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Pluto itself is a relatively large denizen of the distant Kuiper Belt, that orbits our Sun in the frigid company of a vast multitude of other bewitching and mysterious icy objects. Like other Kuiper Belt Objects (KBOs), Pluto is thought to be composed primarily of ice and rock. It is an intriguing frozen "oddball", a mere 1/6 the mass of Earth's own Moon and 1/3 its volume. Pluto also has a highly inclined, eccentric orbit that carries it from 30 to 49 Astronomical Units (AU) from our Sun. One AU is equal to the mean Earth-Sun separation of 93,000,000 miles. As a result, Pluto periodically moves towards our Sun at a distance that is closer to our Star than Neptune. Very fortunately for both Neptune and Pluto, an orbital resonance with Neptune prevents the duo from crashing into each other.



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The chaotic rotation of the moons was not the only surprise that came from the study. HST's monitoring also showed a link between the orbits of the three moons Hydra, Nix, and Styx.



and finally

The chaotic motions of the bewitching, bewildering dance of the distant moons, is not necessarily an indication that the Pluto system is trembling on the brink of falling apart. Additional observations are necessary in order to determine the future and ultimate fate of the Pluto system.

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Earth's Moon is our planet's closest neighbor in space, but it is remarkable how even neighbors can keep secrets from each other. For years, astronomers thought that Earth's Moon was barren of water and other volatile compounds, but this notion began to change in 2008, when a team of planetary scientists announced that they had discovered small quantities of water imprisoned within volcanic glass beads, that astronauts had carried back to Earth from the Apollo 13 and 17 missions to our Moon. In 2011, additional research revealed extremely tiny crystalline formations within those beads--indicating that they contained quantities of water similar to some basalts on Earth.



The crust of Earth's Moon is 43 miles thick on the near-side hemisphere, and 93 miles on the far-side. It is composed of silicon, magnesium, oxygen, calcium, aluminum, and iron. There are also trace amounts of titanium, uranium, thorium, hydrogen, and potassium.



Two French astrophysicists, proposing the new, alternative scenario explaining moon-birth, reported their findings in a paper titled: Formation of Regular Satellites from Ancient Massive Rings in the Solar System, published in the November 30, 2012 issue of the journal Science. Dr. Aurelien Crida, an astrophysicist at the University of Nice--Sophia Antipolis and the Observatory of Cote d'Azur in France, explained in the November 29, 2012 issue of Scientific American that "It's fundamentally the same process that gave birth to the Moon and to the satellites of the giant planets, and that's the spreading of rings." Dr. Crida is a co-author of the study with Dr. Sebastien Charnoz of the University of Paris--Diderot.