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  1. National Research Fellow.
  2. Clark and Buckner, J. Am. Chem. Soc.,  44, p. 230; 1922.
    [Crossref]
  3. Hull, J. Franklin Inst., p. 199; Feb.1922.
  4. Bragg, J. Chem. Soc., (London) 121, p. 2766; 1922.
    [Crossref]
  5. Wyckoff, J. Wash. Acad. Sci.,  11, 366; 1921.
  6. McKeehan, Science,  56, p. 757; Dec.29, 1922.
    [Crossref] [PubMed]
  7. Baxter and Wallace, J. Am. Chem. Soc.,  38, p. 96; 1916.
  8. Clark and Duane, Proc Nat. Acad. Sci.,  8, p. 90; May, 1922.
    [Crossref]
  9. Duane, Phys. Rev.,  10, p. 624; Dec.1917.
    [Crossref]
  10. Duane, Palmer, and Yeh, J. Optical Soc. Am.,  5, p. 213; May, 1921.
    [Crossref]
  11. Duane and Hunt, Phys. Rev.,  6, p. 166; 1915.
    [Crossref]
  12. A typical curve is published in Proc. Nat. Acad. Sci.,  8, p. 94; May, 1922.
  13. Bragg, Proc. Royal Soc.,  A89, p. 468; 1914.
    [Crossref]
  14. Hull, Proc. Am. Inst. Elec. Eng.,  38, p. 227; 1919.
  15. Davey, Phys. Rev.,  18, p. 103; 1921.
  16. Wyckoff, J. Wash. Acad. Sci.,  11, p. 429, 1921.
  17. Baxter, Am. Chem. J.,  31, p. 559; 1904.
  18. Duane, Bull. Nat. Research Council,  1, No. 6; Nov.1920.
  19. Clark and Duane, Proc. Nat. Acad. Sci., April, 1923.
  20. McKeehan, J. Optical Soc. Am.,  6, p. 989; Dec, 1922.
    [Crossref]

1923 (1)

Clark and Duane, Proc. Nat. Acad. Sci., April, 1923.

1922 (7)

McKeehan, J. Optical Soc. Am.,  6, p. 989; Dec, 1922.
[Crossref]

Clark and Buckner, J. Am. Chem. Soc.,  44, p. 230; 1922.
[Crossref]

Hull, J. Franklin Inst., p. 199; Feb.1922.

Bragg, J. Chem. Soc., (London) 121, p. 2766; 1922.
[Crossref]

McKeehan, Science,  56, p. 757; Dec.29, 1922.
[Crossref] [PubMed]

Clark and Duane, Proc Nat. Acad. Sci.,  8, p. 90; May, 1922.
[Crossref]

A typical curve is published in Proc. Nat. Acad. Sci.,  8, p. 94; May, 1922.

1921 (4)

Duane, Palmer, and Yeh, J. Optical Soc. Am.,  5, p. 213; May, 1921.
[Crossref]

Davey, Phys. Rev.,  18, p. 103; 1921.

Wyckoff, J. Wash. Acad. Sci.,  11, p. 429, 1921.

Wyckoff, J. Wash. Acad. Sci.,  11, 366; 1921.

1920 (1)

Duane, Bull. Nat. Research Council,  1, No. 6; Nov.1920.

1919 (1)

Hull, Proc. Am. Inst. Elec. Eng.,  38, p. 227; 1919.

1917 (1)

Duane, Phys. Rev.,  10, p. 624; Dec.1917.
[Crossref]

1916 (1)

Baxter and Wallace, J. Am. Chem. Soc.,  38, p. 96; 1916.

1915 (1)

Duane and Hunt, Phys. Rev.,  6, p. 166; 1915.
[Crossref]

1914 (1)

Bragg, Proc. Royal Soc.,  A89, p. 468; 1914.
[Crossref]

1904 (1)

Baxter, Am. Chem. J.,  31, p. 559; 1904.

Baxter,

Baxter and Wallace, J. Am. Chem. Soc.,  38, p. 96; 1916.

Baxter, Am. Chem. J.,  31, p. 559; 1904.

Bragg,

Bragg, J. Chem. Soc., (London) 121, p. 2766; 1922.
[Crossref]

Bragg, Proc. Royal Soc.,  A89, p. 468; 1914.
[Crossref]

Buckner,

Clark and Buckner, J. Am. Chem. Soc.,  44, p. 230; 1922.
[Crossref]

Clark,

Clark and Duane, Proc. Nat. Acad. Sci., April, 1923.

Clark and Buckner, J. Am. Chem. Soc.,  44, p. 230; 1922.
[Crossref]

Clark and Duane, Proc Nat. Acad. Sci.,  8, p. 90; May, 1922.
[Crossref]

Davey,

Davey, Phys. Rev.,  18, p. 103; 1921.

Duane,

Clark and Duane, Proc. Nat. Acad. Sci., April, 1923.

Clark and Duane, Proc Nat. Acad. Sci.,  8, p. 90; May, 1922.
[Crossref]

Duane, Palmer, and Yeh, J. Optical Soc. Am.,  5, p. 213; May, 1921.
[Crossref]

Duane, Bull. Nat. Research Council,  1, No. 6; Nov.1920.

