## Abstract The binding energies, geometries, and electronic structures of cationic iron๏ฃฟbenzene and iron๏ฃฟpyridine complexes have been studied by the two hybrid DFTโHF approaches __m__PW1PW91 and B3LYP, as well as the AQCC and MRโAQCC extension. The AQCC results confirm the experimental binding ene
Interaction of an explosion bubble with a fixed rigid structure
โ Scribed by P.J. Harris; A. Verma; R. Chakrabarti
- Publisher
- John Wiley and Sons
- Year
- 1999
- Tongue
- English
- Weight
- 92 KB
- Volume
- 29
- Category
- Article
- ISSN
- 0271-2091
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โฆ Synopsis
In the recent times, the boundary integral method has been utilised extensively in the study of bubble dynamics. This paper presents a modified form of the boundary integral method to model the motion of a bubble close to a fixed rigid structure. The resulting integral equations are solved using the boundary element method, and the system is integrated through time using a simple Euler scheme. Finally, the results of the model are presented to predict the motion of a bubble in a number of typical axisymmetric situations.
๐ SIMILAR VOLUMES
Electronic structures and properties of carbides MC, M C M s 5 . ลฝ . Fe, Ni, Cu , and TiC and Ti C were studied using density functional methods DF , 7 7 7 chosen. Optimization of the position of the C atom in the cluster, dissociation energies, distribution of charges in the molecule, and dipolar