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Uranus Breaks (Solar) Wind: Re-Analyzing Data from the Voyager 2 Mission

SETI Live

Release Date: 12/17/2024

How Ceres Froze Over: Modeling the Ice-Rich Crust of an Evolving Dwarf Planet show art How Ceres Froze Over: Modeling the Ice-Rich Crust of an Evolving Dwarf Planet

SETI Live

Join planetary scientists Beth Johnson and Ian Pamerleau, lead author of a groundbreaking new Nature Astronomy study, for a deep dive into the icy mysteries of Ceres—the largest object in the asteroid belt and the only dwarf planet to be orbited by a spacecraft. While Ceres shows signs of an ice-rich interior, its heavily cratered surface doesn’t behave like soft, ice-laden terrain. So what gives? To solve the puzzle, Pamerleau and colleagues used simulations and an updated model of how impure ice deforms. Their work reveals that Ceres once hosted a subsurface ocean that froze from the top...

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Dreams of Biogenesis: A Conversation with Artist Jennifer Willet show art Dreams of Biogenesis: A Conversation with Artist Jennifer Willet

SETI Live

How does life begin? This intriguing question touches on science, philosophy, and the imagination. Artist and INCUBATOR Art Lab Director Jennifer Willet created an artwork that visualizes the theories of SETI Institute Drake Award recipients Dr. David Deamer and Dr. John Baross. Willet’s work, Dreams of Biogenesis, imagines the birth of life on our planet as a reverie of molecules, cells, micro and multicellular organisms assembling and evolving under unique environmental conditions. Join SETI AIR Director Bettina Forget and Jennifer Willet for a conversation about creative research that...

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NSF–DOE Rubin Observatory First Look: Stunning Images and Asteroids Aplenty show art NSF–DOE Rubin Observatory First Look: Stunning Images and Asteroids Aplenty

SETI Live

Last week, the NSF–DOE Rubin Observatory released its First Look images, including stunning views of the Trifid and Lagoon nebulae, an astounding Cosmic Treasure Chest of stars and galaxies, and a "swarm" of newly discovered asteroids. Captured in a mere ten hours of observing time, this preview gave us a taste of what is to come for the groundbreaking observatory. As the press release states, "Rubin’s innovative 8.4-meter telescope has the largest digital camera ever built, which feeds a powerful data processing system. Later in 2025, Rubin will begin its primary mission, the Legacy...

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LaserSETI Update: On Exhibit in London and a New Station in Puerto Rico show art LaserSETI Update: On Exhibit in London and a New Station in Puerto Rico

SETI Live

A major new exhibition at the Natural History Museum in South Kensington, Space: Could Life Exist Beyond Earth?, runs from May 17, 2025, to January 4, 2026, and will feature a complete LaserSETI instrument on display. The exhibit explores one of humanity’s most profound questions: Are we alone in the universe? The exhibition brings together cutting-edge science, captivating artifacts, and the latest research in astrobiology, exoplanets, and the search for extraterrestrial intelligence. LaserSETI represents a new frontier in SETI, using a global network of instruments to continuously scan the...

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Could Aliens See Us? What Earth’s Technosphere Reveals show art Could Aliens See Us? What Earth’s Technosphere Reveals

SETI Live

🌍 What Will Earth Look Like in 1000 Years? Will humanity collapse, thrive, or colonize the stars—and could alien civilizations detect us? Join senior planetary astronomer Dr. Franck Marchis for a fascinating conversation with Dr. Jacob Haqq-Misra, astrobiologist and lead author of a groundbreaking study exploring 10 possible futures for Earth’s technosphere—the global network of our technologies—and what these futures mean for the search for extraterrestrial intelligence (SETI). 🚀 From stable zero-growth societies to interstellar expansion, Dr. Haqq-Misra’s team models how...

