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The transition from energy level 4 to energy level 2 occurs when a hydrogen atom emits light of 486 nm wavelength. This transition represents the movement of an electron from a higher energy level (n=4) to a lower energy level (n=2), releasing energy in the form of light.

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What is the ratio of maximum to minimum wavelength of lyman series?

The Lyman series corresponds to electronic transitions in hydrogen where the electron falls to the n=1 energy level. The maximum wavelength occurs when the transition is from n=2 (the first level above n=1), yielding a wavelength of approximately 121.6 nm. The minimum wavelength occurs when the transition is from n approaching infinity, resulting in a wavelength of 0.1 nm (or less). Therefore, the ratio of maximum to minimum wavelength for the Lyman series is about 1216:0.1 or 12160:1.


How can you calculate the frequency of a photon emitted by hydrogen atom given the energy level transition that happens?

To calculate the frequency of the light emitted when an electron in a hydrogen atom makes a transition, simply use change in E = (-2.18*10^-18 J)[1/(nf)^2 - 1/(ni)^2]. Then convert the energy E to frequency using f = E/h where h is Planck's constant 6.626*10^-34 J*s.


What element emits a red light when an electron transition occures?

The element that emits red light when an electron transition occurs is typically hydrogen. This is due to the visible light spectrum associated with the specific energy levels in the hydrogen atom that produce red light when electrons move between them.


Emission of light from an atom occurs when the electron?

Lots of wrong answers out there, tested this on school, the answer is: Drops from a higher to a lower energy level


If transition occurs from n 4 to n 1 how many spectral lines are emmited?

If the transition is directly from level 4 to level 1, a single photon - in a single frequency - is emitted. However, it is also possible that an electron falls first from level 4 to level 3, and then from level 3 to level 1, for example. In this case, more than one photon - of different frequencies - can be emitted.


How does the electron configuration of an atom relate to the amount of light emitted during an energy releasing event?

The brighter the light the more energy is being released, which may alter the arrangement and quantity of electrons in the outer shells within an atom's electron configuration. Dr. Koehler


One indicator that electrons in atoms are limited to specific energy levels is that?

light emitted from excited atoms occurs only at specific wavelengths


Which refers to the change and wavelength that occurs when an object moves forward or away from the source?

Doppler effect refers to the change in wavelength and frequency that occurs when an object moves towards or away from a source of waves.


What occurs as the wavelength of a photon increases?

As the wavelength of a photon increases, its frequency decreases. This means the energy of the photon decreases as well, since photon energy is inversely proportional to its wavelength.


Which refers to the change in wavelength tht occurs when an object moves toward or away from a source?

Doppler effect refers to the change in wavelength that occurs when an object moves toward or away from a source.


Hydrogen bonding occurs in molecules where hydrogen is bonded to what elements fluorine carbon oxygen nitrogen hydrogen boron?

the hydrogen bonding is possible in oxygen, nitrogen,and fluorine


Which layer of the sun produces energy?

The core of the sun is where nuclear fusion occurs, producing energy through the conversion of hydrogen into helium. This energy is then transferred through the radiative zone and the convective zone to the sun's surface, where it is emitted as sunlight.