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Solar energy devices

Amatucci GG, Badway E, Singhal A, Beaudoin B, Skandan G, Bowmer T, PUtz 1, Pereira N, Chapman T, Jaworski R (2001) Investigation of Yttrium and polyvalent ion intercalation into nanocrystaUine Vanadium Oxide. J Hectrochem Soc 4148 A940-A950 Tributsch H (1980) Photo-intercalation Possible apphcation in solar energy devices. Appl Phys 23 61-71... [Pg.345]

Unalloyed tungsten has several major applications. An important use is in the electric lamp filaments for light bulbs. Also, it is used as electrodes in arcwelding, in heating elements for high-temperature furnaces, in electron and television tubes, in glass-to- metal seals, and in solar energy devices. [Pg.949]

An absorption factor above unity is ideal for a solar energy device as almost all the incident radiant power is collected. [Pg.533]

SMS project has National significance. The station collects solar radiation data to assist with evaluating and developing solar energy devices. Based on SMS data, engineers have calculated that one square meter of land in Yerevan receives about 1,700 kWh of sun power annually (please see Table 2) [4, 5],... [Pg.219]

Construction of solar energy devices with natural dyes (p. 42)... [Pg.321]

Warner, J. C. Construction of Solar Energy Devices with Natural Dyes. In Greener Approaches to Undergraduate Chemistry Experiments, Kirchhoff, M., Ryan, M. A., Eds. American Chemical Society Washington, DC, 2002 p42. [Pg.185]

Tributsch H. (1980), Photo-intercalation possible application in solar energy devices , Appl. Phys. 23, 61-71. [Pg.632]

Clive Capps is a versatile business manager with a degree in chemistry and over 30 years experience in the paper and the chemicals industries. This involved both working on technical development in the fine paper mills sector and responsibility for sales of chemicals to European paper mills. He had a spell away from the paper industry in the mid-1970s with Exxon Enterprises, when he was in charge of sales of solar energy devices to Europe and parts of the developing world. [Pg.9]

What arguments could be advanced in favour of the new current generating solar energy device shown in Fig. 25 The most important one concerns the solar energy conversion efficiency. [Pg.170]

An additional advantage of the proposed solar energy devices would be that they could be built of cheap materials. They could, for example, be made of carbon, a graphite layer anode and a sheet of amorphous carbon as a cathode separated by a thin electrolyte layer with bromide/bromine as a carrier system. [Pg.171]

Solar Fraction - The percentage of a building s seasonal energy requirements that can be met by a solar energy device(s) or system (s). [Pg.412]

G.E. Jonsson, H. Fredriksson, R. Sellappan, D. Chakarov, Nanostructures for enhanced light absorption in solar energy devices, Int. J. Photoenergy 2011 (2011) 1-11. (Article ID 939807). [Pg.135]

Selenium, an element used in the manufacture of photoelectric cells and solar energy devices, forms two oxides. One has 28.8% O, by mass, and the other, 37.8% O. What are the formulas of these oxides Propose acceptable names for them. [Pg.105]


See other pages where Solar energy devices is mentioned: [Pg.47]    [Pg.71]    [Pg.160]    [Pg.263]    [Pg.163]    [Pg.179]    [Pg.225]    [Pg.176]    [Pg.175]    [Pg.125]    [Pg.1293]    [Pg.44]    [Pg.704]    [Pg.264]    [Pg.659]    [Pg.83]    [Pg.242]    [Pg.747]    [Pg.4615]    [Pg.5663]    [Pg.38]    [Pg.1108]   
See also in sourсe #XX -- [ Pg.6 , Pg.198 , Pg.254 ]




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Solar devices

Solar energy

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