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Titlebook: Color Measurement; Theme and Variations David L. MacAdam Textbook 1985Latest edition Springer-Verlag Berlin Heidelberg 1985 adaptation.phot

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書目名稱Color Measurement
副標(biāo)題Theme and Variations
編輯David L. MacAdam
視頻videohttp://file.papertrans.cn/230/229741/229741.mp4
叢書名稱Springer Series in Optical Sciences
圖書封面Titlebook: Color Measurement; Theme and Variations David L. MacAdam Textbook 1985Latest edition Springer-Verlag Berlin Heidelberg 1985 adaptation.phot
描述Reviews and use of the first edition as the textbook for a senior-division uni- versity course indicated the need for a number of corrections and clarifica- tions. Although no new topics have been introduced, the new edition should be more clear and useful. A novelty in the Notes and Sources Appendix should facilitate reference from the notes back to the text. Far that purpose, the page number of the text to which each note refers is indicated in square brackets following the serial number of the note. The FMC1 color-difference formula has been substituted everywhere for the Friele-MacAdam formula, including the reference to the sources in Note 52. The FMC1 formula was actually used in the investigations reviewed in Sects. 8.3 and 8.4. The Friele-MacAdam formula given on page 151 of the first edition, which I thought was equivalent to the FMC1, was erroneous and should not be used. The formulas for the geodesic chromaticity diagram, on p. 153 of the first edition, were based on observations by 14 normal observers (last reference in Note 51). They have been replaced by the formulas based on the observations of PON, for consistency with all other formulas and discussions in the book.
出版日期Textbook 1985Latest edition
關(guān)鍵詞adaptation; photometry
版次2
doihttps://doi.org/10.1007/978-3-540-38681-0
isbn_softcover978-3-540-15573-7
isbn_ebook978-3-540-38681-0Series ISSN 0342-4111 Series E-ISSN 1556-1534
issn_series 0342-4111
copyrightSpringer-Verlag Berlin Heidelberg 1985
The information of publication is updating

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Color Differences, The search for it has extended over 50 years and seems no nearer its goal than at the beginning. Much of the accumulated evidence indicates that the goal is unattainable — that a flat diagram cannot represent equal color differences by equal distances any more than a flat map of the world can repre
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Color Measurement978-3-540-38681-0Series ISSN 0342-4111 Series E-ISSN 1556-1534
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Stephen Aylward,J. Alison Noble,Zhe Min Mineral colors, a few vegetable dyes, and some dyes obtained from insects and mollusks were the only materials available until the last century. The paucity of usable materials was not remedied until after Perkin’s synthesis of mauve from coal tar in 1856. That discovery led to the introduction of
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Zachary M. C. Baum,Yipeng Hu,Dean C. Barrattingle frequency, or wavelength, during any interval throughout which it radiates. This type of radiation is often called . or . in optics or radiation physics. However, the terms homogeneous and monochromatic have inappropriate connotations in discussions of appearance and color. For colorimetry, li
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Stephen Aylward,J. Alison Noble,Zhe Min. In general, when light falls on an object, a portion of the incident light is reflected, a portion is absorbed within the material, and the remainder is transmitted. Objects are said to be opaque when the transmitted component is so small as to be negligible. The converse case of a transparent obj
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