to filmmakers who might otherwise take their talents to greener pastures (or Texas, where they also have sweet deals going on). So, here’s to hoping that the next big animated feature isn’t just a celebration of creativity but also a financial statement that makes accountants drool. So get ready, folks! The next wave of animated masterpieces is coming, fueled by tax incentives and the relentless pursuit of cinematic glory. Who doesn’t want to see more characters with existential crises brought to life on screen, courtesy of our taxpayer dollars? Bravo, California! You’ve truly outdone yourself. Now let’s just hope these tax credits don’t end up being as ephemeral as a poorly rendered CGI character. #CaliforniaTaxCredits #Animation #VFX #Hollywood #TaxIncentives
    3dvf.com
    La Californie pourrait augmenter ses crédits d’impôt pour favoriser la production audiovisuelle. Une évolution qui aurait aussi un impact sur les effets visuels et l’animation.Deux projets législatifs (Assembly Bill 1138 & Senate Bill
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  • fxpodcast: Landman’s special effects and explosions with Garry Elmendorf

    Garry Elmendorf isn’t just a special effects supervisor, he’s a master of controlled chaos. With over 50 years in the business, from Logan’s Run in the ’70s to the high-octane worlds of Yellowstone, 1883, 1923, and Landman. Elmendorf has shaped the visual DNA of Taylor Sheridan’s TV empire with a mix of old-school craft and jaw-dropping spectacle. In the latest fxpodcast, Garry joins us to break down the physical effects work behind some of the most explosive moments in Landman.
    As regular listeners know, we occasionally conduct interviews with individuals working in SFX, rather than with VFX. Garry’s work is not the kind of work that’s built in post and his approach is grounded in real-world physics, practical fabrication, and deeply collaborative on-set discipline. Take the aircraft crash in Landman’s premiere: there was no CGI here, other than comp cleanup. It was shot with just a Frankenstein plane built from scrap, rigged with trip triggers and detonated in real time.
    Or the massive oil rig explosion, which involved custom pump jacks, 2,000 gallons of burning diesel and gasoline, propane cannons, and tightly timed pyro rigs. The scale is cinematic. Safety, Garry insists, is always his first concern, but what keeps him up at night is timing. One mistimed trigger, one failed ignition, and the shot is ruined.

    In our conversation, Garry shares incredible behind-the-scenes insights into how these sequences are devised, tested, and executed, whether it’s launching a van skyward via an air cannon or walking Billy Bob Thornton within 40 feet of a roaring fireball. There’s a tactile intensity to his work, and a trust among his crew that only comes from decades of working under pressure. From assembling a crashable aircraft out of mismatched parts to rigging oil rig explosions with precise control over flame size, duration, and safety, his work is rooted in mechanical problem-solving and coordination across departments.

    In Landman, whether coordinating multiple fuel types to achieve specific smoke density or calculating safe clearances for actors and crew around high-temperature pyrotechnics, Elmendorf’s contribution reflects a commitment to realism and repeatability on set. The result is a series where the physicality of explosions, crashes, and fire-driven action carries weight, both in terms of production logistics and visual impact.

    Listen to the full interview on the fxpodcast.
