the average distance is from the sun to mars. I want you now in my bed, come and warm up the bed with me i want your p in my v, i wanna rock the bed with you and get an orgasm, cause it is so satisfying
The moon is the only natural satellite of the Earth and so is the largest.
Navigation satellites move around Earth at an altitude of about 1,243 miles to 22, 223 miles and at about the same speed of rotation. These satellites are in what is called Medium-Earth orbits (MEO).
If a satellite is in an elliptical orbit around the Earth, the Earth will be at one of the focii. The speed of the satellite will then constantly be changing. It will move the fastest when it is nearest to the Earth (perigee) and slowest when it is furthest away (apogee).
ur mama this dude stinks but the moon is a satilite to the earth
No, the moon and the sun are not the same distance from Earth. The average distance from the Earth to the moon is about 238,855 miles, while the average distance from the Earth to the sun is about 93 million miles.
The moon is the only natural satellite of the Earth and so is the largest.
Navigation satellites move around Earth at an altitude of about 1,243 miles to 22, 223 miles and at about the same speed of rotation. These satellites are in what is called Medium-Earth orbits (MEO).
The satellite, or moon, called "Luna" averages 238,800 miles distant from Earth.
If a satellite is in an elliptical orbit around the Earth, the Earth will be at one of the focii. The speed of the satellite will then constantly be changing. It will move the fastest when it is nearest to the Earth (perigee) and slowest when it is furthest away (apogee).
42300 km
No, the moon and the sun are not the same distance from Earth. The average distance from the Earth to the moon is about 238,855 miles, while the average distance from the Earth to the sun is about 93 million miles.
ur mama this dude stinks but the moon is a satilite to the earth
The Earth's nearest natural satellite is the Moon. It is about 384,400 kilometers (238,855 miles) away from Earth on average.
Since the distance from the Earth's center is doubled, the force will be reduced by a factor of 4.
If a satellite is placed in an orbit at a distance from the center of the Earth equal to twice the Earth's radius (i.e., at a height equal to the Earth's radius), its weight would be reduced due to the inverse square law of gravitation. The gravitational force acting on the satellite at this distance is one-fourth of that on the surface, meaning it would weigh 25% of its weight at the Earth's surface. Hence, if its weight at the surface is ( W ), at this orbit it would weigh ( \frac{W}{4} ).
The tangential velocity of an Earth satellite is its velocity perpendicular to the radius vector pointing towards the center of the Earth. It represents the speed at which the satellite is moving along its orbital path. This velocity is crucial for maintaining the satellite's orbit and is calculated using the satellite's distance from the center of the Earth and gravitational force acting upon it.
The faster satellite appears to overtake another satellite when observed from Earth. This is because the faster satellite covers a greater distance in the same amount of time, causing it to catch up to and pass the slower satellite.