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Titlebook: Information Systems Design and Intelligent Applications; Proceedings of Secon J. K. Mandal,Suresh Chandra Satapathy,Anirban Mukh Conference

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G. Hemakumar,P. Punithadimensional compounds will be remembered as a major event. Dealing very widely at the beginning with two-dimensional structures and intercalation chemistry, this theme progressively evolved as the synthesis of one-dimensional conductors increased, along with the observation of their remarkable prope
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Aritra Rudra,Parag Kumar Guha Thakurta,Rajarshi Poddarof crystal co­ hesion, i. e. , on the question of what holds crystals together. The names of M. Born, E. Madelung, P. P. Ewald, F. Bloch, E. P. Wigner, and J. E. Mayer are, in particular, associated with the pre-1940 work on the cohesion of inorganic lattices. The advent of digital computers brought
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Apeksha Prajapati,Bimal Kumar Mishra of crystal defects already exist, a new book has to be especially justified, and here its main justification lies in its treatment of crystal­ line interfaces. About 1961, the work of the author, essentially based on the fundamental work of Professor F. C. Frank, started to branch away from the mai
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Priyanka Jaiswal,Abhimanyu Kumar,Sachin Tripathimolecular mechanics calculations. There is almost general consensus that this is possible only for rigid molecules, and only for crystals with one single molecular entity in the asymmetric unit. Even for this severely restricted subset of organic molecular crystalline systems, success is measured by
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B. Abhinaya,N. Sri Madhava Rajad. Because one is looking at a crystalfield excited state resonance, the exchange, even if isotropic, does not act as a secular perturbation. This means that one obtains different effects and has access to more information about the dynamic effects of exchange than in conventional paramagnetic reson
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