. Carnegie Institution of Washington publication. Fig. 96. Maximum intensity vs. length of excitation. The temperature of the furnace and the time between the end of excitation and the beginning of heating are as follows: sec. Curve//, 2000 O, sec. 41-7 1. " 41-5 J, " K, " L, " 3217 II55-0. c. C jrve ;C, 21 S N, " 41 .8 0, " 82 .0 P, '• 162 .0 0. 322 .0 Curve A, 320 sec sec. B, c. D, 162 .0 E, F, 6318 G, sec. , sec. I, ./. K, 161 .9 L, 3219 M. 642 .0 N, 0


. Carnegie Institution of Washington publication. Fig. 96. Maximum intensity vs. length of excitation. The temperature of the furnace and the time between the end of excitation and the beginning of heating are as follows: sec. Curve//, 2000 O, sec. 41-7 1. " 41-5 J, " K, " L, " 3217 II55-0. c. C jrve ;C, 21 S N, " 41 .8 0, " 82 .0 P, '• 162 .0 0. 322 .0 Curve A, 320 sec sec. B, c. D, 162 .0 E, F, 6318 G, sec. , sec. I, ./. K, 161 .9 L, 3219 M. 642 .0 N, 0, 10 sec. sec. P. 41-7 Q. R, 161 .4 s. 3'9-5 Fig. 97- Maximum intensity vs. temperature of furnace. The length of excitation and time between end of excitation and beginning of heating are as shown herewith. In an earlier paragraph mention was made of the existence of two bands in the phosphorescence spectrum of the sample of Sidot blende used in this Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - coloration and appearance of these illustrations may not perfectly resemble the original Carnegie Institution of Washington. Washington, Carnegie Institution of Washington


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