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RAW #17-February 14
RAW #17-February 14

... investigating whether a planet could host life.” It is difficult to study atmospheres around other worlds because of technology limitations. Luckily, GJ 1132 b is relatively easy to study because it is only 39 light-years away. A light-year is how scientists measure distance in space. One light-year ...
The Observer Newsletter - the TriState Astronomers
The Observer Newsletter - the TriState Astronomers

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UV Radiation in Different Stellar Systems

... assume that the most likely places to find evidence of life beyond Earth are those that have similar physical parameters to our home planet. Therefore, the main target for these kind of studies are the solar-type stars, which are similar to the Sun in mass and evolutionary state. In practical terms, ...
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A History of Astronomy, Astrophysics and Cosmology
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... layer upon layer of perfect spheres and motions of celestial bodies should be circular. The Earth was composed of the four elements of earth, air, fire and water, but there was a fifth pure element, the aether, which was the substance out of which the celestial bodies were made. This was the backgro ...
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Evolution of Stars and Galaxies

... Patterns of stars: Constellations Ancient cultures used mythology or everyday items to name constellations.  Constellations: Patterns of stars in the night sky ...
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Venus is the Roman goddess of love and beauty. She is known as

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File - Zemali Salem

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Unit Name or Identification

... 1.8 Recognize that gravity is a force that pulls all things on and near the earth toward the center of the earth. Gravity plays a major role in the formation of the planets, stars, and solar system and in determining their motions. 1.9 Describe lunar and solar eclipses, the observed moon phases, and ...
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... A) Two 1 kg balls that are 1 meter apart. B) Two bodies each with the mass of the Sun that are one light year apart. C) Two bodies each with the mass of the Earth that are 1 AU apart. D) Two 100 kg balls that are 1 km apart. E) Two bodies each with the mass of Jupiter that are 10 AU apart. 18) Which ...
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... 17) Which two bodies have the strongest attractive force between them? A) Two 1 kg balls that are 1 meter apart. B) Two bodies each with the mass of the Sun that are one light year apart. C) Two bodies each with the mass of the Earth that are 1 AU apart. D) Two bodies each with the mass of Jupiter t ...
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... 17) Which two bodies have the strongest attractive force between them? A) Two 1 kg balls that are 1 meter apart. B) Two bodies each with the mass of the Sun that are one light year apart. C) Two bodies each with the mass of the Earth that are 1 AU apart. D) Two bodies each with the mass of Jupiter t ...
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WARM-UP # 32 Which planets are the terrestrial planets and which

... meteor, meteorite, meteoroid? The Quick Trick: Oids are outside the atmosphere, ites are inside it, and meteors are in between. ...
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Geocentric model



In astronomy, the geocentric model (also known as geocentrism, or the Ptolemaic system) is a description of the cosmos where Earth is at the orbital center of all celestial bodies. This model served as the predominant cosmological system in many ancient civilizations such as ancient Greece including the noteworthy systems of Aristotle (see Aristotelian physics) and Ptolemy. As such, they believed that the Sun, Moon, stars, and naked eye planets circled Earth.Two commonly made observations supported the idea that Earth was the center of the Universe. The stars, the sun, and planets appear to revolve around Earth each day, making Earth the center of that system. The stars were thought to be on a celestial sphere, with the earth at its center, that rotated each day, using a line through the north and south pole as an axis. The stars closest to the equator appeared to rise and fall the greatest distance, but each star circled back to its rising point each day. The second observation supporting the geocentric model was that the Earth does not seem to move from the perspective of an Earth-bound observer, and that it is solid, stable, and unmoving.Ancient Roman and medieval philosophers usually combined the geocentric model with a spherical Earth. It is not the same as the older flat Earth model implied in some mythology, as was the case with the biblical and postbiblical Latin cosmology. The ancient Jewish Babylonian uranography pictured a flat Earth with a dome-shaped rigid canopy named firmament placed over it. (רקיע- rāqîa').However, the ancient Greeks believed that the motions of the planets were circular and not elliptical, a view that was not challenged in Western culture until the 17th century through the synthesis of theories by Copernicus and Kepler.The astronomical predictions of Ptolemy's geocentric model were used to prepare astrological and astronomical charts for over 1500 years. The geocentric model held sway into the early modern age, but from the late 16th century onward was gradually superseded by the heliocentric model of Copernicus, Galileo and Kepler. There was much resistance to the transition between these two theories. Christian theologians were reluctant to reject a theory that agreed with Bible passages (e.g. ""Sun, stand you still upon Gibeon"", Joshua 10:12 – King James 2000 Bible). Others felt a new, unknown theory could not subvert an accepted consensus for geocentrism.
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