[B._Beckhoff,_et_al.]_Handbook_of_Practical_X-Ray_(b-ok.org).pdf

Arai t the profile of the parallel optical system

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24. Arai T, The profile of the parallel optical system having a Soller slit in X-ray fluorescence spectrograph. X-ray Anal, Japan 2 , 139–153 (1965) [in Japanese] 25. Arai T, Studies of 2 θ values and peak profiles in non-focusing X-ray fluorescent spectrometer. Adv X-ray Chem Anal, Japan 19 , 293–305 (1988) [in Japanese] 26. Campbell WJ, Leon M, Thatcher J, Flat crystal X-ray optics. Adv X-ray Anal 1 , 193–206 (1958) 27. Miller DC, Zingaro PW, The universal vacuum spectrograph and comparative data on the intensities observed in an air, helium, and vacuum path. Adv X-ray Anal 3 , 49–56 (1960) 28. Miller DC, Results obtained with the modified Norelco Autrometer. Adv X-ray Anal 1 , 283–295 (1958) 29. Kiley WR, A universal detector for the X-ray spectrograph. Adv X-ray Anal 2 , 293–301 (1959) 30. Kemp JW, Instrumentation for rapid spectrochemical analysis–Optical and X-ray emission monochromators and polychromators. Anal Chem 28 , 1838– 1843 (1956) 31. Jones JL, Paschen KW, Swain HH, Andermann G, Components for X-ray polychromators. Adv X-ray Anal 1 , 471–482 (1958) 32. Andermann G, Jones JL, Davidson E, The evaluation of the PXQ for the analysis of cements and related materials. Adv X-ray Anal 2 , 215–227 (1959) Andermann G, Allen JD, The evaluation and improvement of X-ray emission analysis of raw-mix and finished cements. Adv X-ray Anal 4 , 414–432 (1961) 33. Dryer HT, Davidson E, Andermann G, Vacuum X-ray instrumentation and its application to mill-products control. Adv X-ray Anal 5 , 477–485 (1962) 34. Andermann G, Kemp JW, Scattered X-rays as internal standards in X-ray emission spectroscopy. Anal Chem 30 , 1306–1309 (1958) 35. Anzelmo JA, Buman AI, Evaluation criteria for wavelength dispersive XRF instrumentation. Am Lab, 65–73 (1988) 36. Kansai K, Toda K, Kohno H, Arai T, Wilson R, Accurate measurement of trace elements using an innovative fixed goniometer for a simultaneous spectrometer. Adv X-ray Anal 38 , 691–698 (1995) 37. Kikkert J, Hendry G, Comparison of experimental and theoretical intensities for a new X-ray tube for light element analysis. Adv X-ray Anal 27 , 423–426 (1984) 38. Caldwell VE, A practical method for the accurate analysis of high alloy steels by X-ray emission. X-ray Spectrom 5 , 31–35 (1976) 39. Mahn GR, The OEG-75G—A new high power tube for X-ray fluorescent analy- sis. Cathode Press 22 , 41–46 (1965) 40. Gurvich YM, Comparison of various X-ray tube types for XRF analysis. Adv X-ray Anal 28 , 113–118 (1985) Gurvich YM, An advanced end-window. XRF spectrometer for analysis of light elements. Am Lab, 103–111 (1984) 41. Henke BL, X-ray fluorescence analysis for sodium, fluorine, oxygen, nitrogen, carbon, and boron. Adv X-ray Anal 7 , 460–488 (1964) Henke BL, Tester MA, Techniques of low energy X-ray spectroscopy (0.1 to 2 keV region). Adv X-ray Anal 18 , 76–106 (1975) Henke BL, Techniques of low energy X-ray and electron physics. 50 to 1000 ev region. Norelco Reporter 14 , 75–83, 98 (1967) 42. Holliday JE, The use of soft X-ray fine structure in bonding determination and light element analysis. Norelco Reporter 16 , 84–91, 116 (1967)
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References 29 43. Fischer DW, Baun WL, The influences of chemical combination and sample self absorption on some long wavelength X-ray emission spectra. Norelco Reporter 14 , 92–98 (1967) 44. Henke BL, Measurement in the 10 to 100 angstrom X-ray region. Adv X-ray
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