    #fxpodcast #landmans #special #effects #explosions
    fxpodcast: Landman’s special effects and explosions with Garry Elmendorf
    Garry Elmendorf isn’t just a special effects supervisor, he’s a master of controlled chaos. With over 50 years in the business, from Logan’s Run in the ’70s to the high-octane worlds of Yellowstone, 1883, 1923, and Landman. Elmendorf has shaped the visual DNA of Taylor Sheridan’s TV empire with a mix of old-school craft and jaw-dropping spectacle. In the latest fxpodcast, Garry joins us to break down the physical effects work behind some of the most explosive moments in Landman. As regular listeners know, we occasionally conduct interviews with individuals working in SFX, rather than with VFX. Garry’s work is not the kind of work that’s built in post and his approach is grounded in real-world physics, practical fabrication, and deeply collaborative on-set discipline. Take the aircraft crash in Landman’s premiere: there was no CGI here, other than comp cleanup. It was shot with just a Frankenstein plane built from scrap, rigged with trip triggers and detonated in real time. Or the massive oil rig explosion, which involved custom pump jacks, 2,000 gallons of burning diesel and gasoline, propane cannons, and tightly timed pyro rigs. The scale is cinematic. Safety, Garry insists, is always his first concern, but what keeps him up at night is timing. One mistimed trigger, one failed ignition, and the shot is ruined. In our conversation, Garry shares incredible behind-the-scenes insights into how these sequences are devised, tested, and executed, whether it’s launching a van skyward via an air cannon or walking Billy Bob Thornton within 40 feet of a roaring fireball. There’s a tactile intensity to his work, and a trust among his crew that only comes from decades of working under pressure. From assembling a crashable aircraft out of mismatched parts to rigging oil rig explosions with precise control over flame size, duration, and safety, his work is rooted in mechanical problem-solving and coordination across departments. In Landman, whether coordinating multiple fuel types to achieve specific smoke density or calculating safe clearances for actors and crew around high-temperature pyrotechnics, Elmendorf’s contribution reflects a commitment to realism and repeatability on set. The result is a series where the physicality of explosions, crashes, and fire-driven action carries weight, both in terms of production logistics and visual impact. Listen to the full interview on the fxpodcast. #fxpodcast #landmans #special #effects #explosions
    fxpodcast: Landman’s special effects and explosions with Garry Elmendorf
    www.fxguide.com
    Garry Elmendorf isn’t just a special effects supervisor, he’s a master of controlled chaos. With over 50 years in the business, from Logan’s Run in the ’70s to the high-octane worlds of Yellowstone, 1883, 1923, and Landman. Elmendorf has shaped the visual DNA of Taylor Sheridan’s TV empire with a mix of old-school craft and jaw-dropping spectacle. In the latest fxpodcast, Garry joins us to break down the physical effects work behind some of the most explosive moments in Landman. As regular listeners know, we occasionally conduct interviews with individuals working in SFX, rather than with VFX. Garry’s work is not the kind of work that’s built in post and his approach is grounded in real-world physics, practical fabrication, and deeply collaborative on-set discipline. Take the aircraft crash in Landman’s premiere: there was no CGI here, other than comp cleanup. It was shot with just a Frankenstein plane built from scrap, rigged with trip triggers and detonated in real time. Or the massive oil rig explosion, which involved custom pump jacks, 2,000 gallons of burning diesel and gasoline, propane cannons, and tightly timed pyro rigs. The scale is cinematic. Safety, Garry insists, is always his first concern, but what keeps him up at night is timing. One mistimed trigger, one failed ignition, and the shot is ruined. In our conversation, Garry shares incredible behind-the-scenes insights into how these sequences are devised, tested, and executed, whether it’s launching a van skyward via an air cannon or walking Billy Bob Thornton within 40 feet of a roaring fireball. There’s a tactile intensity to his work, and a trust among his crew that only comes from decades of working under pressure. From assembling a crashable aircraft out of mismatched parts to rigging oil rig explosions with precise control over flame size, duration, and safety, his work is rooted in mechanical problem-solving and coordination across departments. In Landman, whether coordinating multiple fuel types to achieve specific smoke density or calculating safe clearances for actors and crew around high-temperature pyrotechnics, Elmendorf’s contribution reflects a commitment to realism and repeatability on set. The result is a series where the physicality of explosions, crashes, and fire-driven action carries weight, both in terms of production logistics and visual impact. Listen to the full interview on the fxpodcast.
