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  1. P. S. Laplace, Mécanique Celeste, Vol. 4, Chap. 11 (1800).
  2. F. Linke, Handbuch der Geophysik, Gebr. Bornträger, Berlin, 1942, Vol. 8, p. 240 ff.
  3. A. Bemporad, Mitteil. Grossherzogl. Sternwarte Heidelberg 4 (1904).
  4. S. Valley, Ed AFCRL Handbook of Geophysics (McGraw Hill, New York, 1965), p. 16–7.
  5. F. Link, L. Neužil, Tables of Light Trajectories in the Terrestrial Atmosphere (Hermann, Paris, 1969).
  6. F. Linke, Handbuch der Geophysik, (Gebr. Bornträger, Berlin, 1942), Vol. 8, p. 244.
  7. F. Linke, Meteorologisches Handbuch, II (Akademische Verlagsgesellschaft Geest und Portig, Leipzig, 1953), Table 91.

1904 (1)

A. Bemporad, Mitteil. Grossherzogl. Sternwarte Heidelberg 4 (1904).

Bemporad, A.

A. Bemporad, Mitteil. Grossherzogl. Sternwarte Heidelberg 4 (1904).

Laplace, P. S.

P. S. Laplace, Mécanique Celeste, Vol. 4, Chap. 11 (1800).

Link, F.

F. Link, L. Neužil, Tables of Light Trajectories in the Terrestrial Atmosphere (Hermann, Paris, 1969).

Linke, F.

F. Linke, Handbuch der Geophysik, Gebr. Bornträger, Berlin, 1942, Vol. 8, p. 240 ff.

F. Linke, Meteorologisches Handbuch, II (Akademische Verlagsgesellschaft Geest und Portig, Leipzig, 1953), Table 91.

F. Linke, Handbuch der Geophysik, (Gebr. Bornträger, Berlin, 1942), Vol. 8, p. 244.

Neužil, L.

F. Link, L. Neužil, Tables of Light Trajectories in the Terrestrial Atmosphere (Hermann, Paris, 1969).

Mitteil. Grossherzogl. Sternwarte Heidelberg (1)

A. Bemporad, Mitteil. Grossherzogl. Sternwarte Heidelberg 4 (1904).

Other (6)

S. Valley, Ed AFCRL Handbook of Geophysics (McGraw Hill, New York, 1965), p. 16–7.

F. Link, L. Neužil, Tables of Light Trajectories in the Terrestrial Atmosphere (Hermann, Paris, 1969).

F. Linke, Handbuch der Geophysik, (Gebr. Bornträger, Berlin, 1942), Vol. 8, p. 244.

F. Linke, Meteorologisches Handbuch, II (Akademische Verlagsgesellschaft Geest und Portig, Leipzig, 1953), Table 91.

P. S. Laplace, Mécanique Celeste, Vol. 4, Chap. 11 (1800).

F. Linke, Handbuch der Geophysik, Gebr. Bornträger, Berlin, 1942, Vol. 8, p. 240 ff.

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Figures (1)

Fig. 1
Fig. 1

Deviation of airmasses calculated using three approximation formulas from airmasses calculated using Bemporad’s airmass function, vs elevation.

Equations (4)

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M = 1 A 0 ( r + a ) 0.9 a d a ( r + a ) 2 - r 2 cos 2 h [ 1 + 2 Δ ( 1 - 0.9 a ) ] ,
M = cosc h ,
M = cosc h - ( 2.8 / h 2 )
M = cosc ( h + 1.5 h - 0.72 ) ,

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