No. "Uniform motion" means motion at a constant speed in a straight line. But
the speed of a body falling freely to the ground is continuously increasing, in
response to the force of gravity.
The motion of an apple falling from a tree is an example of non-uniform motion. This is because the speed of the apple changes as it falls due to the acceleration of gravity acting on it.
Yes, when an object falls freely due to gravity, its acceleration is uniform and equal to 9.8 m/s^2, directed towards the center of the Earth. This uniform acceleration is the result of the gravitational force acting on the object and is independent of the object's mass.
The forward motion (when you throw it) and the design of the craft - creates lift under the wing. As the forward motion slows, the aircraft falls to the ground.
It is the third law of motion because it has to do with action reaction things. Tennis ball hitting the net is the action, and it falling to the ground is the reaction. I hope this helped.
When a walnut falls, potential energy is converted to kinetic energy. The potential energy comes from the height of the walnut above the ground, while the kinetic energy is the energy of motion as the walnut falls towards the ground.
Acceleration due to gravity is the constant rate at which an object falls towards the Earth, which is approximately 9.81 m/s^2. Uniform accelerated motion refers to an object moving with a constant acceleration, such as a car increasing its speed by a fixed amount every second.
A freely falling body exhibits uniform acceleration motion due to the force of gravity acting on it. This means that the body's speed increases by the same amount every second as it falls towards the Earth.
No, the density of a rock does not increase as it falls to the ground. Density is a measure of mass per unit volume, and while the rock may experience changes in pressure as it falls, its mass and volume remain constant. Therefore, the density remains unchanged regardless of its motion.
As the coin falls, it loses potential energy and gains kinetic energy. Kinetic energy is the energy an object possesses due to its motion.
As the penny falls toward the ground, potential energy is converted to kinetic energy. Potential energy is stored energy based on an object's position or shape, while kinetic energy is the energy of motion.
As an object falls to the ground, its potential energy decreases while its kinetic energy increases. This is because the object is converting its potential energy (due to its initial height) into kinetic energy (due to its motion). At the point of impact with the ground, all the initial potential energy is converted into kinetic energy.
The motion of the picture doesn't change because gravity acts uniformly on all parts of the picture at the same rate, causing it to fall downward without altering its overall motion. This uniform acceleration due to gravity ensures that all parts of the picture move together, maintaining its orientation and motion as it falls.