Compared to the other position shown in the image, describe the energy of the ball at positions one and seven

In position one, the ball has the highest potential energy. This is because it is positioned at the highest point in the image, which means it has the greatest height and gravitational potential energy. However, the ball has the lowest kinetic energy in this position since it is momentarily at rest.

In position seven, on the other hand, the ball has the lowest potential energy. This is because it is positioned at the lowest point in the image, thus having the least height and gravitational potential energy. However, the ball has the highest kinetic energy in this position since it is moving with the maximum speed while descending.

Is a kinetic or potential energy

In position one, the ball has mostly potential energy and very little kinetic energy.

In position seven, the ball has mostly kinetic energy and very little potential energy.

At positions two and three is it kinetic energy?

At positions two and three, the ball has a combination of both kinetic and potential energy.

At position two, the ball is descending and gaining speed. Therefore, it has both potential energy (due to its height) and kinetic energy (due to its velocity).

At position three, the ball is at its lowest point in the image. It has the least potential energy since it is close to the ground. However, it has the highest kinetic energy as it is moving at its maximum speed along the horizontal direction.

Compared to the other position, shown in the image, describe the energy of the ball at position 4

In position four, the ball has a combination of potential and kinetic energy.

Compared to the other positions in the image, the ball at position four has a lower potential energy than in positions one, two, and three. This is because it is not at the highest point and has less gravitational potential energy. However, it still has some potential energy due to its height above the ground.

In terms of kinetic energy, the ball at position four has more kinetic energy than in positions one and three, but less kinetic energy than in position seven. This is because it is moving downwards and gaining speed, but not at its maximum velocity like in position seven. Therefore, it has a moderate amount of kinetic energy.

Energy blank, be created or destroyed by ordinary physical or chemical process

Energy cannot be created or destroyed by ordinary physical or chemical processes. This statement is known as the law of conservation of energy, or the first law of thermodynamics. Energy can only be converted from one form to another or transferred between systems. In any physical or chemical process, the total amount of energy remains constant. It may change from one form to another, such as potential energy to kinetic energy or energy transfer from one object to another, but the overall quantity of energy remains constant.

The concept is called the