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Original Articles

Insights into the 26 mm Diameter Fluorescent Lamp

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George V. Preston$suffix/text()$suffix/text(). (1982) A T-10 Energy Saving Rapid Start Fluorescent Lamp. Journal of the Illuminating Engineering Society 11:4, pages 200-203.
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Articles from other publishers (17)

Ebrahim Haji Ebrahimi, Farshad Sohbatzadeh & Hadi Zakeri-Khatir. (2020) The influence of electrical waveform on the electron density and collision frequency of low-pressure gas discharge plasma. Journal of Physics D: Applied Physics 53:3, pages 034001.
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L. P. Bakker & G. M. W. Kroesen. (2000) Thomson scattering in a low-pressure argon mercury positive column. Journal of Applied Physics 88:7, pages 3899.
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Koichi Wani. (1994) Ladderlike ionization of the mercury atom in Hg-Ar low-pressure discharge and its modeling. Journal of Applied Physics 75:10, pages 4917-4926.
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C Beneking & P Anderer. (1992) Radiation efficiency of Hg-Ar surface wave discharges. Journal of Physics D: Applied Physics 25:10, pages 1470-1482.
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G. Zissis, P. Bénétruy & I. Bernat. (1992) Modeling the Hg-Ar low-pressure-discharge positive column: A comparative study. Physical Review A 45:2, pages 1135-1148.
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T. I. Morozova, A. E. Skreblyukov, R. S. Zhuravleva & V. A. Korkin. (1991) Influence of capture centers of luminophore mixtures on their efficiency in energy-saving luminescent daylight lamps. Journal of Applied Spectroscopy 54:5, pages 480-484.
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Koichi Wani. (1990) Analysis of a low-pressure mercury rare-gas positive column with a dynamic two-temperature representation of electron energy. Journal of Applied Physics 68:10, pages 5052-5058.
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Koichi Wani. (1990) Probe determination of the electron energy distribution in a Hg‐Ar low‐pressure positive column. Journal of Applied Physics 67:10, pages 6130-6134.
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J. Maya & R. Lagushenko. 1989. 321 373 .
Koichi Wani. (1988) Evaluation of the electron energy distribution in a low-pressure Hg-Ar discharge with a two-temperature approximation. Journal of Applied Physics 63:12, pages 5683-5688.
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Shaolong Zhu, Li Zheng & Zuquan Cai. (1987) Hg 6 1 P 1 excited-state densities and 185.0 nm UV surface irradiances in a low-pressure mercury vapour discharge column . Journal of Physics D: Applied Physics 20:10, pages 1221-1223.
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K. G. Antal, J. F. Bitó & F. Halász. (1987) Inversion method to test radial structures in cylindrical plasmas. Acta Physica Hungarica 62:2-4, pages 225-236.
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Koichi Wani. (1985) Stepwise excitation of the Hg 61 P 1 level in the afterglow of a low-pressure Hg-Ar discharge . Journal of Applied Physics 58:8, pages 2968-2974.
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Wang Zhenhua, Liu Yicheng & Tong Moufu. 1985. New Frontiers in Rare Earth Science and Applications. New Frontiers in Rare Earth Science and Applications 852 855 .
R. B. Winkler, J. Wilhelm & R. Winkler. (1983) Kinetics of the Ar-Hg Plasma of Fluorescent Lamp Discharges. I. Model — Basic Equations — Hg Partial Pressure Variation. Annalen der Physik 495:2-3, pages 90-118.
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W. L. Lama, C. F. Gallo, T. J. Hammond & P. J. Walsh. (1982) Analytical model for low-pressure gas discharges: application to the Hg + Ar discharge. Applied Optics 21:10, pages 1801.
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F. A. S. Ligthart & R. A. J. Keijser. (1980) Two-electron group model and electron energy balance in low-pressure gas discharges. Journal of Applied Physics 51:10, pages 5295.
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