Lowest potential energy refers to a state where an object is at its most stable point in a gravitational field, typically at its lowest height or position. This is the point at which an object has the least amount of stored energy due to its position relative to the Earth's surface.
During one rise and fall of the ball, the gravitational potential energy and kinetic energy are equal two times: at the highest point (when all energy is potential) and at the lowest point (when all energy is kinetic).
Potential energy is at its lowest when an object is at its lowest point in a system, such as the ground level. This is because potential energy is the energy stored in an object due to its position in a force field, and the lowest point represents the minimum level of stored energy.
the pendulums gravitational energy refers to the gravitational energy of the bob (the string is considered to be mass less) the energy calculated for practical purposes is considering the mean position of the pendulum as the state of zero energy. but aesthetically the gravitational (potential) energy of a body only depends on its distance from the centre of the earth. the energy is equal to (gravitational constant(G))*(mass of earth)*(mass of bob) /(distance of bob from earths centre)
The planet with the least gravitational potential energy when a 30kg bowling ball is lifted to a height of 1m would be the planet with the lowest surface gravity. As an approximation, if we consider only the eight planets in our solar system, Mercury has the lowest surface gravity, followed by Mars. So, if you were to drop a 30kg bowling ball from a height of 1m on either Mercury or Mars, it would have the least gravitational potential energy relative to the other planets.
Whenever it is at its lowest position.
Lowest potential energy refers to a state where an object is at its most stable point in a gravitational field, typically at its lowest height or position. This is the point at which an object has the least amount of stored energy due to its position relative to the Earth's surface.
At the tallest point on the track. Potential energy is given by U(Which is potential energy) = mass times height time gravitational constant. You can't change the gravitational constant, or the mass of the roller coaster car. So you have to change the height. PE=mgh so more the height and the mass the more PE
A pendulum is fastest at the lowest point of its swing, where its kinetic energy is maximum. At this point, all the potential energy has been converted into kinetic energy, resulting in the highest speed of the pendulum.
During one rise and fall of the ball, the gravitational potential energy and kinetic energy are equal two times: at the highest point (when all energy is potential) and at the lowest point (when all energy is kinetic).
When a bungee cord is stretched, potential energy is stored in the cord as it deforms. As the jumper falls, gravitational potential energy is converted into kinetic energy until the lowest point of the jump, where the cord reaches its maximum stretch. As the cord begins to retract, this stored elastic potential energy is converted back into kinetic energy, propelling the jumper upward. Ultimately, energy is transformed between gravitational potential energy, kinetic energy, and elastic potential energy throughout the jump.
Potential energy is at its lowest when an object is at its lowest point in a system, such as the ground level. This is because potential energy is the energy stored in an object due to its position in a force field, and the lowest point represents the minimum level of stored energy.
the pendulums gravitational energy refers to the gravitational energy of the bob (the string is considered to be mass less) the energy calculated for practical purposes is considering the mean position of the pendulum as the state of zero energy. but aesthetically the gravitational (potential) energy of a body only depends on its distance from the centre of the earth. the energy is equal to (gravitational constant(G))*(mass of earth)*(mass of bob) /(distance of bob from earths centre)
The planet with the least gravitational potential energy when a 30kg bowling ball is lifted to a height of 1m would be the planet with the lowest surface gravity. As an approximation, if we consider only the eight planets in our solar system, Mercury has the lowest surface gravity, followed by Mars. So, if you were to drop a 30kg bowling ball from a height of 1m on either Mercury or Mars, it would have the least gravitational potential energy relative to the other planets.
potential energy changes to kinetic energy
Potential energy is 0 at its reference point or when the object is at its lowest point.
The pendulum's potential energy is highest at the highest point of its swing and lowest at the lowest point. As the pendulum swings, potential energy is converted to kinetic energy and back again.