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Corrections

W. E. Forsythe and E. Q. Adams, "Radiating Characteristics of Tungsten and Tungsten Lamps. A Correction," J. Opt. Soc. Am. 35, 306-306 (1945)
https://www.osapublishing.org/josa/abstract.cfm?uri=josa-35-4-306

References

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  1. A. G. Worthing, Phys. Rev. 10, 377 (1917).
    [CrossRef]
  2. W. Weniger and A. H. Pfund, Phys. Rev. 14, 427 (1919).
    [CrossRef]
  3. E. O. Hulburt, Astrophys. J. 45, 149 (1917).
    [CrossRef]
  4. W. Zwikker, Proc. K. Akad. Amst. 28, 499 (1925).
  5. B. T. Barnes and W. E. Forsythe, J. Opt. Soc. Am. 26, 313 (1936).
    [CrossRef]
  6. Proceedings of the 8th Session, Commission Internationale de l’Eclairage (Cambridge, University Press, Cambridge, 1931), pp. 19–29.
  7. I. G. Priest, Nat. Bur. Stand. Bull. 18, 221 (1922).
    [CrossRef]
  8. W. E. Forsythe, J. Opt. Soc. Am. 6, 476 (1922).
    [CrossRef]
  9. H. T. Wensel, D. B. Judd, and W. F. Roeser, J. Research Nat. Bur. Stand. 12, 527 (1934).
    [CrossRef]
  10. W. E. Forsythe and E. Q. Adams, Denison University Bull., J. Sci. Labs. 38, 1 (1943).
  11. W. E. Forsythe, J. Opt. Soc. Am. 7, 1115 (1923).
    [CrossRef]

1943 (1)

W. E. Forsythe and E. Q. Adams, Denison University Bull., J. Sci. Labs. 38, 1 (1943).

1936 (1)

1934 (1)

H. T. Wensel, D. B. Judd, and W. F. Roeser, J. Research Nat. Bur. Stand. 12, 527 (1934).
[CrossRef]

1925 (1)

W. Zwikker, Proc. K. Akad. Amst. 28, 499 (1925).

1923 (1)

1922 (2)

I. G. Priest, Nat. Bur. Stand. Bull. 18, 221 (1922).
[CrossRef]

W. E. Forsythe, J. Opt. Soc. Am. 6, 476 (1922).
[CrossRef]

1919 (1)

W. Weniger and A. H. Pfund, Phys. Rev. 14, 427 (1919).
[CrossRef]

1917 (2)

E. O. Hulburt, Astrophys. J. 45, 149 (1917).
[CrossRef]

A. G. Worthing, Phys. Rev. 10, 377 (1917).
[CrossRef]

Adams, E. Q.

W. E. Forsythe and E. Q. Adams, Denison University Bull., J. Sci. Labs. 38, 1 (1943).

Barnes, B. T.

Forsythe, W. E.

Hulburt, E. O.

E. O. Hulburt, Astrophys. J. 45, 149 (1917).
[CrossRef]

Judd, D. B.

H. T. Wensel, D. B. Judd, and W. F. Roeser, J. Research Nat. Bur. Stand. 12, 527 (1934).
[CrossRef]

Pfund, A. H.

W. Weniger and A. H. Pfund, Phys. Rev. 14, 427 (1919).
[CrossRef]

Priest, I. G.

I. G. Priest, Nat. Bur. Stand. Bull. 18, 221 (1922).
[CrossRef]

Roeser, W. F.

H. T. Wensel, D. B. Judd, and W. F. Roeser, J. Research Nat. Bur. Stand. 12, 527 (1934).
[CrossRef]

Weniger, W.

W. Weniger and A. H. Pfund, Phys. Rev. 14, 427 (1919).
[CrossRef]

Wensel, H. T.

H. T. Wensel, D. B. Judd, and W. F. Roeser, J. Research Nat. Bur. Stand. 12, 527 (1934).
[CrossRef]

Worthing, A. G.

A. G. Worthing, Phys. Rev. 10, 377 (1917).
[CrossRef]

Zwikker, W.

W. Zwikker, Proc. K. Akad. Amst. 28, 499 (1925).

Astrophys. J. (1)

E. O. Hulburt, Astrophys. J. 45, 149 (1917).
[CrossRef]

Denison University Bull., J. Sci. Labs. (1)

W. E. Forsythe and E. Q. Adams, Denison University Bull., J. Sci. Labs. 38, 1 (1943).

J. Opt. Soc. Am. (3)

J. Research Nat. Bur. Stand. (1)

H. T. Wensel, D. B. Judd, and W. F. Roeser, J. Research Nat. Bur. Stand. 12, 527 (1934).
[CrossRef]

Nat. Bur. Stand. Bull. (1)

I. G. Priest, Nat. Bur. Stand. Bull. 18, 221 (1922).
[CrossRef]

Phys. Rev. (2)

A. G. Worthing, Phys. Rev. 10, 377 (1917).
[CrossRef]

W. Weniger and A. H. Pfund, Phys. Rev. 14, 427 (1919).
[CrossRef]

Proc. K. Akad. Amst. (1)

W. Zwikker, Proc. K. Akad. Amst. 28, 499 (1925).

Other (1)

Proceedings of the 8th Session, Commission Internationale de l’Eclairage (Cambridge, University Press, Cambridge, 1931), pp. 19–29.

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Figures (1)

Fig. 1
Fig. 1

Spectral emissivities of tungsten for constant temperatures, curves marked 300, 2000, 3000°K, and a range of wave-lengths and emissivities for the spectral wave-lengths as marked for range of temperatures. Heavy lines measured values; dotted lines extrapolated and calculated values.

Tables (4)

Tables Icon

Table I Spectral and total emissivities of tungsten.

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Table II Operating characteristics of a number of lamps.

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Table III Spectral radiant intensity* per 100 candles for the lamps described in Table II.

Tables Icon

Table IV Spectral data on some lamps for special uses.

Equations (4)

Equations on this page are rendered with MathJax. Learn more.

J λ d λ = c 1 λ - 5 A e c 2 / λ T - 1 d λ ,
J λ w = ϵ λ c 1 λ - 5 A e c 2 / λ T - 1 ,
ϵ λ = 1 - ρ λ .
V T 2.6 .