We simply choose to orient the cameras on our satellites and deep space probes so that it appears that way to us. Technically there is no "up" in space.
Earth revolves around the sun. We can see that in the seasons, since Earth's rotational axis always points in the same direction no matter where Earth is in its orbit (actually the rotational axis rotates, too, but one rotation takes about 25,800 years).
The Moon rotates once per orbit, and has the same side of the Moon always facing the Earth. So looking at the Earth from the Moon, it's always in pretty much the same place.Because the Moon rotates at a constant speed but follows an elliptical orbit, there is a little variation; over the course of several months, the Earth would appear to "wobble" a little in the lunar "sky", and would appear to get somewhat smaller and larger as the Moon recedes from the Earth and then gets closer.
The Earth's rotation is prograde, meaning it rotates in the same direction as its orbit around the Sun. This is also known as "counterclockwise" when viewed from above the North Pole.
All meteor showers occur at the same time every year. For example, the Leonids are always in November and the Perseids are always in August. The same applies to all of the other meteor showers. This is because Earth takes the same path on its orbit each year, and so it passes through the same regions in space where the meteor showers happen.All meteor showers occur at the same time every year. For example, the Leonids are always in November and the Perseids are always in August. The same applies to all of the other meteor showers. This is because Earth takes the same path on its orbit each year, and so it passes through the same regions in space where the meteor showers happen.All meteor showers occur at the same time every year. For example, the Leonids are always in November and the Perseids are always in August. The same applies to all of the other meteor showers. This is because Earth takes the same path on its orbit each year, and so it passes through the same regions in space where the meteor showers happen.All meteor showers occur at the same time every year. For example, the Leonids are always in November and the Perseids are always in August. The same applies to all of the other meteor showers. This is because Earth takes the same path on its orbit each year, and so it passes through the same regions in space where the meteor showers happen.All meteor showers occur at the same time every year. For example, the Leonids are always in November and the Perseids are always in August. The same applies to all of the other meteor showers. This is because Earth takes the same path on its orbit each year, and so it passes through the same regions in space where the meteor showers happen.All meteor showers occur at the same time every year. For example, the Leonids are always in November and the Perseids are always in August. The same applies to all of the other meteor showers. This is because Earth takes the same path on its orbit each year, and so it passes through the same regions in space where the meteor showers happen.All meteor showers occur at the same time every year. For example, the Leonids are always in November and the Perseids are always in August. The same applies to all of the other meteor showers. This is because Earth takes the same path on its orbit each year, and so it passes through the same regions in space where the meteor showers happen.All meteor showers occur at the same time every year. For example, the Leonids are always in November and the Perseids are always in August. The same applies to all of the other meteor showers. This is because Earth takes the same path on its orbit each year, and so it passes through the same regions in space where the meteor showers happen.All meteor showers occur at the same time every year. For example, the Leonids are always in November and the Perseids are always in August. The same applies to all of the other meteor showers. This is because Earth takes the same path on its orbit each year, and so it passes through the same regions in space where the meteor showers happen.All meteor showers occur at the same time every year. For example, the Leonids are always in November and the Perseids are always in August. The same applies to all of the other meteor showers. This is because Earth takes the same path on its orbit each year, and so it passes through the same regions in space where the meteor showers happen.All meteor showers occur at the same time every year. For example, the Leonids are always in November and the Perseids are always in August. The same applies to all of the other meteor showers. This is because Earth takes the same path on its orbit each year, and so it passes through the same regions in space where the meteor showers happen.
The same way we do on Earth. (Well I do anyway) The laws of physics are no different in space.
It doesn't
Your question does not make any sense. The Earth and the Moon stay the same size and are always in Space.
Exactly the same as the ones we see the Moon go through from Earth, except that Earth does not always turn the same face to the Moon.
because the Moon always has 1/2 sunlit.
because the Moon always has 1/2 sunlit.
Earth revolves around the sun. We can see that in the seasons, since Earth's rotational axis always points in the same direction no matter where Earth is in its orbit (actually the rotational axis rotates, too, but one rotation takes about 25,800 years).
No, the location is constantly changing.
Sky
The moon rotates in the same direction as the earth, counterclockwise (anticlockwise) when viewed from above the north pole. One rotation of the moon takes the same time as one revolution around the earth, so the same side of the moon is always facing the earth.
The Moon appears a lot smaller (which it is) when viewed from the Earth.
The Moon rotates once per orbit, and has the same side of the Moon always facing the Earth. So looking at the Earth from the Moon, it's always in pretty much the same place.Because the Moon rotates at a constant speed but follows an elliptical orbit, there is a little variation; over the course of several months, the Earth would appear to "wobble" a little in the lunar "sky", and would appear to get somewhat smaller and larger as the Moon recedes from the Earth and then gets closer.
atmospheric illusion