Researchers estimated radiation risks for astronauts in low Earth orbits, finding they would have faced toxic doses during a massive solar event. The study used supercomputers to model the Manned Orbiting Laboratory's orbit profile and simulate space weather.
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GOES satellites help track thunderstorms, tornadoes, hurricanes, and flash floods, while also supporting search and rescue efforts through their transponders,
After an amateur astronomer recorded observations of a satellite in high Earth orbit on Jan. 20, 2018, NASA coordinated the use of five separate antennas to acquire radio frequency signals from the object. The signals matched the expected characteristics of the IMAGE mission, suggesting it could be the lost satellite.
A NASA team studied the motion of Mercury to indirectly measure the Sun's mass loss and solar parameters. The research improved upon earlier predictions, reducing uncertainty and providing a more accurate estimate of the rate of solar mass loss.
The Neil Gehrels Swift Observatory has detected a comet's rotation period slow by more than 10 times in just 60 days, revealing light variations associated with material recently ejected into the coma. The comet's small size and high water production suggest that more than half of its surface area contains sunlight-activated jets.
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Astronomers have developed a novel method to measure the masses of solitary stars with an accuracy of 10-25 percent. This technique combines light fluctuations and parallax data to infer surface gravity and diameter, providing critical information for understanding star formation, evolution, and planetary systems.
The Dellingr spacecraft, designed to demonstrate the viability of CubeSats for scientific research, has begun its checkout process after being released into low-Earth orbit on November 20. The spacecraft is equipped with a suite of miniaturized instruments to gather data on the Sun's influence on Earth's upper atmosphere.
NGTS-1b, the largest planet compared to its companion star, has been discovered by an international collaboration of astronomers. The giant gas giant orbits a small star half the size of our Sun and challenges theories on planet formation.
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Researchers XiaoMing Li and ShiJun Liao found more than 600 new families of periodic orbits in the three-body problem using a new numerical simulation strategy. The discovery could lead to a deeper understanding of the system's behavior, with implications for our knowledge of chaotic dynamics.
The Global Aerospace Corporation has developed a Pluto lander concept that uses drag from the ultra-thin atmosphere to decelerate and gently land on the surface of Pluto. The lander-hopper can then hop around the surface, investigating surface features and performing science measurements.
The Tracking and Data Relay Satellites (TDRS) have provided critical communication services to NASA's missions since the 1980s, increasing global communication coverage to over 99%. The TDRS network will continue to play a vital role in space communications for years to come.
A team of astronomers identified a relatively unpopulated region of the main asteroid belt containing pristine relics from early solar system history. They also discovered the oldest known asteroid family extending throughout the inner region of the main asteroid belt.
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Astronomers used novel technique to analyze ETNO orbits, finding clustering of nodes at certain distances from the Sun. The results suggest a planet beyond Pluto, with its orbit potentially interacting with ETNOs.
Astronomers found that the fastest-moving stars in the Milky Way originated in the Large Magellanic Cloud, a dwarf galaxy in orbit around our own. Computer simulations and data analysis showed that these stars were ejected from their original home at incredible speeds.
Bee-Zed asteroid, discovered in 2015, orbits the Sun every 12 years, corresponding with Jupiter's orbital period, and shares its orbit despite moving in the opposite direction. This retrograde co-orbit is rare, occurring only in about 82 of the more than 726,000 known asteroids.
A new study has found evidence of a yet-to-be-discovered planetary body with a mass between Mars and Earth, warping the orbital planes of Kuiper Belt objects. The object's presence is suggested by its control over the tilt angles of KBOs' orbital planes, indicating a gravitational influence comparable to that of Mars.
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The newly discovered planet KELT-9b has a unique orbit, atmospheric features, and a daytime temperature hotter than most stars. Its surface reaches 7,800 degrees Fahrenheit during the day, just 2,000 degrees cooler than the Sun.
Astrophysicists discovered that the TRAPPIST-1 system remains stable due to a 'resonant chain' configuration, where planets' orbital periods form simple ratios. This harmonic stability explains why the system has survived for millions of years.
Asteroid Bee-Zed, orbiting the wrong way around the sun, has been playing a cosmic game of chicken with Jupiter for a million years. The asteroid's retrograde motion allows it to maintain a stable orbit despite its unusual path, thanks to Jupiter's gravity deflection.
The Van Allen Probes detected an increase in oxygen particles speeding around Earth's dayside after a geomagnetic storm, shedding light on particle origins. The unique double observations help untangle the complex workings of Earth's magnetic environment.
