38 PHOTOCHEMICAL PRINCIPLES 



Paper given at Instrumentation 2nd Central Symposium sponsored by North- 

 ern California section, Instrument Society of America, Berkeley, Calif., May 

 14, 1957. 



French, C. S. 1959. The chlorophylls /// vivo and in vitro. Encyclopedia of Plant 

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French, C. S., J. H. C. Smith, H. I. Virgin, and R. L. Airth. 1956. Fluorescence- 

 spectrum curves of chlorophylls, pheophytins, phycoerythrins, phycocyanins, 

 and hypericin. Plant Physiol., 31, 369-74. 



French, C. S., and V. K. Young. 1952. The fluorescence spectra of red algae 

 and the transfer of energy from phycoerythrin to phycocyanin and chloro- 

 phyll. J. Gen. Physiol., 35, 873-90. 



French, C. S., and V. K. Young. 1956. The absorption, action and fluorescence 

 spectra of photosynthetic pigments in living cells and in solutions. Radiation 

 Biology, 3, 343-91. McGraw-Hill, New York. 



Giese, A. T., and C. S. French. 1955. The analysis of overlapping spectral 

 absorption bands by derivative spectrophotometry. Appl. Spectroscopy, 9, 

 78-96. 



Goodwin, R. H., V. M. Koski, and O. v.H. Owens. 1951. The distribution and 

 properties of a porphyrin from the epidermis of Vicia shoots. Am. J. Botany, 

 38, 629-35. 



Halldal, P. 1958a. Action spectra of phototaxis and related problems in volvo- 

 cales, ulva gametes and dinophyceae. Physiol. Plantarum, 11, 118-53. 



Halldal, P. 1958b. Pigment formation and growth in blue-green algae in crossed 

 gradients of light intensity and temperature. Physiol. Plantarum, 11, 401-20. 



Halldal, P., and C. S. French. 1956. The growth of algae in crossed gradients of 

 light intensity and temperature. Carnegie Inst. Wash. Year Book, 55, 261-65. 



Halldal, P., and C. S. French. 1958. Algae growth in crossed gradients of light 

 intensity and temperature. Plant Physiol., 33, 249-52. 



Haxo, F. T,, and L. R. Blinks. 1950. Photosynthetic action spectra of marine 

 algae. J. Gen. Physiol, 33, 389-422. 



Jacobs, E. E., A. E. Vatter, and A. S. Holt. 1954. Crystalline chlorophyll and 

 bacteriochlorophyll. Arch. Biochem. Biophys., 53, 228-38. 



Jacquez, J. A., and H. F. Kuppenheim. 1955. Theory of the integrating sphere. 

 /. Opt. Soc. Am., 45, 460-70. 



Koski, V. M., C. S. French, and J. H. C. Smith. 1951. The action spectrum 

 for the transformation of protochlorophyll to chlorophyll a in normal and 

 albino corn seedlings. Arch. Biochem. Biophys., 31, 1-17. 



Krasnovskii, A. A., et al. (See Milner and Rabinowitch.) 



Latimer, P. 1957. Apparent shifts of absorption bands of cell suspensions caused 

 by optical effects. Carnegie Inst. Wash. Year Book, 56, 



Latimer, P., and E. Rabinowitch. 1956. Selective scattering of light by pigment 

 containing plant cells. /. Chem. Phys., 24, 480. 



Milner, H. W. Translator, Russian papers on photochemistry and photosynthe- 

 sis. 3 vols., 818 pages. (Available from Crerar Library, Chicago.) 



Rabinowitch, E. I. 1956. Translator, Fluorescence and photochemistry of 

 chlorophyll, papers of A. A. Krasnovskii, V. B. Evstigneev, and co-workers. 

 U. S. Atomic Energy Comm. Tech. Inf. Extension, Oak Ridge, Tennessee. 



