5 edition of Fluorescence analysis found in the catalog.
White, Charles Edward
|Statement||[by] Charles E. White and Robert J. Argauer.|
|Contributions||Argauer, Robert J., joint author.|
|LC Classifications||QD117.F5 W45|
|The Physical Object|
|Pagination||x, 389 p.|
|Number of Pages||389|
|LC Control Number||70127029|
The purpose of this book is to review the state of the art of x-ray fluorescence analysis and to describe recent progress for wavelength- and energy-dispersive x-ray fluorescence, electron and heavy charged-particle-induced x-ray emission, quantification, and sample preparation methods. The book explores the advantages of fluorophores, fluorescent labels, sensor and assay construction, metal-enhanced fluorescence, phosphorescent labels, and lab-on-a-chip applications. It also describes new anion-selective fluorescent .
How fluorescence microscopy works. Understand advantages of fluorescence microscopy compared to brightfield, the differences between magnification and resolution, and how using fluorescence can help increase resolution. The XRF method depends on fundamental principles that are common to several other instrumental methods involving interactions between electron beams and x-rays with samples, including: X-ray spectroscopy (e.g., SEM - EDS), X-ray diffraction (), and wavelength dispersive spectroscopy (microprobe WDS). The analysis of major and trace elements in .
Fluorescence spectroscopy and related techniques have become important tools for the analytical chemist, particularly in drug analysis and the measurement of environmental pollutants. Although fluorescence spectrometers have been commercially available for nearly thirty years, the past decade has seen a great diversification of applications as. X-Ray fluorescence analysis is an established technique for non-destructive elemental materials analysis. This book gives a user-oriented practical guidance to the application of this method. The book gives a survey of the theoretical fundamentals, analytical instrumentation, software for data Price: $
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X-Ray?uorescence analysis (XRF) has developed into a well-established multi-elemental analysis technique with a very wide?eld of practical app- cations, especially those requiring nondestructive analytical methods.
Over a long period of time, steady progress of XRF was made, both methodological and instrumental. Within the last decade, however, Reviews: 1. X-ray fluorescence (XRF) is the emission of characteristic "secondary" (or fluorescent) X-rays from a material that has been excited by being bombarded with high-energy X-rays or gamma phenomenon is widely used for elemental analysis and chemical analysis, particularly in the investigation of metals, glass, ceramics and building materials, and for research in.
Fluorescence Microscopy: Super-Resolution and other Novel Techniques delivers a comprehensive review of current advances in fluorescence microscopy methods as applied to biological and biomedical science.
With contributions selected for clarity, utility, and reproducibility, the work provides practical tools for investigating these ground. X-Ray fluorescence analysis is an established technique for non-destructive elemental materials analysis.
This book gives a user-oriented practical guidance to the application of this method. The book gives a survey of the theoretical fundamentals, analytical instrumentation, software for data processing, various excitation regimes including Format: Hardcover.
An Introduction to Fluorescence Spectroscopy 3 Table of Contents is the process that takes place in any fluorimetric analysis. To account adequately for the Fluorescence analysis book of absorption and emission of light, it is An Introduction to Fluorescence Spectroscopy Fluorescence.
3 File Size: KB. X-Ray Fluorescence analysis (XRF) is a reliable multi-elemental and nondestructive analytical method widely used in research and industrial applications.
This practical handbook provides self-contained modules featuring XRF instrumentation, quantification methods, and most of. Trubetskaya, "An analysis of dissolved organic matter from freshwater Karelian lakes using reversed-phase high-performance liquid chromatography with online absorbance and fluorescence analysis," Moscow University Physics Bulletin, vol.
Handbook of Practical X-Ray Fluorescence Analysis. The book gives a survey of the theoretical fundamentals, analytical instrumentation, software for data. Introduction to Fluorescence helps readers acquire a sound understanding of basic fluorescence theory and practice.
It describes general principles in a straightforward way and uses examples from a variety of disciplines to demonstrate them. In color throughout, the book takes readers through the history of important discoveries to the most Cited by: X-ray fluorescence spectrometry (XRF) and instrumental neutron activation analysis (INAA) are commonly used for multi-element analysis of rock, soil, and sediment samples since they do not require chemical dissolution.
However, the detection limit for arsenic using XRF is on the order of 5 mg kg −1 and is too high for many environmental. A riveting paranormal romance, Fluorescence is engaging and unabashed—a coming-of-age urban fantasy unlike any other.
Each full-length novel is narrated by a different character, driving the story forward in an exciting new way. Fluorescence analysis is a novel technique to determine manuka honey authenticity. Two unique compounds have been found in manuka honey, Leptosperin and Lepteridine, and these compounds are responsible for the MM1 and MM2 fluorescence described in the honey.
Suggest a book topic Books open for submissions. chapter statistics. total Cited by: 1. Cabinet, fluorescence analysis, for use with any 4- 5- or 6-watt E-series UV lamp while supplies last CMA Cabinet, CMA, with ENFC nm/nm, 6 watt.
Introduction to Fluorescence Author: David M. Jameson. Describing general principles in a straightforward manner with examples from a variety of disciplines, this fluorescence book provides a solid understanding of basic fluorescence theory and practice.
Principles and Theory of Fluorescence Spectroscopy Fluorescence is a type of luminescence caused by photons exciting a molecule, raising it to an electronic excited state. It’s brought about by absorption of photons in the singlet ground state promoted to a singlet-excited state.
The technique of synchronous detection of laser-induced fluorescence (SDLIF) provides a way to distinguish between the fluorescence from a toxic molecule and the fluorescence from a background substance.
This is done by synchronously scanning the laser excitation and fluorescence detection wavelengths at a fixed wavelength separation. ISBN: OCLC Number: Description: x, pages illustrations 24 cm: Responsibility: [by] Charles E.
White and Robert J. Argauer. X-ray fluorescence analysis, XRF – basics XRF is employed for the qualitative and quantitative analysis of liquids and solids in order to determine their chemical composition.
It is frequently used in the metal industry for examining glass, ceramics, building materials as well as for analysing lubricants and mineral oil products. Analyzing fluorescence microscopy images with ImageJ.
This book is based primarily on the Wayne Rasband’s fantastic ImageJ. Nevertheless, the range of flexible and powerful open source software and resources for bioimage analysis continues to grow.
With that in mind, you might also consider becoming familiar with some alternatives as well. The recent application of fluorescence spectroscopy to food analysis is reviewed and future trends in fluorometry are discussed. For food proteins, two techniques, i.e. intrinsic fluorometry and.
Time‐Resolved Protein Fluorescence: Intensity and Anisotropy Decays. Solute Fluorescence Quenching. Resonance Energy Transfer.
Separation of Fluorescence Components. Developments in Instrumentation and Data Analysis. Other Uses of Protein Fluorescence.
Phosphorescence of Proteins. Closing CommentsCited by: This book is the first on absorption and fluorescnece to be published in the French language. Albani, J.R., Principles and Applications of Fluorescence Spectroscopy, Wiley-Blackwell (). Brand, L. and Johnson, M.L., Eds., Fluorescence Spectroscopy (Methods in Enzymology, Volume ), Academic Press ().Cambridge Core - Environmental Chemistry - Aquatic Organic Matter Fluorescence - edited by Paula G.