Add BrightSurf on Google Email

Search results for “Pluto”

241 results for "Pluto"

Scientists see billions of miles away

A team of scientists led by Jay Pasachoff observed the shiniest object in the solar system, 2002 TX300, a fragment of Haumea, using a network of telescopes. The measurements reveal its icy surface and size, confirming it as a small, reflective body with an age estimated to be around a billion years.

SourceWilliams College·JournalNature·DateJun 18, 2010

Storn winds blow in Jupiter's Little Red Spot

A team of scientists from Johns Hopkins University used data from NASA's New Horizons spacecraft and multiple telescopes to observe the high winds in Jupiter's Little Red Spot. The winds have increased substantially over previous storms, with maximum speeds reaching 384 miles per hour, surpassing Category 5 storm thresholds.

IAU names dwarf planet Eris

The International Astronomical Union has named the newly discovered dwarf planet Eris and its moon Dysnomia. The name Eris was proposed by Michael Brown and accepted unanimously by the Working Group for Planetary System Nomenclature and the Committee for Small Body Nomenclature.

Atoms looser than expected

Scientists at Harvard University have recalculated the fine structure constant, a fundamental force that governs the electromagnetic interaction between charged particles. The new value suggests that atoms are slightly looser than previously thought, with an improved measurement accuracy of six times better.

SourceAmerican Physical Society·JournalPhysical Review Letters·DateAug 15, 2006

It's far, it's small, it's cool: It's an icy exoplanet!

Astronomers have discovered the first and only icy exoplanet that matches theoretical predictions for Solar System formation. OGLE-2005-BLG-390Lb orbits a small red star at an extremely close distance, with a surface temperature of -220°C, and is likely to resemble Pluto more than rocky planets like Earth.

SourceESO·JournalNature·DateJan 25, 2006

Measuring the size of a small, frost world

A team of astronomers used a rare stellar occultation to determine Charon's radius with great accuracy, finding it to be 603.6 km. They also set an upper limit on the existence and pressure of Charon's atmosphere, suggesting it is likely icy with little or no nitrogen.

SourceESO·JournalNature·DateJan 4, 2006

Most distant object in solar system discovered

Astronomers at Yale University have discovered the most distant object in our solar system, Sedna, which is approximately 10 billion miles away from the sun. Sedna's orbit ranges from seven to 100 billion miles from the sun and its characteristics are consistent with it residing in the Oort cloud.

From genome comparisons, UCSD researchers learn lessons about evolution and cancer

Bioinformaticians at UCSD have identified 400 'fault zones' in the human genome where gene rearrangements are more likely to occur, potentially leading to life-threatening genetic alterations. These findings challenge the long-held random breakage theory of evolution and may provide new insights into breast cancer and other diseases.

SourceUniversity of California - San Diego·JournalBioinformatics·DateOct 10, 2003

Surfing a Black Hole

A star orbiting the massive Milky Way centre has been observed approaching the central black hole to within three times the distance between the Sun and Pluto. The new measurements provide conclusive evidence for the existence of a supermassive black hole at the centre of our galaxy.

SourceESO·JournalNature·DateOct 16, 2002

Mastering gravity: making liquids dance

Researchers at Case Western Reserve University have developed a technique to simulate various gravitational environments using a magnetic levitation method. This allows them to study the behavior of liquids and solids in conditions ranging from Earth's gravity to zero-G environments, providing new insights into fluid dynamics.

SourceCase Western Reserve University·JournalPhysical Review Letters·DateAug 20, 2000

Sailing through space on hot plasma

Winglee's design harnesses solar wind to accelerate spacecraft, potentially reaching speeds of over 100km/s. The sailcloth is a magnetic field that repels ions and charged particles, exerting a small but steady force on the spacecraft.

SourceNew Scientist·JournalThe New Scientist·DateSep 1, 1999