Yes I can! I shall now do so, ignoring the effects of air resistance:
During free fall, the direction of motion doesn't change. But the speed increases, steadily
and continuously.
The amount by which the speed increases each second is called the "acceleration of gravity".
On earth, the speed is 9.8 meters per second (32.2 ft per second) greater after each second
of free fall.
termial velocity has speed direction an acceleration
The direction of velocity changes continuously during uniform circular motion. The magnitude of velocity remains constant, but its direction is constantly changing as the object moves around the circle.
The acceleration of the ball is constant during any time interval where the velocity changes. At the moment the ball has zero velocity, the acceleration is the same as it was during the time interval when the velocity was changing. This can be calculated using the formula acceleration = change in velocity / change in time.
The horizontal velocity component remains constant because there are no horizontal forces acting on the projectile (assuming no air resistance), so the velocity remains unchanged. The vertical velocity component changes due to the force of gravity, which accelerates the projectile downward, increasing its velocity as it falls.
The distance traveled by an automobile moving at a constant velocity is equal to the product of the velocity and the time traveled. This relationship assumes no changes in velocity or direction during the motion.
Felix Baumgartner set five world records during his supersonic freefall jump from the edge of space on October 14, 2012. He broke the records for the highest jump, highest manned balloon flight, longest freefall distance, highest freefall speed, and highest vertical velocity in freefall.
termial velocity has speed direction an acceleration
The fastest animal on earth is the Peregrine falcon in a hunting dive. They have been clocked at over 200mph during such stoops. This is probably the bird's terminal velocity -- perfect freefall.
The direction of velocity changes continuously during uniform circular motion. The magnitude of velocity remains constant, but its direction is constantly changing as the object moves around the circle.
The acceleration of the ball is constant during any time interval where the velocity changes. At the moment the ball has zero velocity, the acceleration is the same as it was during the time interval when the velocity was changing. This can be calculated using the formula acceleration = change in velocity / change in time.
The position, the velocity, and the acceleration.
The horizontal velocity component remains constant because there are no horizontal forces acting on the projectile (assuming no air resistance), so the velocity remains unchanged. The vertical velocity component changes due to the force of gravity, which accelerates the projectile downward, increasing its velocity as it falls.
Usually the direction of motion changes over time.
i dont know about this
The distance traveled by an automobile moving at a constant velocity is equal to the product of the velocity and the time traveled. This relationship assumes no changes in velocity or direction during the motion.
Experiencing freefall can be thrilling and exhilarating, as you feel weightless and suspended in mid-air. It often occurs when skydiving or base jumping from a high altitude, but proper training and safety equipment are crucial to ensure a safe experience. Adrenaline rush and a sense of freedom are common feelings during a freefall.
The speed of an object in circular motion remains constant while the direction of the velocity changes continuously.