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Titlebook: Raman Spectroscopy in Cultural Heritage Preservation; Howell G. M. Edwards,Peter Vandenabeele,Philippe C Book 2023 The Editor(s) (if appli

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楼主: 哥哥大傻瓜
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Cultural Heritage Meets the Art Forensics Enigma: Raman Spectroscopic Authentication and the Exposuxplored through the medium of five case studies of art works or museum artefacts, all of which involve the presentation of Raman spectroscopic data, which are discussed herein and which highlight some of the inherent difficulties and pitfalls which can be encountered in the interpretation of data an
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Raman Spectroscopy and Industrial Archaeology, an insight given into the methodology of adoption of analytical instrumentation for the interpretation of data which are important for cultural heritage studies of the sites and their artefacts will be provided.
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,“Noli Me Tangere”: A Renaissance Original? A Holistic Analytical Spectroscopic Challenge,. In the case study offered here, a comprehensive Raman spectroscopic analytical study of the pigments and ground layers of a damaged painting on the Biblical theme of “.” indicates that the artwork can be assigned confidently to the Renaissance period but the complete absence of provenancing and as
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Case Study: Raman Spectroscopic Analysis of Welsh Porcelains,uctively for the first time the Swansea and Nantgarw porcelain bodies and to compare the spectral data obtained from shards archaeologically excavated from the Nantgarw China Works site with specimen pieces of perfect, decorated and finished porcelains with the objective of defining Raman spectral b
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Book 2023ration of artefacts and sites closely related to our cultural heritage as well as in authentication. These themes are naturally wider than what at first might be considered as artworks and archaeological artefacts and the topics include pigments, paintings, ceramics, glass, sculpture and patination
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Historical Overview of Raman Spectroscopy,itation afforded the opportunity for the first time to record spectra from specimens. The advent of diode laser technology with a range of variable excitation wavelengths and improved detector response with methods for fluorescence rejection opened up new avenues for application to materials of relevance to cultural heritage.
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