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Mars’ Ancient Carbon Cycle: How Rocks on Mars Tell the Story of a Vanishing Climate show art Mars’ Ancient Carbon Cycle: How Rocks on Mars Tell the Story of a Vanishing Climate

SETI Live

Join planetary scientist Beth Johnson as we explore a groundbreaking discovery from NASA's Curiosity rover on Mars. Scientists have identified siderite—a rare iron carbonate mineral—within ancient Martian rocks, offering new insights into Mars' once-thicker atmosphere and its now-lost carbon cycle. This discovery reshapes our understanding of the Red Planet's climate history and helps us draw powerful parallels to Earth's carbon processes. Dr. Ben Tutolo, associate professor at the University of Calgary and participating scientist on NASA's Curiosity rover team, explains that as Mars'...

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Titan’s Missing Deltas? What Cassini Saw — and What It Didn’t show art Titan’s Missing Deltas? What Cassini Saw — and What It Didn’t

SETI Live

Why are Titan’s river deltas missing? Planetary astronomer Franck Marchis taps in for Beth Johnson to chat with Brown University’s Sam Birch and explore a strange and unexpected mystery on Saturn’s largest moon. Using data from NASA’s Cassini mission and advanced computer modeling, Birch’s team reveals that Titan's shorelines defy Earth-like expectations. Despite Titan's known rivers and seas of liquid methane, the team found a surprising absence of deltas—landforms typically formed when rivers deposit sediment at their mouths. This finding challenges existing geological...

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A Cookbook of Life: How Chemistry Might Explain Life on Other Planets show art A Cookbook of Life: How Chemistry Might Explain Life on Other Planets

SETI Live

What if the origin of life isn’t a one-in-a-billion cosmic fluke, but something that happens whenever the conditions are just right? Join communications specialist Beth Johnson as we explore groundbreaking research from the University of Wisconsin–Madison, where scientists have identified over 270 self-replicating chemical reactions that may have sparked life, not just on Earth, but potentially anywhere in the universe. Led by astrobiologist Dr. Betül Kaçar, this study reframes our understanding of how life can emerge from simple chemistry. Discover how these "chemical recipes" might...

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Red Planet, Blue Past: How Rain Shaped the Martian Landscape show art Red Planet, Blue Past: How Rain Shaped the Martian Landscape

SETI Live

A groundbreaking study from the University of Colorado Boulder suggests that ancient Mars was far from the cold, arid planet we know today. Led by Amanda Steckel, the research team utilized computer simulations to reveal that billions of years ago, Mars experienced significant precipitation—either rain or snow—that carved out extensive networks of valleys and channels across its surface. These findings challenge previous theories that Mars was predominantly cold and dry, instead supporting the idea of a warmer, wetter climate during the Noachian epoch, approximately 4.1 to 3.7 billion...

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Tiny Asteroids, Big Threats: JWST Reveals a Hidden World of Mini Asteroids show art Tiny Asteroids, Big Threats: JWST Reveals a Hidden World of Mini Asteroids

SETI Live

One significant threat to life here on Earth is the possibility that a massive asteroid will collide with our planet and destroy life as we know it. To understand the possibilities, large surveys of the sky have found around 95% of potentially hazardous asteroids larger than a kilometer. Smaller asteroids, however, can also cause massive amounts of damage. Estimates range from 40 to 60 percent when it comes to asteroids over 100 meters in diameter, which would be considered city-killers. Even smaller asteroids, such as the 20-meter one that exploded over Chelyabinsk in 2013, can cause...

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Get ready to giggle and make bad jokes. Uranus is back in the news. In 1986, Voyager 2 flew by the distant ice giant and made a strange discovery—the planet's magnetic field was weird. It's not just weird; it's unlike every other planet in the solar system. For nearly 40 years, scientists have tried to understand why. To solve the mystery, researchers delved into the data collected by Voyager 2 and found a "cosmic coincidence". The solar wind was unusually strong just prior to the flyby, causing the strange observations. This is good news for Uranus's moons, which were thought to be inactive as a result of the Voyager 2 findings. Join planetary scientist Beth Johnson and space plasma physicist Jamie Jasinski from NASA's Jet Propulsion Laboratory as they discuss the initial observations, how the data was reevaluated, and what this all means for future missions to Uranus. (Recorded 12 December 2024.)