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Dr. Bolivar Here is then the Earth. Then I have this large sphere whose radius Mitotic: is much, much bigger than the radius of the Earth centered on Earth. That is the celestial sphere. Here is the Earth's North Pole, South Pole, the Earth's spin axis. If I extended it all the way out to celestial's sphere, it would puncture it at two points. One that is directly above the Earth's North Pole, and it's called North Celestial Pole or NCP, in short. The one that is directly above the South Pole is called South Celestial Pole. As I mentioned before, Polaris is near it now and no star close to the South Celestial Pole. These are the two important points on celestial's sphere. Then, here is the Earth's equator. The line on the celestial sphere that is directly above the Earth's equator is what we call celestial equator. For an observer that is at mid-latitudes north, like us here, this would be the observer's horizon. Remember I mentioned that last time when we discussed how I [inaudible 03:06] that we must be living on this sphere. When one travels south, one starts seeing new stars above your horizon at your current location. You can see things that are above your horizon, and you can't see anything below your horizon. An observer can see everything that is above the horizon and nothing that is below his horizon. As a result, what you see depends on where you are on the Earth because that determines the location of your horizon. If I extended that plain of the horizon all the way out to celestial's sphere, it would make a line on celestial's sphere that we call celestial horizon. Because the Earth is spinning from west to east, it looks to us that the stars are actually moving along from east to west due to this daily motion and their trajectories on celestial's sphere are parallel to the celestial equator. This would be said, I have a star located somewhere here on celestial's sphere. As the Earth spins, it will look to me that the star is moving along this circular path on celestial's sphere from east to west. Note that this circle outlining the apparent part of the star due to its daily motion is actually parallel to celestial equator.
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