Description
Book Synopsis: Over the last decade the technique of X-ray fluorescence has evolved from dependence on laboratory-based, stand-alone units to the field use of portable and lightweight handheld devices. These portable instruments have given researchers in art conservation and archaeology the opportunity to study a broad range of materials with greater accessibility and flexibility than ever before.
In addition, the low relative cost of handheld XRF has led many museums, academic institutions, and cultural centers to invest in the devices for routine materials analysis purposes. Although these instruments often greatly simplify data collection, proper selection of analysis conditions and interpretation of the data still require an understanding of the principles of x-ray spectroscopy. These instruments are often marketed and used as "point-and-shoot" solutions; however, their inexpert use can easily generate deceptive or erroneous results.
This volume focuses specifically on the applications, possibilities, and limitations of handheld XRF in art conservation and archaeology. The papers deal with experimental methodologies, protocols, and possibilities of handheld XRF analysis in dealing with the complexity of materials encountered in this research.
Contributors: J. Aimers, State University of New York; T. Barrett, University of Iowa; A. Bezur, The Museum of Fine Arts, Houston; R. Brill, Corning Museum of Glass; F. Casadio, Art Institute of Chicago; M. Donais, Saint Anselm College; D. Farthing, State University of New York; J. Furgeson, University of Missouri; D. George, Saint Anselm College; B. Kaiser, Bruker Elemental; A. Kaplan, Getty Conservation Institute; J. Lang,, University of Iowa; J. Mass, Winterthur Museum; C. Matsen, Winterthur Museum; C. McGlinchey, Museum of Modern Art; H. Neff, California State University Long Beach; C. Patterson, Getty Conservation Institute; R. Shannon, Bruker-Elemental; A. Shugar, Buffalo State College; J. Sirois, Canadian Conservation Institute; D. Smith, National Gallery of Art; D. Stulik, Getty Conservation Institute; K. Trentelman, Getty Conservation Institute; N. Turner, Getty Conservation Institute; F. Paredes Umaña, University of Pennsylvania; B. Voorhies, University of California; J. Wade, National Science Foundation.
Details
Unlock the power of handheld XRF for art and archaeology studies with our comprehensive book on the subject. Delve into the world of portable and lightweight devices that have revolutionized research in art conservation and archaeology. Explore the endless possibilities and flexibility that come with using handheld XRF instruments, making material analysis more accessible and efficient than ever before.
With the increasing affordability of handheld XRF devices, museums, academic institutions, and cultural centers are embracing the benefits of these tools for everyday materials analysis. Experience the convenience of "point-and-shoot" solutions, but remember that proper knowledge of x-ray spectroscopy principles is essential for accurate data interpretation. Stay ahead of the curve with expert insights from leading researchers and practitioners in the field.
Our book focuses specifically on the practical applications, potential, and limitations of handheld XRF in art conservation and archaeology. Learn about experimental methodologies, analysis protocols, and how to navigate the complexities of materials encountered in your research. Seize this opportunity to enhance your understanding and skills in using handheld XRF devices to advance your studies.
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