. The Bell System technical journal. Telecommunication; Electric engineering; Communication; Electronics; Science; Technology. C^SIUM-OXYGEN-SILVER PHOTOELECTRIC CELL TABLE 3 359 Cell Number a t Position ^^c. Layers/Hour E F G ° C. 2 1 2 1 2 400 100. CELL D-POSITION 1 o- INITIAL READINGS • -ATTER RELEASING O^ AND 3 HRS. AT ROOM TEMP 4-AFTER 6 HRS. AT 75° C. X-AFTER 5 MINS. AT 200° C 0- AFTER 10 MINS. AT 200° C 6000 7000 8000 WAVELENGTH IN A 9000 10000 Fig. 13—Relative sp


. The Bell System technical journal. Telecommunication; Electric engineering; Communication; Electronics; Science; Technology. C^SIUM-OXYGEN-SILVER PHOTOELECTRIC CELL TABLE 3 359 Cell Number a t Position ^^c. Layers/Hour E F G ° C. 2 1 2 1 2 400 100. CELL D-POSITION 1 o- INITIAL READINGS • -ATTER RELEASING O^ AND 3 HRS. AT ROOM TEMP 4-AFTER 6 HRS. AT 75° C. X-AFTER 5 MINS. AT 200° C 0- AFTER 10 MINS. AT 200° C 6000 7000 8000 WAVELENGTH IN A 9000 10000 Fig. 13—Relative spectral response to equal energ>' for cell D, position 1. of the orifice, and ^ is the angle between r and the normal to the surface. The constants for the three cells presented and the rates of deposition of caesium at the various positions are shown in Table 3, where / is the mean temperature during the time of observation, and Wcs is the rate of deposition of caesium in micrograms per square centimeter per hour. In the last column are shown the equivalent number of atomic layers of caesium that would be deposited per hour upon a plane surface. As before, these values must be divided by. 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 American Telephone and Telegraph Company. [Short Hills, N. J. , etc. , American Telephone and Telegraph Co. ]


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Keywords: ., bookcentury1900, bookdecade1920, booksubjecttechnology, bookyear1