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Chapter 3. PHOTOMETRY AND COLORIMETRY

Lecture



In ch. 2 human vision was considered in a qualitative aspect, and an attempt was made to build models of monochrome and color vision. These models can be given a quantitative character, if we introduce measures of the quantities that determine the human perception of light. Measures of brightness are studied in photometry, and colors - in colorimetry. This chapter discusses issues related to both of these disciplines, as well as light sources.

LITERATURE

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2. Malitson HH, The Solar Energy Spectrum, Sky and Telescope, 29, 4, 162 - 165 {March 1965).

3. Larabee RD, Spectral Emissivity of Tungsten, J. Opt. Soc. Am., 49, 6, 619-625 (June 1959).

4. The Science of Color, Crowell, New York, 1953.

5. Fink DG, Ed., Television Engineering Handbook, McGraw-Hill, New York. 1957.

6. Walsh JW, T., Photometry, Constable, London, 1953.

7. Morgan J., Introduction to Geometrical and Physical Optics, McGraw-Hill, New York, 1953.

8. Born M., Wolf E., Principles of Optics, Pergamon, New York, 1970. [Available translation: Bori M., Wolf E., Fundamentals of Optics. - M .: Science, 1973.]

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14. Bingley FJ, Color Vision and Colorimetry, Television Engineering Handbook, Fink DG, Ed., McGraw-Hill, New York, 1957.

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19. Wyszecki G., Proposal for a New Color-Difference Formula, J. Opt. Soc. Am., 53, 11, 1318-1319 (November 1963).

20. C. IE. Colorimetry Committee Proposal for the Study of Color Spaces, Tech. Note, J. Opt. Soc. Am., 64, 6, 896-897 (June 1974).

21. Pratt WK, Spatial Transform Coding of Color Images, IEEE Trans. Com- type. Tech., COM-19, 12, 980 - 992 (December 1971).

22. Judd D.V., Standard Response Functions for Protanopic and Deuteranopic Vision, J. Opt. Soc. Am., 35, 3, 199-221 (March 1945).

23. MacAdam DL, The Eory of Colored Materials, J. Opt. Soc. Am., 25, 8, 249 - 252 (August 1935).

24. MacAdam DL, Maximum Visual Efficiency of Colored Materials, J. Opt. Soc. Am., 25, 11, 361-367 (November 1935).

created: 2015-06-10
updated: 2021-03-13
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