The Bowling ball would have the least gravitational potential energy when lifted to a height of 1 m on the moon, as the moon has less gravitational pull compared to Earth. This means that the gravitational potential energy of the ball is lower on the moon than on Earth when lifted to the same height.
You can make the bowling ball and soccer ball have the same gravitational potential energy by lifting them to the same height above the ground. Gravitational potential energy depends on the mass of the object and the height it is lifted, so as long as both balls are lifted to the same height, they will have the same gravitational potential energy.
Gravitational potential energy is proportional to the object's height and its mass. So if the car has more mass than the bowling ball has, then it also has more gravitational potential energy.
Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.
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.
Gravitational potential energy - it depends on the distance from the centre of gravity, so on Earth it depends on the height above the Earth's surface
You can make the bowling ball and soccer ball have the same gravitational potential energy by lifting them to the same height above the ground. Gravitational potential energy depends on the mass of the object and the height it is lifted, so as long as both balls are lifted to the same height, they will have the same gravitational potential energy.
Gravitational potential energy is proportional to the object's height and its mass. So if the car has more mass than the bowling ball has, then it also has more gravitational potential energy.
Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.
The most massive one. That's PROBABLY the bowling ball.
Height 'h', increases the gravitational potential energy E = - mGm/h.
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.
Gravitational potential energy - it depends on the distance from the centre of gravity, so on Earth it depends on the height above the Earth's surface
The gravitational potential energy of an object is directly proportional to both its mass and height above the reference point. As the mass of the object increases, so does its gravitational potential energy. Similarly, as the height of the object increases, its gravitational potential energy also increases.
Potential energy is related to an object's height, specifically gravitational potential energy. This type of energy increases with an object's height above the ground and is a measure of the work that can be done by gravity as the object falls.
Well gravitational potential energy is potential energy that depends on the height of an object so an object would have gravitational potential energy when ever it's of the ground or at a high height (it doesn't have to be very high) for example if you lift up a ball it has the potential to fall or if your climbing a mountain you have gravitational potential energy.
Yes, as volume or height increases, gravitational potential energy also increases. Gravitational potential energy is directly proportional to both height and mass, so an increase in either will result in an increase in potential energy.
If you double the height of an object, its gravitational potential energy will also double. Gravitational potential energy is directly proportional to the height of an object above a reference point.