Its chemical energy.
Eating an apple involves converting the potential energy stored in the apple into kinetic energy that powers various processes in your body, such as digestion and metabolism. The energy obtained from consuming the apple is ultimately used as fuel for your body's functions.
chemical energy
The mechanical energy of the fallen apple would be the sum of its kinetic and potential energies. Therefore, its mechanical energy would be 5.2 (kinetic energy) + 3.5 (potential energy), which equals to 8.7 units.
When an apple falls to the ground, the apple's beginning kinetic energy and ending gravitational potential energy are both equal to each other. This transfer of energy occurs due to the conservation of energy principle, where the potential energy of the apple at the top of the fall is converted into kinetic energy as it falls to the ground.
zero
As an apple falls from a tree, its potential energy, which is stored due to its height above the ground, is converted into kinetic energy, which is the energy of motion. As it accelerates downward due to gravity, the potential energy decreases while the kinetic energy increases. When the apple reaches the ground, its kinetic energy will be at its maximum, while the potential energy will be at its minimum.
As an apple falls from a tree, its gravitational potential energy decreases while its kinetic energy increases. Initially, when the apple is at rest on the tree, it possesses high potential energy due to its height. As it falls, this potential energy is converted into kinetic energy, which is the energy of motion, causing the apple to accelerate towards the ground.
kinetic
Yes, as this equation makes it possible E=mc^2 . ------------> mass energy is different from potential energy An object has kinetic and potential energy (such as a falling apple) because commonly kinetic energy is converted to potential energy and vice versa due to conservation of energy. The sum of kinetic and potential energy needs to be taken for the total energy of the object.
When an apple falls from a tree, its potential energy decreases as it loses height and gains kinetic energy as it starts moving. The apple's total energy remains constant as it undergoes this transformation between potential and kinetic energy.
As the apple falls, its potential energy decreases while its kinetic energy increases, until it lands, at which point it has maximum potential energy.
You can increase the potential energy of an apple by raising it to a higher position, such as lifting it off the ground. The potential energy of an object increases with height because it has the potential to fall and convert that potential energy into kinetic energy as it descends.