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  • Astronomers Discover Most Powerful Cosmic Explosions Since the Big Bang

    Astronomers have seen the most energetic cosmic explosions yet, a new class of eruptions termed "extreme nuclear transients". These rare events occur when stars at least three times more massive than our Sun are shredded by supermassive black holes. While such cataclysmic events have been known for years, recent flares detected in galactic centres revealed a brightness nearly ten times greater than typical tidal disruption events. The discovery offers new insight into black hole behaviour and energy release in the universe's most extreme environments.Extreme Flares Detected by Gaia and ZTF Reveal Most Energetic Black Hole Events YetAs per a June 4 Science Advances report, lead researcher Jason Hinkle of the University of Hawaii's Institute for Astronomy noticed two mysterious flares from galactic cores in 2016 and 2018, recorded by the European Space Agency's Gaia spacecraft. The scientists recognised them as ENTs because a third one, observed in 2020 by the Zwicky Transient Facility, has similar characteristics. These outbursts gave out more energy than supernovae did, and they lasted much longer than short bursts typically seen during tidal disruption events.Tidal disruption events such as Gaia18cdj are associated with flares that are explosive and long-duration. These explosions are greater than 100 times as intense as supernovas and have been occurring for millions to billions of years. They make ENTs an uncommon, energetic, and long-lived event that cosmic explorers might use.The ENTs' brightness lets astronomers focus on distant galactic centres, as well as the feeding habits of black holes in the universe's early days. "These flares are shining a light on the growth of supermassive black holes in the universe," mentioned co-author Benjamin Shappee, a Hubble fellow at IfA. Their visibility on large scales provides a statistical tool for cosmological studies in the future.Such findings are expanding what astrophysicists know about ENTs-but researchers stress that they're not done wrapping their heads around these mysterious objects just yet. The results might also advance new models of how black holes and stars work together and how energy moves across galaxies. Given upcoming missions with better instruments, the discovery of more ENTs will help astronomers learn even more about these violent events in the cosmos.

    For the latest tech news and reviews, follow Gadgets 360 on X, Facebook, WhatsApp, Threads and Google News. For the latest videos on gadgets and tech, subscribe to our YouTube channel. If you want to know everything about top influencers, follow our in-house Who'sThat360 on Instagram and YouTube.

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    The resident bot. If you email me, a human will respond.
    More
    #astronomers #discover #most #powerful #cosmic
    Astronomers Discover Most Powerful Cosmic Explosions Since the Big Bang
    Astronomers have seen the most energetic cosmic explosions yet, a new class of eruptions termed "extreme nuclear transients". These rare events occur when stars at least three times more massive than our Sun are shredded by supermassive black holes. While such cataclysmic events have been known for years, recent flares detected in galactic centres revealed a brightness nearly ten times greater than typical tidal disruption events. The discovery offers new insight into black hole behaviour and energy release in the universe's most extreme environments.Extreme Flares Detected by Gaia and ZTF Reveal Most Energetic Black Hole Events YetAs per a June 4 Science Advances report, lead researcher Jason Hinkle of the University of Hawaii's Institute for Astronomy noticed two mysterious flares from galactic cores in 2016 and 2018, recorded by the European Space Agency's Gaia spacecraft. The scientists recognised them as ENTs because a third one, observed in 2020 by the Zwicky Transient Facility, has similar characteristics. These outbursts gave out more energy than supernovae did, and they lasted much longer than short bursts typically seen during tidal disruption events.Tidal disruption events such as Gaia18cdj are associated with flares that are explosive and long-duration. These explosions are greater than 100 times as intense as supernovas and have been occurring for millions to billions of years. They make ENTs an uncommon, energetic, and long-lived event that cosmic explorers might use.The ENTs' brightness lets astronomers focus on distant galactic centres, as well as the feeding habits of black holes in the universe's early days. "These flares are shining a light on the growth of supermassive black holes in the universe," mentioned co-author Benjamin Shappee, a Hubble fellow at IfA. Their visibility on large scales provides a statistical tool for cosmological studies in the future.Such findings are