Solar Star-Forming Nebula astronomy photo of the day 111818 the tadpole nebula Star-Forming Nebula Solar

Solar Star Forming Nebula astronomy photo of the day 111818 the tadpole nebula Star Forming Nebula Solar

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It is important to know at any age!

From ancient times, through the transparent areas of the moon's crust the people of the moon had seen a beautiful planet like object in the sky. This was our earth. They believed that it was heaven (meaning "pleasure place" in their language)... the place that they will be born in after their death. This heaven was visible only from certain cities of the moon. The entire moon population was aware of this heaven from their school education and also from reports by people who had seen it. Like certain religious pilgrimages on earth, part of the purpose of the "moon people's continuous movement habit" was to observe this heaven during their lifetime. Most people had seen the heaven when they arrived at cities from which it was visible. However, it should be understood that the primary purpose of the movement habit was not to satisfy a need to see the heaven. The primary purpose of the habitual journeying was really not known. Whenever the moon people approached a place from where they could see this beautiful heaven in space for the first time, they had the background knowledge that getting to heaven was an event that would take place at the end of their lifetimes. They were therefore very excited and overwhelmed by it. However, when they actually got to look at the object which was heaven they would glare at it for long hours without blinking as it was so utterly beautiful and enjoyable to look at - like a glowing blue colored gem hanging by itself. Just looking at it gave them a sense of deep fulfillment.

and here is another

Neptune is circled by only 14 moons, a considerably smaller number than Jupiter's 70. Also, most of Neptune's moons are extremely small. Triton, however, is an exception. In fact, Triton harbors 99.7% of the mass of Neptune's entire system of moons combined. The second-largest irregular moon in our Solar System, Phoebe of Saturn, sports only about 0.03% of Triton's mass. It is thought that Triton was snared by its adopted parent-planet some time after Neptune had already formed a system of moons. This means that the capture of the wandering Triton was likely a catastrophic event for Neptune's original moons, disrupting their orbits, and causing them to blast into each other--thus creating a rubble disc.

and finally

Soon after it had been snared by Neptune, Triton's orbit was highly eccentric. This indicates that Triton's capture would have caused a mess of chaotic perturbations in the orbits of the original inner moons of Neptune--thus causing them to crash into one another, producing a disk of rubble created from these catastrophic smash-ups. For this reason, it is probable that Neptune's current inner moons are not the original generation of moons that formed along with Neptune.

Other facts:

When these photos were taken, it was full daylight on the Moon. Because there is only an extremely thin atmosphere on the Moon,the sky appears black. In addition, sunlight at the Moon's surface was incomparably strong with the starlight; the stars simply faded in comparison with the sun. If the astronauts used sufficiently long exposures, stars would, indeed, be visible.

The prevailing theory of lunar formation--the Giant Impact hypothesis--proposes that our Moon was born as the result of a disastrous collision between our still-forming proto-Earth and a doomed Mars-sized body named Theia--and this impact is thought to have created a partially vaporized, extremely hot disk of material that swirled around our infant planet. Eventually, this primordial disk cooled off, and ultimately accreted to form our Moon. In February 2018, a team of astronomers announced that their ongoing research is revealing that Earth's Moon may be wetter than initially thought, which raises important questions about some aspects of this origin story.

JAXA has announced a space mission scheduled to begin in 2022, with an expected return to Earth in 2026. "Its objective is to carry out close-up remote sensing and in-situ observations of both Phobos and Deimos, and to bring back samples from Phobos," commented Dr. Ryuki Hyodo in the July 4, 2016 CNRS Press Release. Dr. Hyodo is a planetary scientist, originally from Kobe University in Japan, and he is also currently collaborating with the IPG. "High-resolution impact simulations are still needed to understand more about the disk structure," he continued to explain to the press.