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A little interesting about space life.
Dr. Rufu and Dr. Canup studied the scenario in which Neptune once, when it was young, had a typical prograde system of moons orbiting it that was similar to those of the other gas giants in our Solar System. The two authors propose that Triton may have originally been a KBO that wandered away from its home in the Kuiper Belt, only to be snared by Neptune. The interactions that resulted from the capture of Triton between retrograde moons and Neptune's original, prograde moons may have then resulted in the destruction of this orderly system, leaving in its wake only the ruthless Triton and Neptune's moons that are still around today.
and here is another
The Kuiper Belt is populated by mostly small, frigid objects, which are relics of our Solar System's formation 4.56 billion years ago. Most KBOs are primarily composed of frozen volatiles, such as water, methane, and ammonia. The Kuiper Belt is also the home of two other officially designated dwarf planets (in addition to Pluto): Haumea and Makemake. A few of our Solar System's moons, such as Saturn's Phoebe and Neptune's Triton, are also commonly thought to have been born in this distant and mysterious region.
Since the beginning of civilization, mankind has always been looking toward the stars. Perhaps this is because mankind is always looking for ways to expand his sphere of influence. In order to achieve this, it is essential that mankind to expand further out into space. Especially when mankind stepped onto the Lunar soil for the first time; the possibility of expanding further towards the stars became a true reality. Of course, that feat has not been repeated after the original 6 lunar flights. Nowadays, there is a lot of talk in various space agencies about the possibility of sending a new mission to the moon again.
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"We've found a likely solution to the long-standing problem of how Triton arrived in its peculiar orbit. In addition, this mechanism introduces a new pathway for the capture of satellites by planets that may be relevant to other objects in the Solar System," explained Dr. Craig Agnor, a researcher from the University of California, Santa Cruz, in the May 10, 2006 issue of Time Magazine.
However, Earth's Moon presents a special problem because its surface becomes increasingly hotter and hotter over the course of a day. Alas, this is especially true at latitudes where the pyroclastic deposits are located. This means that in addition to the light reflected from the lunar surface, the spectrometer also winds up measuring heat.
The new study was published in the April 3, 2014 issue of the journal Nature, and it may provide a solution to a long-standing mystery of lunar origins pertaining to why Earth and its lovely companion appear to sport virtually identical compositions.