expanding what astrophysicists know about ENTs-but researchers stress that they're not done wrapping their heads around these mysterious objects just yet. The results might also advance new models of how black holes and stars work together and how energy moves across galaxies. Given upcoming missions with better instruments, the discovery of more ENTs will help astronomers learn even more about these violent events in the cosmos. For the latest tech news and reviews, follow Gadgets 360 on X, Facebook, WhatsApp, Threads and Google News. For the latest videos on gadgets and tech, subscribe to our YouTube channel. If you want to know everything about top influencers, follow our in-house Who'sThat360 on Instagram and YouTube. Gadgets 360 Staff The resident bot. If you email me, a human will respond. More #astronomers #discover #most #powerful #cosmic
    Astronomers Discover Most Powerful Cosmic Explosions Since the Big Bang
    www.gadgets360.com
    Astronomers have seen the most energetic cosmic explosions yet, a new class of eruptions termed "extreme nuclear transients" (ENTs). These rare events occur when stars at least three times more massive than our Sun are shredded by supermassive black holes. While such cataclysmic events have been known for years, recent flares detected in galactic centres revealed a brightness nearly ten times greater than typical tidal disruption events. The discovery offers new insight into black hole behaviour and energy release in the universe's most extreme environments.Extreme Flares Detected by Gaia and ZTF Reveal Most Energetic Black Hole Events YetAs per a June 4 Science Advances report, lead researcher Jason Hinkle of the University of Hawaii's Institute for Astronomy noticed two mysterious flares from galactic cores in 2016 and 2018, recorded by the European Space Agency's Gaia spacecraft. The scientists recognised them as ENTs because a third one, observed in 2020 by the Zwicky Transient Facility, has similar characteristics. These outbursts gave out more energy than supernovae did, and they lasted much longer than short bursts typically seen during tidal disruption events.Tidal disruption events such as Gaia18cdj are associated with flares that are explosive and long-duration. These explosions are greater than 100 times as intense as supernovas and have been occurring for millions to billions of years. They make ENTs an uncommon, energetic, and long-lived event that cosmic explorers might use.The ENTs' brightness lets astronomers focus on distant galactic centres, as well as the feeding habits of black holes in the universe's early days. "These flares are shining a light on the growth of supermassive black holes in the universe," mentioned co-author Benjamin Shappee, a Hubble fellow at IfA. Their visibility on large scales provides a statistical tool for cosmological studies in the future.Such findings are expanding what astrophysicists know about ENTs-but researchers stress that they're not done wrapping their heads around these mysterious objects just yet. The results might also advance new models of how black holes and stars work together and how energy moves across galaxies. Given upcoming missions with better instruments, the discovery of more ENTs will help astronomers learn even more about these violent events in the cosmos. For the latest tech news and reviews, follow Gadgets 360 on X, Facebook, WhatsApp, Threads and Google News. For the latest videos on gadgets and tech, subscribe to our YouTube channel. If you want to know everything about top influencers, follow our in-house Who'sThat360 on Instagram and YouTube. Gadgets 360 Staff The resident bot. If you email me, a human will respond. More
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  • Cars + explosions + Animation = FUN!

    Cars + explosions + Animation = FUN! By Leo-MediaWay on June 6, 2025 Tutorials Full Blender tutorial on how to add an animated explosion into Blender using a free VDB, plus full tutorial on creating a car animation with camera, HDRI lighting, and rendering tips! Easy to follow along and links to all assets included! Have fun!
    #cars #explosions #animation #fun
    Cars + explosions + Animation = FUN!
    Cars + explosions + Animation = FUN! By Leo-MediaWay on June 6, 2025 Tutorials Full Blender tutorial on how to add an animated explosion into Blender using a free VDB, plus full tutorial on creating a car animation with camera, HDRI lighting, and rendering tips! Easy to follow along and links to all assets included! Have fun! #cars #explosions #animation #fun
    Cars + explosions + Animation = FUN!
    www.blendernation.com
    Cars + explosions + Animation = FUN! By Leo-MediaWay on June 6, 2025 Tutorials Full Blender tutorial on how to add an animated explosion into Blender using a free VDB, plus full tutorial on creating a car animation with camera, HDRI lighting, and rendering tips! Easy to follow along and links to all assets included! Have fun!
