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  2. Stopped-flow - Wikipedia

    en.wikipedia.org/wiki/Stopped-flow

    A non-ozone-producing xenon arc lamp is commonly used for most general stopped-flow experiments above 250 nm. Broad-spectrum xenon lamps are highly versatile, allowing users to select virtually any wavelength for absorbance or fluorescence studies, making them ideal for applications such as monitoring structural changes in proteins over time.

  3. Edwin Ray Guthrie - Wikipedia

    en.wikipedia.org/wiki/Edwin_Ray_Guthrie

    Edwin Ray Guthrie (/ ˈ ɡ ʌ θ r i /; January 9, 1886 – April 23, 1959), a behavioral psychologist, began his career in mathematics and philosophy in 1917. He spent most of his career at the University of Washington, where he was a full-time professor and later became an emeritus professor in psychology.

  4. Flow injection analysis - Wikipedia

    en.wikipedia.org/wiki/Flow_injection_analysis

    One can then determine the amount of an unknown material in the sample as it is proportional to the absorption spectrum given by the spectrophotometer. After moving through the detector, the sample then flows to waste. Detail of sample dispersion. When a sample is injected into the carrier stream it has the rectangular flow.

  5. Spectrophotometry - Wikipedia

    en.wikipedia.org/wiki/Spectrophotometry

    Spectrophotometry is an important technique used in many biochemical experiments that involve DNA, RNA, and protein isolation, enzyme kinetics and biochemical analyses. [16] Since samples in these applications are not readily available in large quantities, they are especially suited to be analyzed in this non-destructive technique.

  6. Phase retrieval - Wikipedia

    en.wikipedia.org/wiki/Phase_retrieval

    For a two dimensional phase retrieval problem, there is a degeneracy of solutions as () and its conjugate () have the same Fourier modulus. This leads to "image twinning" in which the phase retrieval algorithm stagnates producing an image with features of both the object and its conjugate. [3]

  7. Time-resolved spectroscopy - Wikipedia

    en.wikipedia.org/wiki/Time-resolved_spectroscopy

    In physics and physical chemistry, time-resolved spectroscopy is the study of dynamic processes in materials or chemical compounds by means of spectroscopic techniques.Most often, processes are studied after the illumination of a material occurs, but in principle, the technique can be applied to any process that leads to a change in properties of a material.

  8. Beer–Lambert law - Wikipedia

    en.wikipedia.org/wiki/Beer–Lambert_law

    The Beer–Lambert law can be applied to the analysis of a mixture by spectrophotometry, without the need for extensive pre-processing of the sample. An example is the determination of bilirubin in blood plasma samples. The spectrum of pure bilirubin is known, so the molar attenuation coefficient ε is known.

  9. Graphite furnace atomic absorption - Wikipedia

    en.wikipedia.org/wiki/Graphite_furnace_atomic...

    GFAA spectrometry instruments have the following basic features: 1. a source of light (lamp) that emits resonance line radiation; 2. an atomization chamber (graphite tube) in which the sample is vaporized; 3. a monochromator for selecting only one of the characteristic wavelengths (visible or ultraviolet) of the element of interest; 4. a detector, generally a photomultiplier tube (light ...