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References

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  1. A. Goldman, T. G. Kyle, F. S. Bonomo, Appl. Opt. 10, 65 (1971).
    [CrossRef] [PubMed]
  2. P. Brockman, C. H. Bair, F. Allario, Appl. Opt. 17, 91 (1978).
    [CrossRef] [PubMed]
  3. V. Dana, Spectrochim. Acta Part A: 34, 1027 (1978).
    [CrossRef]
  4. A. Goldman, S. C. Schmidt, J. Quant. Spectrosc. Radiat. Transfer 13, 709 (1973).
    [CrossRef]
  5. J. C. Breeze, C. C. Ferriso, C. B. Ludwig, M. Malkmus, J. Chem. Phys. 42, 402 (1965).
    [CrossRef]

1978 (2)

1973 (1)

A. Goldman, S. C. Schmidt, J. Quant. Spectrosc. Radiat. Transfer 13, 709 (1973).
[CrossRef]

1971 (1)

1965 (1)

J. C. Breeze, C. C. Ferriso, C. B. Ludwig, M. Malkmus, J. Chem. Phys. 42, 402 (1965).
[CrossRef]

Allario, F.

Bair, C. H.

Bonomo, F. S.

Breeze, J. C.

J. C. Breeze, C. C. Ferriso, C. B. Ludwig, M. Malkmus, J. Chem. Phys. 42, 402 (1965).
[CrossRef]

Brockman, P.

Dana, V.

V. Dana, Spectrochim. Acta Part A: 34, 1027 (1978).
[CrossRef]

Ferriso, C. C.

J. C. Breeze, C. C. Ferriso, C. B. Ludwig, M. Malkmus, J. Chem. Phys. 42, 402 (1965).
[CrossRef]

Goldman, A.

A. Goldman, S. C. Schmidt, J. Quant. Spectrosc. Radiat. Transfer 13, 709 (1973).
[CrossRef]

A. Goldman, T. G. Kyle, F. S. Bonomo, Appl. Opt. 10, 65 (1971).
[CrossRef] [PubMed]

Kyle, T. G.

Ludwig, C. B.

J. C. Breeze, C. C. Ferriso, C. B. Ludwig, M. Malkmus, J. Chem. Phys. 42, 402 (1965).
[CrossRef]

Malkmus, M.

J. C. Breeze, C. C. Ferriso, C. B. Ludwig, M. Malkmus, J. Chem. Phys. 42, 402 (1965).
[CrossRef]

Schmidt, S. C.

A. Goldman, S. C. Schmidt, J. Quant. Spectrosc. Radiat. Transfer 13, 709 (1973).
[CrossRef]

Appl. Opt. (2)

J. Chem. Phys. (1)

J. C. Breeze, C. C. Ferriso, C. B. Ludwig, M. Malkmus, J. Chem. Phys. 42, 402 (1965).
[CrossRef]

J. Quant. Spectrosc. Radiat. Transfer (1)

A. Goldman, S. C. Schmidt, J. Quant. Spectrosc. Radiat. Transfer 13, 709 (1973).
[CrossRef]

Spectrochim. Acta Part A (1)

V. Dana, Spectrochim. Acta Part A: 34, 1027 (1978).
[CrossRef]

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Figures (2)

Fig. 1
Fig. 1

Laboratory spectra of HNO3 at −33°C and +21°C. The 0.1-cm−1 resolution spectra (upper frames) were degraded to 5-cm−1 resolution (lower frames).

Fig. 2
Fig. 2

Total band intensity for the 845–925-cm−1 region of HNO3 as a function of temperature. The dashed line represents the average of the present measurements, which have ±5% error bars.

Tables (1)

Tables Icon

Table I Temperature Dependence of HNO3 Absorption Coefficients (cm−1 atm−1) at STP

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