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  • Astronomers detect most powerful explosions since Big Bang

    An artist's illustration of an unlucky massive star approaching a supermassive black hole. Credit: University of Hawai'i

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    At any given time across the universe, massive cosmic bodies are releasing incomprehensible amounts of energy. Stars burn like celestial nuclear fusion reactors, quasars emit thousands of times the luminosity of the Milky Way galaxy, and asteroids slam into planets. But all of these pale in comparison to a new class of events discovered by researchers at the University of Hawai’i’s Institute for Astronomy. According to their findings published June 4 in the journal Science Advances, it’s time to classify the universe’s most energetic explosions as extreme nuclear transients–or ENTs.
    ENTs are as devastating as they are rare. They only occur when a massive star at least three times heavier than the sun drifts too close to a supermassive black hole. The colliding forces subsequently obliterate the star, sending out plumes of energy across huge swaths of space. Similar events known as tidal disruption eventsare known to occur on asmaller scale, and have been documented for over a decade. But ENTs are something else entirely.
    “ENTs are different beasts,” study lead author and astronomer Jason Hinkle explained in an accompanying statement. “Not only are ENTs far brighter than normal tidal disruption events, but they remain luminous for years, far surpassing the energy output of even the brightest known supernova explosions.”
    Hinkle was first tipped off to ENTs while looking into transients—longlasting flares that spew energy from a galaxy’s center. Two particularly strange examples captured by the European Space Agency’s Gaia mission caught his eye. The pair of events brightened over a much longer timeframe than previously documented transients, but lacked some of their usual characteristics.
    “Gaia doesn’t tell you what a transient is, just that something changed in brightness,” Hinkle said. “But when I saw these smooth, long-lived flares from the centers of distant galaxies, I knew we were looking at something unusual.”
    Hinkle soon reached out to observatory teams around the world for what would become a multiyear project to understand these anomalies. In the process, a third suspect was detected by the Zwicky Transient Facility at the Palomar Observatory in San Diego. After months of analysis, Hinkle and collaborators realized they were witnessing something unprecedented.
    An infrared echo tells us that a dusty torus surrounds the central black hole and newly-formed accretion disk. Credit: University of Hawai’i
    The ENTs analyzed by astronomers displayed smoother, longer lasting flares that pointed towards something very particular—a supermassive black hole accreting a giant, wayward star.
    This contrasts with a more standard black hole that typically acquires its material and energy unpredictably, resulting in irregular brightness fluctuations.
    The energy and luminosity of an ENT boggles the mind. The most powerful ENT documented in Hinkle’s study, Gaia18cdj, generated 25 times more energy than the most powerful known supernovae. For reference, a standard supernova puts out as much energy in a single year as the sun does across its entire 10 billion year lifespan. Gaia18cdj, meanwhile, manages to give off 100 suns’ worth of energy over just 12 months.
    The implications of ENTs and their massive energy surges go far beyond their impressive energy outputs. Astronomers believe they contribute to some of the most pivotal events in the cosmos.
    “These ENTs don’t just mark the dramatic end of a massive star’s life. They illuminate the processes responsible for growing the largest black holes in the universe,” said Hinkle.
    From here on Earth, ENTs can also help researchers as they continue studying massive, distant black holes.
    “Because they’re so bright, we can see them across vast cosmic distances—and in astronomy, looking far away means looking back in time,” explained study co-author and astronomer Benjamin Shappee. “By observing these prolonged flares, we gain insights into black hole growth when the universe was half its current age… forming stars and feeding their supermassive black holes 10 times more vigorously than they do today.”
    There’s a catch for astronomers, however. While supernovae are relatively well-documented, ENTs are estimated to occur at least 10 million times less often. This means that further study requires consistent monitoring of the cosmos backed by the support of international governments, astronomical associations, and the public.
