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it is absorbed by atoms in the cool low density cloud and then remitted in all different directions as a continuous spectrum

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Does candle light have a continuous light spectrum?

No, candle light does not have a continuous light spectrum. It produces a continuous spectrum with missing colors due to absorption by the flame and emission from soot particles, resulting in a warm, orange-yellow color.


Dark lines in an absorption spectrum are called?

Dark lines in an absorption spectrum are called absorption lines. These lines correspond to wavelengths of light that have been absorbed by specific elements or molecules in the sample being analyzed. They appear as dips or gaps in the spectrum where less light is detected.


What is the difference between absorption and emission spectrum?

Emission spectrum: lines emitted from an atom.Absorption spectrum: absorbed wavelengths of a molecule.


What does the absorption spectrum show us or tell us?

The absorption spectrum shows the specific wavelengths of light that are absorbed by a material, indicating the energy levels of electrons in the substance. By analyzing the absorption spectrum, scientists can identify the chemical composition of the material and understand its electronic structure.


Why would the absorption spectrum of each element have lines in the same places as in its emission spectrum?

The absorption spectrum of an element have lines in the same places as in its emission spectrum because each line in the emission spectrum corresponds to a specific transition of electrons between energy levels. When light is absorbed by the element, electrons move from lower energy levels to higher ones, creating the same lines in the absorption spectrum as the emission spectrum. The frequencies of light absorbed and emitted are the same for a specific element, resulting in matching lines.

Related Questions

What is a dark line found in a spectrum is called?

A dark line found in a spectrum is called an absorption line. Absorption lines are created when atoms or molecules absorb specific wavelengths of light, resulting in dark lines in the spectrum where that light is missing.


What is the difference between an absorption and an emission spectrum?

Absorption spectrum is a gap in the overall spectrum. It happen when light makes an electron jump to a higher orbital and light energy is absorbed. Emission spectrum is light emitted at particular wavelengths (where the absorption spectrum gaps are). It happens when an electron falls from a higher orbital and emits light energy in doing so.


Does candle light have a continuous light spectrum?

No, candle light does not have a continuous light spectrum. It produces a continuous spectrum with missing colors due to absorption by the flame and emission from soot particles, resulting in a warm, orange-yellow color.


Is an absorption spectrum also called a bright line spectrum?

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.


What is the absorption spectrum of a given wavelength of light?

The absorption spectrum shows the wavelengths of light that are absorbed by a substance. Each substance has a unique absorption spectrum due to its molecular structure and composition. The absorption spectrum is determined by measuring the amount of light absorbed at different wavelengths.


What is meant by the absorption spectrum of a pigment?

The absorption spectrum of a pigment refers to the range of wavelengths of light that the pigment can absorb. It is typically represented graphically with absorption peaks indicating which wavelengths of light are absorbed most strongly by the pigment. The absorption spectrum is important in understanding the color of the pigment because the color we see is determined by the wavelengths of light that are not absorbed but reflected or transmitted.


How can you Distinguish absorption spectrum from emission spectrum?

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.


Dark lines in an absorption spectrum are called?

Dark lines in an absorption spectrum are called absorption lines. These lines correspond to wavelengths of light that have been absorbed by specific elements or molecules in the sample being analyzed. They appear as dips or gaps in the spectrum where less light is detected.


Why is the solar spectrum an absorption spectrum rather than an emission spectrum?

The sun has 3 layers - the photosphere, the chromosphere, the corona. Photosphere is the visible surface and gives the absorption spectrum. Chromosphere is the pinkish discharge encircling the Sun, visible only during a total eclipse. This gives the emission spectrum. Corona is the halo encircling the chromosphere. THis gives the coronal spectrum.


What is produced when light from a hot solid passes through a cooler gas?

When light from a hot solid passes through a cooler gas, absorption lines are produced in the spectrum. The cooler gas absorbs certain wavelengths of the light, creating dark lines in the spectrum where those wavelengths are missing. This phenomenon is known as absorption spectroscopy.


How absorption spectrum is obtained?

An absorption spectrum is obtained by passing light through a material and measuring the amount of light absorbed at each wavelength. The absorption spectrum shows the absorption of light by the material at different wavelengths, providing information on the electronic structure and composition of the material. This technique is commonly used in various fields such as chemistry, physics, and biology to study the properties of different substances.


How does the number of lines in the emission spectrum for an element compare with the number of lines in the absorption spectrum?

The number of lines in the emission spectrum is the same as in the absorption spectrum for a given element. The difference lies in the intensity of these lines; in emission, they represent light being emitted, while in absorption, they represent light being absorbed.