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It covers a range of techniques, mostly based on absorption spectroscopy.
In atomic absorption spectroscopy, light is passed through a collection of atoms.
It is also a strong addition to the more commonly used absorption spectroscopy, and there are two reasons that explain this.
Absorption spectroscopy is also employed in the study of extrasolar planets.
It may also be utilized to improve accuracy in atomic absorption spectroscopy.
Standard addition is frequently used in atomic absorption spectroscopy and gas chromatography.
Direct absorption spectroscopy involves shining the light on the sample and looking for missing photons.
A common and simple method for determining whether a band gap is direct or indirect uses absorption spectroscopy.
Like in the radio range, absorption spectroscopy is used to stabilize an oscillator-in this case a laser.
Absorption spectroscopy allows the study of samples that are thermodynamically stable at room temperature.
Absorption spectroscopy is performed across the electromagnetic spectrum.
Absorption spectroscopy is useful in chemical analysis because of its specificity and its quantitative nature.
Absorption spectroscopy has been particularly important for understanding interstellar clouds and determining that some of them contain molecules.
Rev. were devoted to x-ray absorption spectroscopy and most invoked Kronig's theory.
For example, Atomic absorption spectroscopy is used to identify alloys of gold, bronze and copper.
Raman and direct absorption spectroscopy are often complementary.
Cavity ring down spectroscopy is a form of laser absorption spectroscopy.
These weak continua, as they were described, allowed the first Raman absorption spectroscopy measurements to be made.
To determine these it is necessary to use a slower method such as atomic absorption spectroscopy or neutron activation.
For absorption spectroscopy we need a light source as well as the sample, dispersing element and detector.
The method of Fourier transform spectroscopy can also be used for absorption spectroscopy.
In general, the goal of absorption spectroscopy is to measure how well a sample absorbs or transmits light at each different wavelength.
The slope spectroscopy technique can be applied using the same methods as in absorption spectroscopy.
A complementary technique is absorption spectroscopy.
His measuring device, which used thermopile technology, is an early landmark in the history of absorption spectroscopy of gases.