The speed of a satellite orbiting Earth primarily depends on its altitude and the gravitational pull of the Earth. According to Kepler's laws of planetary motion, a satellite in a lower orbit must travel faster to counteract the stronger gravitational force compared to one in a higher orbit. The relationship can be expressed using the formula for orbital speed, which shows that speed decreases as altitude increases. Additionally, the mass of the Earth affects this gravitational force, but it remains constant for all satellites orbiting the planet.
The curved path that a satellite follows is called an orbit. This trajectory is influenced by the gravitational pull of the body it is orbiting, such as a planet or moon. Orbits can be circular or elliptical, depending on the satellite's speed and altitude.
The greater the altitude, the lower the air pressure.
If something is in orbit it's orbital speed is independent of its mass. Be it a gram or a tonne, it's speed depends only on its orbit; if it had a different speed it would be in a different orbit ( or none at all).
Yes, altitude can affect specific gravity and density due to variations in atmospheric pressure. As altitude increases, atmospheric pressure decreases, leading to a decrease in density and specific gravity of gases and substances. This is important to consider when measuring and calculating these properties at different elevations.
The speed of a satellite orbiting Earth primarily depends on its altitude and the gravitational pull of the Earth. According to Kepler's laws of planetary motion, a satellite in a lower orbit must travel faster to counteract the stronger gravitational force compared to one in a higher orbit. The relationship can be expressed using the formula for orbital speed, which shows that speed decreases as altitude increases. Additionally, the mass of the Earth affects this gravitational force, but it remains constant for all satellites orbiting the planet.
It varies greatly. It will depend on how far away it is from the object it's orbiting. If it is in a circular orbit around the Earth, its speed can be calculated by the formula: speed = Squareroot(398600/(6371+altitude)) This will give you an answer in kilometers per second.
The altitude at which an aircraft is travelling does affect its speed because the thinner atmosphere causes less aerodynamic drag.
870 km is its altitude according to NASA (answred bt divyansh tiwari)
If a person is on pacemaker how will high altitude affect him?
how does is wind speed affected by altitude
No.
High Altitude - 2009 Speed is rated/received certificates of: Australia:G
The radius of an orbit is directly related to the average speed of the orbiting body. As the radius of the orbit increases, the average speed of the orbiting body decreases. This is because at a larger distance from the center of mass, the gravitational force decreases, requiring a lower speed to maintain the orbit.
The curved path that a satellite follows is called an orbit. This trajectory is influenced by the gravitational pull of the body it is orbiting, such as a planet or moon. Orbits can be circular or elliptical, depending on the satellite's speed and altitude.
The change in pressure is highly affected by altitude.
Yes, the speed of sound does change with altitude. In general, the speed of sound increases with higher altitudes due to the decrease in air density.