It releases the same amount of energy that it absorbed when it was excited to a higher energy state.
An electron jumps from the ground state to an excited state when it absorbs energy, typically in the form of a photon. This causes the electron to move to a higher energy level, creating an excited state. When the electron later falls back to the ground state, it releases the absorbed energy in the form of a photon.
Lots of wrong answers out there, tested this on school, the answer is: Drops from a higher to a lower energy level
When an elctron is excited (has energy) it is extremely unstable, so it falls back to its previous energy level, and when it does this it releases energy, and this energy is viewed as wavelengths of light. So the color depends on the amount of energy the atom releases when it falls back to its lower energy level.
When a ball is about to fall it has potential energy because of its height.When a ball is about to hit the ground it still has some potential energy since it has't hit the ground yet, but much less than it had when it started falling.
When an object falls and touches the ground, its kinetic energy is converted into potential energy and other forms of energy, such as sound and heat. The potential energy is stored in the object as it is lifted back up, ready to be converted back to kinetic energy as it falls again.
Whenever the electron falls from an excited state to a lower level, energy is released in the form of electromagnetic radiation. The Electromagnetic radiation can be light of different wavelengths and therefore different colors
An electron jumps from the ground state to an excited state when it absorbs energy, typically in the form of a photon. This causes the electron to move to a higher energy level, creating an excited state. When the electron later falls back to the ground state, it releases the absorbed energy in the form of a photon.
Lots of wrong answers out there, tested this on school, the answer is: Drops from a higher to a lower energy level
The energy that is lost when an electron falls to a lower state is emitted as a photon of light. This process is known as photon emission, and the energy of the emitted photon corresponds to the energy difference between the initial and final states of the electron.
When an electron falls from n4 to n1, it releases more energy because it is transitioning between high energy states. This higher energy transition corresponds to a shorter wavelength of light being emitted, according to the energy of the photon being inversely proportional to its wavelength. In contrast, when an electron falls from n2 to n1, the energy released is less, resulting in a longer wavelength of light emitted.
It falls back to its ground state, emitting light of a particular wavelength and color.
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When an electron falls from a higher energy level to a lower energy level, the energy it was carrying is released in the form of a photon. The energy of the photon is equal to the difference in energy between the two levels. This released energy can be observed as light emission in the visible or invisible spectra, depending on the specific energy levels involved.
Shorter wavelength = more energy. The farther the electron falls, the more energy that will be emitted.
When a walnut falls, potential energy is converted to kinetic energy. The potential energy comes from the height of the walnut above the ground, while the kinetic energy is the energy of motion as the walnut falls towards the ground.
The ball has potential energy just before it is released, which is due to its height above the ground. This potential energy can be converted into kinetic energy as the ball falls and gains speed.
when the rock falls it gain kinetic energy when it falls.