No, it has the speed of the spinning earth.
An object that is stationary relative to Earth's surface is moving fastest relative to space at the Equator. This is because the Earth's rotation speed is greatest at the Equator, providing the highest linear velocity for an object on the Earth's surface.
The force of gravity acting on an object when it is sitting on the Earth is simply referred to as the object's weight. This force is what keeps the object anchored to the surface of the Earth.
An object sitting on the ground at sea level has gravitational potential energy due to its position relative to the Earth's surface. This potential energy is determined by the height of the object above the ground and its mass, which gives it the potential to be transformed into kinetic energy if the object falls.
Objects that are "stationary" on Earth's surface are moving faster nearer the equator. The eastward motion of the rotating Earth is greatest at the equator (about 1037 mph or 1670 kph).
Moving relative to Earth means that an object is changing its position in relation to Earth's surface. This movement can be in any direction and at various speeds, depending on the reference frame of Earth's rotation and revolution.
Objects that are "stationary" on Earth's surface are moving faster nearer the equator. The eastward motion of the rotating Earth is greatest at the equator (about 1037 mph or 1670 kph).
The velocity parallel to Earth's surface depends on the frame of reference. Relative to Earth's surface, the velocity is zero if an object is at rest, and it varies depending on the direction and speed of the object's movement. If we consider the rotation of the Earth, objects on the surface have an eastward velocity due to the planet's rotation.
The acceleration of gravity ... and therefor the weight of any object ... on thesurface of Mercury is 37.698% of its value on the surface of Earth. (rounded)
The weight and height of an object on Earth give it gravitational potential energy. This type of potential energy is based on the object's position in a gravitational field relative to the surface of the Earth.
The relative concentration of elements on lunar surface compared to earth's surface is known as regolith.
As an object approaches the Earth's surface, what will its acceleration be?
An object is in motion if it changes position relative to a reference point. Motion is a relative quantity and is expressed in respect to the position of another object. Example: both a car and the Earth are moving (earth is revolving around the sun) but if we express the motion of the car in respect to the Earth, we say the car is moving relative to the Earth. At the same time the earth is moving relative to the sun.