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References

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  1. M. Czerny, Zeits. f. Physik 53, 1–12 (1929); M. Czerny and P. Mollet, Zeits. f. Physik 108, 85–100 (1937).
    [CrossRef]

1929 (1)

M. Czerny, Zeits. f. Physik 53, 1–12 (1929); M. Czerny and P. Mollet, Zeits. f. Physik 108, 85–100 (1937).
[CrossRef]

Czerny, M.

M. Czerny, Zeits. f. Physik 53, 1–12 (1929); M. Czerny and P. Mollet, Zeits. f. Physik 108, 85–100 (1937).
[CrossRef]

Zeits. f. Physik (1)

M. Czerny, Zeits. f. Physik 53, 1–12 (1929); M. Czerny and P. Mollet, Zeits. f. Physik 108, 85–100 (1937).
[CrossRef]

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Figures (4)

Fig. 1
Fig. 1

Design of the mirror spectrograph used in this work.

Fig. 2
Fig. 2

Tracing the course of a ray (5461) which passes through the prism at minimum deviation and of another ray (3650) not passing at minimum deviation.

Fig. 3
Fig. 3

The dispersion curve of methyl methacrylate polymer at 23°C.

Fig. 4
Fig. 4

The transmission curve of a methyl methacrylate polymer plate 5 mm thick.

Equations (5)

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sin i 1 sin r 1 = sin i 2 sin r 2             sin r 2 = sin i 2 sin r 1 sin i 1 .
sin r 2 = sin A cos r 1 - cos A sin r 1 .
sin i 1 sin A cos r 1 - sin i 1 cos A sin r 1 = sin i 2 sin r 1 sin r 1 cos r 1 = tan r 1 = sin i 1 sin A sin i 1 cos A + sin i 2 ,
r 1 = tan - 1 sin i 1 sin A sin i 1 cos A + sin i 2 ,
n 3650 = sin i 1 / sin r 1 .