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No, an absorption spectrum and a bright line spectrum are not the same. An absorption spectrum is produced when light is absorbed by atoms or molecules, showing dark lines at specific wavelengths. On the other hand, a bright line spectrum is produced when atoms or molecules emit light at specific wavelengths, creating bright lines in the spectrum.
A bright line spectrum refers to the pattern of distinct and bright lines of different colors that are produced when an element is excited and emits light. Each element has a unique bright line spectrum that can be used to identify the element through spectroscopy.
Dark-line spectrum is a "photo-negative" of emission spectrum. It is the gaps that appear in precisely the same location as corresponding bright lines. produced by a cool gas with a hot solid and you
In a continuous spectrum, you see every color in visible light from wavelengths around 380 nm to 780 nm. The bright light spectrum has only light at specific wavelengths, forming narrow regions of lights. This is characteristic of a particular substance, emitting these lights from its unique electron configuration. Light at specific wavelengths is emitted for different substances, but not a continuous rainbow.
A normal line is the name of the line drawn perpendicular to the surface where a light ray strikes.
Bright-line Brown-eye was created in 1758.
I have a 5 month old puppie and she can sleep with a very bright light on, my puppie will only awake really if she hears niose.. Bottom line is they don't care if it is dark or very bright as long as they are tired.
A bright-line spectrum is caused by the emission of light at specific wavelengths by excited atoms or molecules. When an atom or molecule absorbs energy, its electrons move to higher energy levels and then emit light when they return to their original energy levels, producing bright lines at specific wavelengths characteristic of the element or compound.
A laser light appears as a bright, focused beam of light that is usually a single color such as red, green, or blue. It is coherent and does not spread out like the light from a flashlight, creating a sharp and visible line across surfaces.
Emission spectra are bright-line spectra, absorption spectra are dark-line spectra. That is: an emission spectrum is a series of bright lines on a dark background. An absorption spectrum is a series of dark lines on a normal spectrum (rainbow) background.
In the laboratory in a flame test. Electrons are excited to higher energy levels and when they fall back light is emitted. The frequency (colour), v is related to the energy by Plancks equation, E=hv
specific to that element and correspond to the energy levels of the electrons transitioning between orbitals. The wavelengths in the bright-line spectrum are unique for each element, allowing scientists to identify elements based on their spectral lines.