20 results on '"Lopes, Kelson C."'
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2. Factorial design analysis of the effects of wave function modifications on calculated HC and CC stretching frequencies in H 2C [dbnd]CHX and HC [tbnd]CX
3. An ab initio study of the molecular properties of the propyne–water hydrogen-bonded complex
4. A theoretical study of hydrogen complexes of the X [sbnd]H-π type between propyne and HF, HCL or HCN
5. An ab initio study of the C 2H 2[sbnd]HF, C 2H(CH 3) [sbnd]HF and C 2(CH 3) 2[sbnd]HF hydrogen-bonded complexes
6. An application of chemometric techniques to analyze the effects of the wave function modifications on the intermolecular stretching frequencies of the hydrogen-bonded complexes
7. Factorial design analysis of the effects of wave function modifications on calculated HC and CC stretching frequencies in H2CCHX and HCCX
8. Theoretical calculations of the substituent effect on molecular properties of the RCN⋯HF hydrogen-bonded complexes with R=NH2, CH3O, CH3, OH, SH, H, Cl, F, CF3, CN and NO2
9. Effects of wave function modifications on calculated HC and CC stretching frequencies
10. A theoretical study of hydrogen complexes of the XH-π type between propyne and HF, HCL or HCN
11. An ab initio study of the C2H2HF, C2H(CH3) HF and C2(CH3)2HF hydrogen-bonded complexes
12. Theoretical study of cooperative effects in the homo‐ and heteromeric hydrogen bond chains (HCN)nHF with n = 1, 2, and 3
13. An ab-initio study of the C3H6HX, C2H4HX and C2H2HX hydrogen-bonded complexes with XF or CI
14. Factorial design analysis of the effects of wave function modifications on calculated HC and CC stretching frequencies in H2CC
15. Effects of wave function modifications on calculated H—C and C&tbond;C stretching frequencies.
16. Theoretical study of cooperative effects in the homo- and heteromeric hydrogen bond chains (HCN)n&bond;HF with n = 1, 2, and 3.
17. Effects of wave function modifications on calculated carbon–hydrogen bond lengths
18. An ab initio study of the C2H2—HF, C2H(CH3)—HF and C2(CH3)2—HF hydrogen-bonded complexes.
19. Effects of wave function modifications on calculated carbon–carbontriple bond lengths.
20. Theoretical calculations of the substituent effect on molecular properties of the RC≡N⋯HF hydrogen-bonded complexes with R = NH2, CH3O, CH3, OH, SH, H, Cl, F, CF3, CN and NO2.
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