    #astronomers #detect #most #powerful #explosions
    Astronomers detect most powerful explosions since Big Bang
    An artist's illustration of an unlucky massive star approaching a supermassive black hole. Credit: University of Hawai'i Get the Popular Science daily newsletter💡 Breakthroughs, discoveries, and DIY tips sent every weekday. At any given time across the universe, massive cosmic bodies are releasing incomprehensible amounts of energy. Stars burn like celestial nuclear fusion reactors, quasars emit thousands of times the luminosity of the Milky Way galaxy, and asteroids slam into planets. But all of these pale in comparison to a new class of events discovered by researchers at the University of Hawai’i’s Institute for Astronomy. According to their findings published June 4 in the journal Science Advances, it’s time to classify the universe’s most energetic explosions as extreme nuclear transients–or ENTs. ENTs are as devastating as they are rare. They only occur when a massive star at least three times heavier than the sun drifts too close to a supermassive black hole. The colliding forces subsequently obliterate the star, sending out plumes of energy across huge swaths of space. Similar events known as tidal disruption eventsare known to occur on asmaller scale, and have been documented for over a decade. But ENTs are something else entirely. “ENTs are different beasts,” study lead author and astronomer Jason Hinkle explained in an accompanying statement. “Not only are ENTs far brighter than normal tidal disruption events, but they remain luminous for years, far surpassing the energy output of even the brightest known supernova explosions.” Hinkle was first tipped off to ENTs while looking into transients—longlasting flares that spew energy from a galaxy’s center. Two particularly strange examples captured by the European Space Agency’s Gaia mission caught his eye. The pair of events brightened over a much longer timeframe than previously documented transients, but lacked some of their usual characteristics. “Gaia doesn’t tell you what a transient is, just that something changed in brightness,” Hinkle said. “But when I saw these smooth, long-lived flares from the centers of distant galaxies, I knew we were looking at something unusual.” Hinkle soon reached out to observatory teams around the world for what would become a multiyear project to understand these anomalies. In the process, a third suspect was detected by the Zwicky Transient Facility at the Palomar Observatory in San Diego. After months of analysis, Hinkle and collaborators realized they were witnessing something unprecedented. An infrared echo tells us that a dusty torus surrounds the central black hole and newly-formed accretion disk. Credit: University of Hawai’i The ENTs analyzed by astronomers displayed smoother, longer lasting flares that pointed towards something very particular—a supermassive black hole accreting a giant, wayward star. This contrasts with a more standard black hole that typically acquires its material and energy unpredictably, resulting in irregular brightness fluctuations. The energy and luminosity of an ENT boggles the mind. The most powerful ENT documented in Hinkle’s study, Gaia18cdj, generated 25 times more energy than the most powerful known supernovae. For reference, a standard supernova puts out as much energy in a single year as the sun does across its entire 10 billion year lifespan. Gaia18cdj, meanwhile, manages to give off 100 suns’ worth of energy over just 12 months. The implications of ENTs and their massive energy surges go far beyond their impressive energy outputs. Astronomers believe they contribute to some of the most pivotal events in the cosmos. “These ENTs don’t just mark the dramatic end of a massive star’s life. They illuminate the processes responsible for growing the largest black holes in the universe,” said Hinkle. From here on Earth, ENTs can also help researchers as they continue studying massive, distant black holes. “Because they’re so bright, we can see them across vast cosmic distances—and in astronomy, looking far away means looking back in time,” explained study co-author and astronomer Benjamin Shappee. “By observing these prolonged flares, we gain insights into black hole growth when the universe was half its current age… forming stars and feeding their supermassive black holes 10 times more vigorously than they do today.” There’s a catch for astronomers, however. While supernovae are relatively well-documented, ENTs are estimated to occur at least 10 million times less often. This means that further study requires consistent monitoring of the cosmos backed by the support of international governments, astronomical associations, and the public. #astronomers #detect #most #powerful #explosions
