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The cesium vapor thermionic converter limitations imposed by emission processes
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The performance of ruthenium as an electrode in a thermionic converter
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Kennedy, A.J.1
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A comparison of niobium and nickel as thermionic material
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J. Lawrence and V. C. Wilson, "A comparison of niobium and nickel as thermionic material," in Proc. Thermionic Spec. Conf., 1966, p. 1.
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J. Lawrence and V. C. Wilson, "Characteristics and life tests of cylindrical thermionic converters," Adv. Energy Convers., vol.2, pp. 341-351, Jul.-Sep. 1962.
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V. C. Wilson and J. Lawrence, "Design and operation of laboratory type parallel plane cesium converters," Adv. Energy Convers., vol.2, pp. 335- 340, Jul.-Sep. 1962.
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C. C. Weeks, R. C. Dahleen, and J. E. Gingrich, "Experimental optimization of cesium vapor thermionic converters with metal emitters," Adv. Energy Convers., vol.2, pp. 315-323, Jul.-Sep. 1962.
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S. S. Kitrilakis and G. N. Hatsopoulos, "The cesium vapor thermionic converter: Three observed dependence of performance on cesium pressure, spacing, emitter temperature and emitter material," Adv. Energy Convers., vol.2, pp. 583-600, Jul.-Sep. 1962.
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Effect on thermionic performance of emitter material evaporated on a low work function collector
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Performance of tungsten emitter thermionic converter in the presence of cesium fluoride additive
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The departure of the observed performance from the idealized case in cesium thermionic converters
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Cambridge, MA
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S. S. Kitrilakis, A. Shavit, and N. Rasor, "The departure of the observed performance from the idealized case in cesium thermionic converters," in Proc. 24th Conf. Phys. Electron., Cambridge, MA, 1964.
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Basic and engineering implications of correlated converter phenomenology
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Experimental correlation of converter variables in the ignited mode
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S. S. Kitrilakis and F. Rufeh, "Experimental correlation of converter variables in the ignited mode," in Proc. Int. Conf. Thermionic Power Gener., London, U.K., 1965.
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Analytical description of cesium diode phenomenology
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N. S. Rasor, "Analytical description of cesium diode phenomenology," in Proc. Int. Conf. Thermionic Power Gener., London, U.K., 1965.
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The significance of converter physics in thermionic reactor design innovation
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N. S. Rasor, "The significance of converter physics in thermionic reactor design innovation," in Proc. Thermionic Convers. Spec. Conf., 1969, p. 545.
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Practical aspects of plasma processes in thermionic energy converters
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Collector studies with oxygen additive converters
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Eindhoven, The Netherlands
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Thermionic energy conversion
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U.S. Patent 6 100 621, Aug. 8
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N. S. Rasor, D. R. Riley, C. S. Murray, and C. B. Geller, "Thermionic converter with differentially heated cesium oxygen source and method of operation," U.S. Patent 6 100 621, Aug. 8, 2000.
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