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A new European Union-funded project will develop satellites that can operate at lower altitudes, revolutionizing remote sensing technology. The project aims to create smaller, cheaper satellites with improved image quality, utilizing advanced materials and electric propulsion systems.
Astronomers have confirmed the existence of seven small planets orbiting TRAPPIST-1, with sizes similar to Earth and temperatures comparable to those of Venus, Earth, and Mars. The inner six planets are likely rocky in composition and potentially harbor liquid water.
Researchers have observed spectroscopically two distant asteroids and found their orbits are almost identical, suggesting a common origin. The team proposes that these asteroids were once a binary pair that separated after an encounter with a planet beyond Pluto's orbit.
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NavCube, combining NASA's SpaceCube and Navigator Global Positioning System (GPS) flight receiver, enables X-ray communications in space. The technology has the potential to significantly enhance performance at low altitudes, potentially even near the moon and lunar orbits.
A new research paper suggests that the impact that formed the moon also caused calamitous changes to Earth's rotation and tilt. The model indicates that the remaining anomalies in the moon's orbit are relics of the Earth-moon system's explosive past, with a large tilt of up to 80 degrees.
A new theory proposes a single high-energy collision as the origin of the Moon's formation, explaining its unusual composition and orbit. The alternative model suggests that the Moon condensed from the same material as Earth, resulting in their similar chemical makeup.
A recent study by Caltech researchers Konstantin Batygin and Mike Brown suggests that the large, undiscovered planet Planet Nine is responsible for the sun's tilted orbit. The planet's massive size and unique orbit cause a multi-billion-year wobble in the solar system, resulting in a six-degree tilt.
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Research found that circumbinary planets can survive the late stages of their binary star's life by moving to wider orbits. Many such planets are likely to escape destruction and potentially become habitable for a short period.
A team of researchers has shed light on the origin of centaur rings, revealing a scenario where tidal disruptions lead to disc formation and ring creation. The study suggests that rings around centaurs are more common than previously thought, with many awaiting discovery.
Recent exoplanet discoveries by NSF-supported graduate researchers expand our understanding of how planets form and orbit stars. These breakthroughs include the detection of a unique planet in a triple-star system, one of the youngest fully formed exoplanets ever discovered.
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Researchers use SPHERE instrument to image first planet in wide orbit inside a triple-star system, suggesting such systems may be more common than thought. The planet, HD 131399Ab, has an unstable orbit and is estimated to be around 16 million years old, making it one of the youngest exoplanets discovered.
Astronomers have discovered a planet in a unique position between three stars, experiencing constant daylight or triple sunrises and sunsets. The planet, HD 131399Ab, is one of the youngest exoplanets discovered to date and has a wide orbit within a multi-star system.
A team of Caltech-led researchers has discovered the youngest fully-formed exoplanet ever detected, K2-33b, which orbits a young star at 5 to 10 million years old. The planet's proximity to its star and large size suggest it may have formed quickly or challenged the migration theory.
Astronomers from NASA's Goddard Space Flight Center and San Diego State University have discovered the largest planet yet found around a double-star system. Kepler-1647 b is approximately 4.4 billion years old and has a mass and radius nearly identical to that of Jupiter.
Astronomers at NASA's Goddard Space Flight Center and San Diego State University have discovered a new planet, Kepler-1647b, which orbits two stars and is the largest transiting circumbinary planet ever found. The planet, with a mass and radius similar to that of Jupiter, takes 3 years to orbit its host stars.
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A team of researchers discovered a new planet orbiting two suns simultaneously, Kepler-1647b, the largest circumbinary planet with a mass and radius similar to Jupiter. Located 3,700 light-years away, the planet has an enormous orbit taking roughly three Earth-years to complete.
New calculations suggest the six extreme trans-Neptunian objects, initially used to propose Planet Nine, would have unstable orbits if it exists. The orbits of these objects could escape the Solar System in less than 1.5 billion years.
The KELT Follow-Up Network, the largest coordinated network of its kind, contributed key observations to confirm the existence of Kepler-1647 b. The planet, a gas giant, orbits two stars and takes nearly 3 years to complete its orbit, making it the longest-period transiting exoplanet found so far.
Astronomers have found evidence for a tightly orbiting gas giant, PTFO8-8695 b, which is being torn away by its 2 million-year-old star. The planet's outer layers are likely to be destroyed, and its ultimate fate remains uncertain.
A new study suggests that comets like 67P/Churyumov-Gerasimenko may undergo a repeating process of breaking up and reuniting, driven by spinning dynamics. The research team used numerical models to simulate the past life of 67P, predicting exactly where cracks would form on its neck.
