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References

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  1. Oschwald and Tarrant, Proc, Phys. Soc. Lond.,  36, pp. 241 and 262; 1924.
  2. Pearson and Anson, Proc. Phys. Soc. Lond.,  34, pp. 175 and 204; 1922.
  3. Taylor and Clarkson, Proc. Phys. Soc. Lond.,  36, p. 269: 1924.
  4. J. Taylor, Phil. Mag.,  3, pp. 368 and 753; 1927.
  5. H. E. Watson, Proc. Chambr. Phil. Soc.,  17, p. 90; 1912.
  6. Bedell and Reich, J.A.I.E.E., p. 563, June1927.
    [CrossRef]
  7. R. A. Millikan, Phys. Rev.,  7, No. 3, p. 386; 1916.
  8. Richardson and Compton, Phil. Mag.,  24, p. 575; 1912.
    [CrossRef]

1927 (2)

J. Taylor, Phil. Mag.,  3, pp. 368 and 753; 1927.

Bedell and Reich, J.A.I.E.E., p. 563, June1927.
[CrossRef]

1924 (2)

Taylor and Clarkson, Proc. Phys. Soc. Lond.,  36, p. 269: 1924.

Oschwald and Tarrant, Proc, Phys. Soc. Lond.,  36, pp. 241 and 262; 1924.

1922 (1)

Pearson and Anson, Proc. Phys. Soc. Lond.,  34, pp. 175 and 204; 1922.

1916 (1)

R. A. Millikan, Phys. Rev.,  7, No. 3, p. 386; 1916.

1912 (2)

Richardson and Compton, Phil. Mag.,  24, p. 575; 1912.
[CrossRef]

H. E. Watson, Proc. Chambr. Phil. Soc.,  17, p. 90; 1912.

Anson,

Pearson and Anson, Proc. Phys. Soc. Lond.,  34, pp. 175 and 204; 1922.

Bedell,

Bedell and Reich, J.A.I.E.E., p. 563, June1927.
[CrossRef]

Clarkson,

Taylor and Clarkson, Proc. Phys. Soc. Lond.,  36, p. 269: 1924.

Compton,

Richardson and Compton, Phil. Mag.,  24, p. 575; 1912.
[CrossRef]

Millikan, R. A.

R. A. Millikan, Phys. Rev.,  7, No. 3, p. 386; 1916.

Oschwald,

Oschwald and Tarrant, Proc, Phys. Soc. Lond.,  36, pp. 241 and 262; 1924.

Pearson,

Pearson and Anson, Proc. Phys. Soc. Lond.,  34, pp. 175 and 204; 1922.

Reich,

Bedell and Reich, J.A.I.E.E., p. 563, June1927.
[CrossRef]

Richardson,

Richardson and Compton, Phil. Mag.,  24, p. 575; 1912.
[CrossRef]

Tarrant,

Oschwald and Tarrant, Proc, Phys. Soc. Lond.,  36, pp. 241 and 262; 1924.

Taylor,

Taylor and Clarkson, Proc. Phys. Soc. Lond.,  36, p. 269: 1924.

Taylor, J.

J. Taylor, Phil. Mag.,  3, pp. 368 and 753; 1927.

Watson, H. E.

H. E. Watson, Proc. Chambr. Phil. Soc.,  17, p. 90; 1912.

J.A.I.E.E. (1)

Bedell and Reich, J.A.I.E.E., p. 563, June1927.
[CrossRef]

Phil. Mag. (2)

Richardson and Compton, Phil. Mag.,  24, p. 575; 1912.
[CrossRef]

J. Taylor, Phil. Mag.,  3, pp. 368 and 753; 1927.

Phys. Rev. (1)

R. A. Millikan, Phys. Rev.,  7, No. 3, p. 386; 1916.

Proc, Phys. Soc. Lond. (1)

Oschwald and Tarrant, Proc, Phys. Soc. Lond.,  36, pp. 241 and 262; 1924.

Proc. Chambr. Phil. Soc. (1)

H. E. Watson, Proc. Chambr. Phil. Soc.,  17, p. 90; 1912.

Proc. Phys. Soc. Lond. (2)

Pearson and Anson, Proc. Phys. Soc. Lond.,  34, pp. 175 and 204; 1922.

Taylor and Clarkson, Proc. Phys. Soc. Lond.,  36, p. 269: 1924.

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Figures (17)

F. 1
F. 1

Glow tube (full size).

F. 2
F. 2

Glow tube circuit.

F. 3
F. 3

Vacuum tube voltmeter circuit.

F. 4
F. 4

Arrangement of apparatus.

F. 5
F. 5

Reduction of sparking potential vs. light intensity tube No. i (before rejuvenation).

F. 6
F. 6

Variation of sparking potential with time tube No. i—dark—(before rejuvenation).

F. 7
F. 7

Variation of sparking potential with time tube No. i—illuminated (before rejuvenation).

F. 8
F. 8

Variation of sparking potential with time tube No. 2—dark.

F. 9
F. 9

Variation of sparking potential with time tube No. 2—illuminated.

F. 10
F. 10

Fatigue tube No. 2—i20 cycles

F 11
F 11

Reduction of sparking potential vs. light intensity showing effect of frequency variation tube No. 2.

F. 12
F. 12

Reduction of sparking potential vs. light intensity tube No. i (after rejuvenation).

F. 13
F. 13

Reduction of sparking potential per unit intensity vs. light intensity, for various diaphragms tube No. i (after rejuvenation).

F. 14
F. 14

Wavelength characteristic tube No. i—30 cycles

F. 15
F. 15

Wavelength characteristic tube No. 2—i20 cycles