27 results on '"Cheung, A. S.-C."'
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2. Electronic transitions of palladium dimer
3. Electronic transitions of platinum monoboride
4. Electronic transitions of cobalt monoboride
5. Laser spectroscopy of NiI: New electronic states and hyperfine structure
6. Laser spectroscopy of iridium monoboride
7. Laser spectroscopy of NiBr: New electronic states and hyperfine structure
8. The application of a vacuum-ultraviolet Fourier transform spectrometer and synchrotron-radiation source to measurements of bands of NO. VII. The final report
9. Erratum: The application of a VUV Fourier transform spectrometer and synchrotron radiation source to measurements of absorption bands of NO [J. Chem. Phys. 115, 3719 (2001); 116, 155 (2002); 117, 10621 (2002); 119, 8373 (2003)]
10. Laser spectroscopy of NiI: Ground and low-lying electronic states
11. Application of a VUV Fourier transform spectrometer and synchrotron radiation source to measurements of. VI. The ε(0,0) band of NO
12. Rotational and hyperfine analysis of the near infrared 3Φ4–X 3Φ4 transitions of CoCl and CoI
13. Theoretical studies of the first-row transition metal phosphides
14. Laser spectroscopy of LaS: Hyperfine structure in the B 2Σ+–X 2Σ+ (0,0) band
15. Laser spectroscopy of NiBr: Ground and low-lying electronic states
16. The application of a vacuum ultraviolet Fourier transform spectrometer and synchrotron radiation source to measurements of: IV. The β(6,0) and γ(3,0) bands of NO
17. The hyperfine structure of the 1 3Δg state of Na2
18. Predicted predissociation linewidths in the Schumann–Runge bands of O2 compared with recent high resolution measurements
19. Fourier transform spectroscopy and cross section measurements of the Herzberg III bands of O2 at 295 K
20. The application of a VUV Fourier transform spectrometer and synchrotron radiation source to measurements of: II. The δ(1,0) band of NO
21. The application of a VUV Fourier transform spectrometer and synchrotron radiation source to measurements of: I. The β(9,0) band of NO
22. Isotopic dependence of predissociation linewidths in the Schumann-Runge bands of oxygen
23. Rotational dependence of the predissociation linewidths of the Schumann–Runge bands of O2
24. Predissociation of oxygen in the B 3Σ−u state
25. Predissociation linewidths of the (3,0)–(11,0) Schumann–Runge absorption bands of 18O2 and 16O 18O in the wavelength region 180–196 nm
26. Predissociation linewidths of the (1,0)–(12,0) Schumann–Runge absorption bands of O2 in the wavelength region 179–202 nm
27. Comment on predissociation of O2 in the B state
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