Thr microwzwe spectrum of za3iF31' BF2 has been studied in the frequency range 24-40 GHz. hnelysis of the bxv r'e bllrrier spectrum is complicated by the presence of the heavy SiFs top. A computer treatment has been developed based on an iAM es outlined by Wilson et al. A non-periodic Mathieu equati
Microwave Spectrum and Barrier to Internal Rotation in CH3BF2
โ Scribed by Naylor, Robert E.; Wilson, E. Bright
- Book ID
- 121660904
- Publisher
- American Institute of Physics
- Year
- 1957
- Tongue
- English
- Weight
- 503 KB
- Volume
- 26
- Category
- Article
- ISSN
- 0021-9606
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The microwave rotational spectra of 2,4-difluorotoluene (C 6 H 3 CH 3 F 2 ) have been investigated in the ground and first excited torsional state in the frequency ranges 12.4-26.0 and 32.0-37.0 GHz. The true rotational constants for the ground state were determined to be A r ร 3070.287 MHz, B r ร 1
The microwave rotational spectra of ortho-tolunitrile (C 6 H 4 CH 3 CN) have been investigated in the ground torsional state in the frequency ranges of 22.0 -26.0 GHz and 32.0 -37.0 GHz. The true rotational constants were determined to be A r ฯญ 2890.98 MHz, B r ฯญ 1499.75 MHz, and C r ฯญ 993.58 MHz. A