78 results on '"Fusina L."'
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2. The 2ν1 overtone band of H28SiD3
3. High resolution infrared spectroscopy of H 12C 13CD and H 13C 12CD: The bending states up to v4 + v5 = 2
4. High resolution infrared study of SbHD 2: The ground state and the Sb–H stretching bands ν1 and 2 ν1
5. The 2 ν4 overtone bands of F 35Cl 16O 3
6. High resolution infrared spectra of the first and second stretching overtone band systems of 123SbD 3
7. High resolution FTIR investigation of 12C 2H 2 in the FIR spectral range using synchrotron radiation
8. Intracavity Laser Absorption Spectroscopy and Fourier Transform Spectrum of the 3ν 1 band region of cyanoacetylene
9. The 2ν 5 overtone bands of perchloryl fluoride
10. Measured integrated band intensities and simulated line-by-line spectra for 12C 2HD between 25 and 2.5 μm, and new global vibration–rotation parameters for the bending vibrations
11. The stretching fundamental bands ν1, ν2 and ν4 of H 28SiD 3
12. The 2 ν1, 2 ν2 and 2 ν3 overtones of FClO 3
13. Rotation spectrum and high resolution infrared spectra of the fundamental bands of 121SbD 3. Determination of the ground state and equilibrium structures. Ab initio calculations of the spectroscopic parameters
14. The high resolution infrared bands ν1, ν2, ν4 and ν2 + ν5 of F 37Cl 16O 3
15. The vibration–rotation spectrum of 12C 2HD: new overtone bands and global vibrational analysis
16. NH 3 and PH 3 line parameters: the 2000 HITRAN update and new results
17. High resolution fourier transform spectrum of PD 3 in the region of the stretching overtone bands 2 ν1 and ν1+ ν3
18. The ν1 and ν3 stretching fundamental bands of PD 3
19. High resolution Raman spectra of hot bands associated with ν2 in [formula omitted]
20. The [formula omitted] and [formula omitted] bending fundamental bands of [formula omitted]
21. The Infrared Spectrum of 12C13CH2: The Bending States up to v4+v5=4
22. The vt=1 Rovibrational Hamiltonian for C3v Symmetric Top Molecules Containing One Quadrupolar Nucleus: Reductions and Application to AsF3
23. The Fundamental Bands in the Infrared Spectrum of Stibine (SbH 3)
24. The Infrared Spectrum of 13C 2D 2: The Bending States up to v4+ v5=2
25. The Ground State Spectroscopic Parameters and Equilibrium Structure of PD 3
26. High-Resolution Raman Spectra of ν2 and Associated Hot Bands of 12C2D2
27. The ν2 and ν4 bending fundamentals of phosphine (PH3)
28. Integrated band strengths of benzene vapour in the 600–1900 cm −1 region
29. Overtone, 2NH (ν1 + ν3) spectroscopy of 15NH3–Ar
30. New combination bands in 12C 13CH 2 around 0.83 μm recorded using FT-ICLAS
31. Erratum to “High resolution Fourier transform spectrum of PD 3 in the region of the stretching overtone bands 2 ν1 and ν1+ ν3” [J. Mol. Spectrosc. 221 (2003) 250–260]
32. Coherent FIR spectroscopy of molecules of atmospheric interest
33. Vibration-rotation spectra of 13C containing acetylene: anharmonic resonances
34. Vibrationally excited states in C3v molecules: CH and CD stretchings in CH 3CD 3
35. Carbon suboxide: The infrared spectrum from 1800 to 2600 cm −1
36. Carbon suboxide: The vibrational dependence of the ν7 bending potential function
37. The ν2, 2 ν2, 3 ν2, ν4, and ν2 + ν4 bands of 15NH 3
38. Hyperfine structure analysis of stibine in the ground and in the v4 = 1 states
39. Tunable FIR spectroscopy of CH 3CN between 569 GHz and 1.48 THz
40. Vibration-Rotation Spectra of 13C-Containing Acetylene: The Stretching Fundamentals
41. The ν2 band of D 218O
42. The far-infrared spectrum and spectroscopic parameters of PH 3 in the ground state
43. Intensities of lines in the bands ν2 and ν4 and the transition dipole moments of PH 3
44. The far-infrared spectrum of methyl cyanide, CH 3CN
45. Far-infrared spectra and spectroscopic parameters of NH 2D and ND 2H in the ground state
46. Hyperfine Structure Analysis of Arsine in the Ground, v2 = 1, and v4 = 1 States
47. Absorption of 12CH 3D at 6–10 μm: Triad ν3, ν5, ν6
48. The 2ν 1 Band of HOCl
49. Rotational Spectrum of the PH 3 Molecule in the v2 = 1 Vibrational State
50. The submillimeter-wave spectrum and spectroscopic constants of SO 2 in the ground state
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