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Researchers at Rice University have discovered a giant planet, CI Tau b, orbiting a young star in the constellation Taurus. The planet, at least eight times larger than Jupiter, orbits its 2 million-year-old star every nine days and is thought to have formed rapidly, with surrounding gas and dust still present.
The Kepler-223 planetary system has unusually long-term stability due to gravitational interactions between its four planets, which return to the same positions relative to each other and their host star. Numerical simulations suggest that slow migration during formation could have placed these planets into their balanced configuration.
Scientists have used a revolutionary image stacking and matching technique to reveal objects on Mars with a resolution up to five times greater than previously achieved. The Super-Resolution Restoration (SRR) method has huge potential to improve knowledge of a planet's surface from multiple remotely sensed images.
Goddard's Network Integration Center coordinates communications for Near Earth and Space Networks, ensuring reliable data transmission from space to ground. The center has been operational since Project Mercury and supports human spaceflight missions, including those in low-Earth orbit and beyond.
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The study reveals that asteroids are destroyed when they approach the Sun, explaining discrepancies in meteor stream observations and providing a new perspective on asteroid interiors. The team's discovery allows for the testing of models of asteroid interiors by tracking their orbits and sizes.
Researchers studied video recordings, scientific data, and asteroid orbits to determine the Chelyabinsk superbolide's origin. A possible link between asteroid 2011 EO40 and the Chelyabinsk impactor has been suggested.
The C/NOFS satellite provided comprehensive observations of the ionosphere, improving models to predict satellite trajectories and orbital drag. The data revealed strong interactions between charged particles and neutral particles in the atmosphere, affecting radio wave navigation and communication systems.
The discovery of GJ 1132b, an Earth-size exoplanet located just 39 light-years away from our Solar System, is a significant milestone in the search for alien life. The planet's proximity to its star and size make it an ideal laboratory for studying small, potentially livable worlds.
A new study found that Mercury is being pelted by ancient comet dust, impacting its tenuous atmosphere and surface boundary exosphere. The researchers discovered a cometary dust stream from Comet Encke that explains the timing of calcium emission peaks in the planet's exosphere.
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Recent studies by Michael Hippke and Daniel Angerhausen predict that upcoming missions like TESS and PLATO will uncover planetary moons, ringed worlds similar to Saturn, and large collections of asteroids. These discoveries could provide insights into alien planetary systems similar to our own.
Typhoon Champi features a 36-nautical-mile-wide eye that was visible from NASA's Aqua satellite on October 22, 2015. The eye's cloud top temperatures exceeded minus 63F, indicating strong storms with heavy rainfall potential.
Astronomers have spotted a large, rocky object disintegrating in its death spiral around a distant white dwarf star, confirming a long-standing theory behind the source of white dwarf 'pollution' by metals. The system shows signs of surrounding debris disk and at least one compact, rocky object.
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Scientists from KU Leuven discovered that two of three possible climates on rocky exoplanets are potentially habitable. The 'air conditioning system' keeps surface temperatures within the habitable range, despite permanent day and night sides. This finding provides valuable input for future space missions.
The Suomi NPP satellite captured a stunning night-time image of the Jerusalem Fire in California, revealing its massive size and location. The fire has covered over 12,000 acres and is being managed by Cal Fire.
Astronomers at SDSU announce the discovery of Kepler-453 b, the 10th known 'circumbinary' planet. The new planet orbits two stars and has a surprisingly tilted orbit, making transits visible only 9% of the time.
A breakthrough study by the University of Leicester team, led by Professor Nikolai Brilliantov, reveals that planetary rings have a universally similar particle distribution. The researchers solved the 'amazing' mathematical inverse cubes law of particle size distribution, suggesting that Saturn's rings are in a steady state that does ...
The Magnetospheric Multiscale (MMS) mission is gathering data on magnetic reconnection, a phenomenon that happens when the Earth's magnetic field connects and disconnects from the solar wind. The tetrahedral formation of MMS spacecraft allows scientists to study this process in three dimensions.
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DSCOVR will provide enhanced measurements of solar wind conditions to warn of potentially harmful solar activity, predicting geomagnetic storm magnitude on a regional basis. The satellite's unique vantage point at Lagrange point 1 allows for early warnings of large magnetic eruptions from the sun.
A new study published in Nature provides the first detailed look at Pluto's five known moons, revealing fascinating details about their orbits and rotational patterns. The research found that three of the smaller moons, Nix, Styx, and Hydra, are locked together in resonance, making their orbits more regular and predictable.
The GOES-R satellite has begun environmental testing to simulate the harsh conditions of launch and the space environment. This includes vibration, acoustics, and temperature testing to ensure the satellite is properly protected from electromagnetic phenomena in space.
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