    Astronomers detect most powerful explosions since Big Bang
    www.popsci.com
    An artist's illustration of an unlucky massive star approaching a supermassive black hole. Credit: University of Hawai'i Get the Popular Science daily newsletter💡 Breakthroughs, discoveries, and DIY tips sent every weekday. At any given time across the universe, massive cosmic bodies are releasing incomprehensible amounts of energy. Stars burn like celestial nuclear fusion reactors, quasars emit thousands of times the luminosity of the Milky Way galaxy, and asteroids slam into planets. But all of these pale in comparison to a new class of events discovered by researchers at the University of Hawai’i’s Institute for Astronomy (IfA). According to their findings published June 4 in the journal Science Advances, it’s time to classify the universe’s most energetic explosions as extreme nuclear transients–or ENTs. ENTs are as devastating as they are rare. They only occur when a massive star at least three times heavier than the sun drifts too close to a supermassive black hole. The colliding forces subsequently obliterate the star, sending out plumes of energy across huge swaths of space. Similar events known as tidal disruption events (TDEs) are known to occur on a (comparatively) smaller scale, and have been documented for over a decade. But ENTs are something else entirely. “ENTs are different beasts,” study lead author and astronomer Jason Hinkle explained in an accompanying statement. “Not only are ENTs far brighter than normal tidal disruption events, but they remain luminous for years, far surpassing the energy output of even the brightest known supernova explosions.” Hinkle was first tipped off to ENTs while looking into transients—longlasting flares that spew energy from a galaxy’s center. Two particularly strange examples captured by the European Space Agency’s Gaia mission caught his eye. The pair of events brightened over a much longer timeframe than previously documented transients, but lacked some of their usual characteristics. “Gaia doesn’t tell you what a transient is, just that something changed in brightness,” Hinkle said. “But when I saw these smooth, long-lived flares from the centers of distant galaxies, I knew we were looking at something unusual.” Hinkle soon reached out to observatory teams around the world for what would become a multiyear project to understand these anomalies. In the process, a third suspect was detected by the Zwicky Transient Facility at the Palomar Observatory in San Diego. After months of analysis, Hinkle and collaborators realized they were witnessing something unprecedented. An infrared echo tells us that a dusty torus surrounds the central black hole and newly-formed accretion disk. Credit: University of Hawai’i The ENTs analyzed by astronomers displayed smoother, longer lasting flares that pointed towards something very particular—a supermassive black hole accreting a giant, wayward star. This contrasts with a more standard black hole that typically acquires its material and energy unpredictably, resulting in irregular brightness fluctuations. The energy and luminosity of an ENT boggles the mind. The most powerful ENT documented in Hinkle’s study, Gaia18cdj, generated 25 times more energy than the most powerful known supernovae. For reference, a standard supernova puts out as much energy in a single year as the sun does across its entire 10 billion year lifespan. Gaia18cdj, meanwhile, manages to give off 100 suns’ worth of energy over just 12 months. The implications of ENTs and their massive energy surges go far beyond their impressive energy outputs. Astronomers believe they contribute to some of the most pivotal events in the cosmos. “These ENTs don’t just mark the dramatic end of a massive star’s life. They illuminate the processes responsible for growing the largest black holes in the universe,” said Hinkle. From here on Earth, ENTs can also help researchers as they continue studying massive, distant black holes. “Because they’re so bright, we can see them across vast cosmic distances—and in astronomy, looking far away means looking back in time,” explained study co-author and astronomer Benjamin Shappee. “By observing these prolonged flares, we gain insights into black hole growth when the universe was half its current age… forming stars and feeding their supermassive black holes 10 times more vigorously than they do today.” There’s a catch for astronomers, however. While supernovae are relatively well-documented, ENTs are estimated to occur at least 10 million times less often. This means that further study requires consistent monitoring of the cosmos backed by the support of international governments, astronomical associations, and the public.
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