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Allamandola, L. J. & Norman, C. A. (1979). Infra-red Molecular Line Emission
from Grain Surfaces in Dense Clouds. Astron. Astrophys. 77,
261. [PDF]
 
Hagen, W., Allamandola, L. J., & Greenberg, J. M. (1979). Interstellar
Molecule Formation in Grain Mantles: The Laboratory Analog Experiments, Results
and Implications. Astrophys. Sp. Sci. 65, 215.
Paciotti, M., Amols, H., Bradbury, J., Rivera, O., Hogstrom, K., Smith,
A., Inoue, H., Laubacher, D., & Sandford, S. (1979). Pion beam development
for the LAMPF biomedical project. IEEE Trans. Nucl. Sci. (USA),
Vol. ns-26, no. 3, pt. a, 3071-3073.
1978

Allamandola, L. J., Lucas, D., & Pimentel, G. C. (1978). Synchronized
Flash Photolysis and Pulse Deposition in Matrix Isolation Experiments. Rev.
Sci. Inst. 49, 913.
 
Allamandola, L. J., & Norman, C. A. (1978). Infra-Red Emission Lines from
Molecules in Grain Mantles. Astron. Astrophys. 63, L23-26. [PDF]
 
Allamandola, L. J., & Norman, C. A. (1978). Infrared Molecular Line Emission
from Grain Surfaces in Dense Clouds. Astron. Astrophys. 66,
129-135. [PDF]
Allamandola, L. J., Rojhantalab, H. M., Nibler, J. W. (1978). Vibrational
Energy Transfer Studies of Matrix Isolated C2-.
Ber. Bunsenges, Phys. Chem. 82, 126-128.
Rojhantalab, H. M., Allamandola, L. J., & Nibler, J. W. (1978). Flourescence
Studies of Copper (II) Oxide in an Argon Matrix. Ber. Bunsenges. Phys.
Chem. 82, 107.
Sanford,
A., Sandford, S., Caravella, F., Merritt, L., Sheldon, J., & Ward,
R. (1978). Seismic studies of the Los Medanos area in Southeastern New
Mexico. Report prepared for Sandia National Laboratories, Contract 03-6233,
Albuquerque, NM.
1977
Allamandola, L. J., Rojhantalab, H. M., Nibler, J. W., & Chappell,
T. (1977). Vibrational Relaxation Studies of Matrix Isolated C2-.
J. Chem. Phys. 67, 99.
1976
Allamandola, L. J., & Nibler, J. W. (1976). Vibrational Spectra and
Structure of Methylberyllium Borohydride. J. Am. Chem. Soc. 98,
2096.
1974
Allamandola, L. J., & Nibler, J. W. (1974). Vibrational Lifetime Measurements
of Matrix Isolated Molecules by an Optical "Double-Resonance" Method.
Chem. Phys. Lett. 28, 335.
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