Duane, Phys. Rev.,  10, p. 624; Dec.1917.
[Crossref]

Duane and Hunt, Phys. Rev.,  6, p. 166; 1915.
[Crossref]

Hull,

Hull, J. Franklin Inst., p. 199; Feb.1922.

Hull, Proc. Am. Inst. Elec. Eng.,  38, p. 227; 1919.

Hunt,

Duane and Hunt, Phys. Rev.,  6, p. 166; 1915.
[Crossref]

McKeehan,

McKeehan, Science,  56, p. 757; Dec.29, 1922.
[Crossref] [PubMed]

McKeehan, J. Optical Soc. Am.,  6, p. 989; Dec, 1922.
[Crossref]

Palmer,

Duane, Palmer, and Yeh, J. Optical Soc. Am.,  5, p. 213; May, 1921.
[Crossref]

Wallace,

Baxter and Wallace, J. Am. Chem. Soc.,  38, p. 96; 1916.

Wyckoff,

Wyckoff, J. Wash. Acad. Sci.,  11, 366; 1921.

Wyckoff, J. Wash. Acad. Sci.,  11, p. 429, 1921.

Yeh,

Duane, Palmer, and Yeh, J. Optical Soc. Am.,  5, p. 213; May, 1921.
[Crossref]

Am. Chem. J. (1)

Baxter, Am. Chem. J.,  31, p. 559; 1904.

Bull. Nat. Research Council (1)

Duane, Bull. Nat. Research Council,  1, No. 6; Nov.1920.

J. Am. Chem. Soc. (2)

Clark and Buckner, J. Am. Chem. Soc.,  44, p. 230; 1922.
[Crossref]

Baxter and Wallace, J. Am. Chem. Soc.,  38, p. 96; 1916.

J. Chem. Soc., (London) (1)

Bragg, J. Chem. Soc., (London) 121, p. 2766; 1922.
[Crossref]

J. Franklin Inst. (1)

Hull, J. Franklin Inst., p. 199; Feb.1922.

J. Optical Soc. Am. (2)

Duane, Palmer, and Yeh, J. Optical Soc. Am.,  5, p. 213; May, 1921.
[Crossref]

McKeehan, J. Optical Soc. Am.,  6, p. 989; Dec, 1922.
[Crossref]

J. Wash. Acad. Sci. (2)

Wyckoff, J. Wash. Acad. Sci.,  11, p. 429, 1921.

Wyckoff, J. Wash. Acad. Sci.,  11, 366; 1921.

Phys. Rev. (3)

Duane, Phys. Rev.,  10, p. 624; Dec.1917.
[Crossref]

Duane and Hunt, Phys. Rev.,  6, p. 166; 1915.
[Crossref]

Davey, Phys. Rev.,  18, p. 103; 1921.

Proc Nat. Acad. Sci. (1)

Clark and Duane, Proc Nat. Acad. Sci.,  8, p. 90; May, 1922.
[Crossref]

Proc. Am. Inst. Elec. Eng. (1)

Hull, Proc. Am. Inst. Elec. Eng.,  38, p. 227; 1919.

Proc. Nat. Acad. Sci. (2)

Clark and Duane, Proc. Nat. Acad. Sci., April, 1923.

A typical curve is published in Proc. Nat. Acad. Sci.,  8, p. 94; May, 1922.

Proc. Royal Soc. (1)

Bragg, Proc. Royal Soc.,  A89, p. 468; 1914.
[Crossref]

Science (1)

McKeehan, Science,  56, p. 757; Dec.29, 1922.
[Crossref] [PubMed]

Other (1)

National Research Fellow.

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Figures (7)

Fig. 1
Fig. 1

Characteristic iodine spectrum reflected by 100 planes of KI.

Fig. 2
Fig. 2

Characteristic tungsten and iodine spectra reflected by 110 planes of KI.

Fig. 3
Fig. 3

Relative positions of X-peaks for different values of α.

Fig. 4
Fig. 4

General relationships of X-peaks.

Fig. 5
Fig. 5

Photograph showing reflection of characteristic X-rays

Fig. 6
Fig. 6

Spectrum of reflection by 100 planes of CsI3.

Fig. 7
Fig. 7

Spectrum of reflection by 100 planes of CsIBr2.

Tables (10)

Tables Icon

Table 1 Interplanar Angles, Critical Voltages, Wave-lengths, and Distances for KI Crystals.

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Table 2 Analysis of the 100 Planes of KI.

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Table 3 The Analysis of the Spectrum of the 110 Planes of KI. (High Voltage Applied to X-ray Tube.)

Tables Icon

Table 4 Experimental Data for X-Peaks.

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Table 5 Inter planar Angles of CsI.

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Table 6 Interplanar Angles of CsI3 (Referred to 100 Peak)

Tables Icon

Table 7 Analysis of the Spectrum of the 100 Planes of CsI3

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Table 8 Analysis of the Spectrum of the 101 Planes of CsI3

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Table 9 Analysis of the Spectrum of the 001 Planes of CsI3

Tables Icon

Table 10 Analysis of the Spectrum of the 100 Planes of CsIBr2. (Cf. Fig. 9)

Equations (2)

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V e = h c / λ , ( or V λ = the constant 12,350 ) ,
n λ = 2 d sin θ ,