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A little interesting about space life.
If the authors' proposal is correct, then it successfully explains why Neptune's moon system looks so strange compared to Jupiter's or Saturn's--which means that astronomers' models of how these primordial systems form around gaseous giant worlds still hold strong.
and here is another
Moon jellies are the easiest jellyfish to keep alive in captivity. This is because of their diversity in nature. Moon jellies can be found in almost every ocean in the world. Their natural habitat stretches from the equator as far north as 70 latitude and as far south as 40 in every ocean that falls within those geographic parameters.
They are prominent in the shallow coastal waters of estuaries and harbors which explains their abundance in what is still an infant branch within the larger saltwater aquarium trade industry. Because they are common in both temperate and tropical waters, they can tolerate temperature ranges anywhere between 42-88 F (6-31 C). Although they can survive in brackish water, a salinity level (specific gravity) of 1.023 will mimic their native marine environment.
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Lack of Stars. Another famous argument for the moon landing hoax is a total lack of stars in the photographic and video evidence - even in the photos and videos of high quality. Here on Earth, when there's a black sky, there is always a lot of stars, so the videos must have been shot on a film stage. Right? Not so fast...
In order to spot such a remote exomoon, the authors of this new study, The Hunt for Exomoons with Kepler (HEK): III. The First Search for an Exomoon around a Habitable-Zone Planet, used a technique that models the dips and features of the parent star's light-curve (stellar brightness vs. time), which are caused by transits of the planet (and any accompanying moons) in front of the face of its star. This is a complicated and difficult endeavor because numerous and diverse models of planet-moon dynamics must be taken into consideration. Each one of these models possesses parameters that describe physical properties belonging to the planet or moon, as well as parameters describing the orbital system. The authors use what is termed Bayesian statistics to account for the fact that the true orbital model of this planetary system is still not known--and this enables them to calculate if a model with our without a moon fits the observed light-curve the best.
In 2006, NASA dispatched the New Horizons spacecraft to visit the outer limits of our Solar System--the Kuiper Belt where the dwarf planet Pluto dwells, along with trillions of icy comets, and a multitude of other larger icy bodies--and where it is thought that the adopted moon Triton was born. The spacecraft will reach this mysterious and unexplored region in July 2015, when it flies by the icy dwarf planet and its moons--including the large moon Charon. New Horizons will shed light on the weird worlds and bizarre objects dwelling in the outskirts of our Solar System.