If the height from which the ball is thrown is increased, the time of flight of the ball would increase as well. This is because the initial velocity of the ball would be higher, leading to a longer time for the ball to reach the ground.
If the projectile is thrown with a greater velocity, it would travel further and potentially reach a higher peak height. The increased velocity would also result in a shorter flight time and the projectile hitting the ground with a greater impact force.
Yes, both the paper and coin will hit the ground at the same time when thrown from the same height in the absence of air resistance, as they are both subject to the force of gravity. This is known as the principle of equivalence in free-fall.
The potential energy of the orange increases as its height increases when thrown up into the air. This is because the orange gains potential energy due to its vertical position relative to the ground, which is converted from its initial kinetic energy (motion) when it was thrown.
The speed of a ball thrown upward upon striking the ground will be the same as the speed at which it was thrown, but in the opposite direction. The speed of a ball thrown downward upon striking the ground will be faster than the speed at which it was thrown due to the acceleration from gravity.
False, provided the drop occurs no sooner than the throw, and the ground is flat .
If the projectile is thrown with a greater velocity, it would travel further and potentially reach a higher peak height. The increased velocity would also result in a shorter flight time and the projectile hitting the ground with a greater impact force.
An object thrown vertically up wards from the ground returned back to the ground in 6s after it was thown up if it reached a height of 12m calculate?
Yes, both the paper and coin will hit the ground at the same time when thrown from the same height in the absence of air resistance, as they are both subject to the force of gravity. This is known as the principle of equivalence in free-fall.
They might seem like they have the same flight patterns, but they don't. A 12-6 curveball thrown by an over-hander will go from 12 to 6, but if the same is thrown by a 3/4 or side-armer, the ball will react a little more like a slider.
The potential energy of the orange increases as its height increases when thrown up into the air. This is because the orange gains potential energy due to its vertical position relative to the ground, which is converted from its initial kinetic energy (motion) when it was thrown.
The height, in feet, above the ground at time t, H(t) = 40 + 32*t - 16*t2
The speed of a ball thrown upward upon striking the ground will be the same as the speed at which it was thrown, but in the opposite direction. The speed of a ball thrown downward upon striking the ground will be faster than the speed at which it was thrown due to the acceleration from gravity.
False, provided the drop occurs no sooner than the throw, and the ground is flat .
They are called lava bombs they are chunks of semi molten rock thrown up from the volcano and then falling from a great height. When they hit the ground they have the shape of a bomb.
As a ball is thrown into the air, its potential energy increases with height. This is because as the ball moves higher, it gains gravitational potential energy due to its increased distance from the ground.
At any time 't' seconds after the ball is released,until it hits the ground,h = 5 + 48 t - 16.1 t2
1000000 m