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Interesting facts about space.

Although the moon appears to be changing according to the lunar phases, it is not literally changing. It was the amount of light it reflects that is constantly altering. The moon always remains the same and the light does not affect the shape of the moon, in any ways. In fact, it has has no power of light and it receives all the light from the Sun. Most people are unaware of this that they thought it is capable of glowing and beautifully bright. As a matter of fact, the moon is one mysterious yet very enchanting object.



and here is another

To make the flag stand still on the moon, the flag was actually made from plastic material, similar to the one that tents are usually made of. For practical reasons, the flag was originally folded to maximize space and stored in a thin tube. After Neil Armstrong planted it to the surface of the Moon, it briefly appeared to move as it was unfolding itself to its final shape.



and finally

Earth's Moon is the fifth largest moon in our entire Solar System, as well as the only world beyond our planet that we have visited. Our lunar companion is the largest and brightest object in the sky at night, and many astronomers think that it was born when the tragedy that was the pulverized Theia blasted into ancient Earth billions of years ago. There are other theories, however, that seek to explain how our Moon came to be. Nevertheless, the Giant Impact theory stands its ground as the most credible explanation for lunar birth. When the doomed, destroyed Theia impacted Earth, it shot debris above our planet. This abundant debris eventually coalesced to form our Moon.

Other facts:

Over the passage of billions of years, this ceaseless rain of falling objects have pulverized the lunar surface, creating fragments ranging in size from a fine powder to enormous, heavy boulders. Almost the entire lunar surface is literally blanketed by a pile of ground up rubble composed of charcoal gray, powdery dust and rocky debris collectively termed the lunar regolith. Beneath the regolith there is a region composed of shattered bedrock that is called the megaregolith.



The astronomer Tycho Brahe, during the 17th century, measured the diurnal parallax of Mars that Johannes Kepler had used in order to make a preliminary calculation of the relative distance to the Red Planet. When the earliest telescopes to be used for astronomical purposes finally became available, the diurnal parallax of Mars was measured again in an attempt to determine the distance between our Sun and Earth. Giovanni Domenico Cassini was the first to make this measurement in 1692--but the early parallax measurements were hindered by the primitive quality of the instruments. The only occultation of Mars by the planet Venus was observed on October 13, 1590, by Michael Maestlin at Heidelberg. In 1610, Mars was viewed by the great astronomer Galileo Galilei, who was the first to make use of a primitive telescope for astronomical purposes. The Dutch astronomer Christiaan Huygens was the first to draw a map of Mars that showed terrain features.



To help solve this mystery, Dr. Jacobson and his team devised supercomputer simulations of the growth of our Solar System's inner quartet of rocky, terrestrial planets out of the protoplanetary accretion disk swirling around our young Sun, from which the planetary building blocks, the planetesimals, eventually formed.