Isomorphism types of Rogers semilattices for families from different levels of the arithmetical hierarchy
Author:
Publisher
Springer Science and Business Media LLC
Subject
Logic,Analysis
Link
http://link.springer.com/content/pdf/10.1007/s10469-006-0034-3.pdf
Reference14 articles.
1. S. S. Goncharov and A. Sorbi, “Generalized computable numerations and nontrivial Rogers semilattices,” Algebra Logika, 36, No. 6, 621–641 (1997).
2. S. A. Badaev, S. S. Goncharov, and A. Sorbi, “Isomorphism types and theories of Rogers semilattices of arithmetical numberings,” in Computability and Models, S. B. Cooper and S. S. Goncharov (eds.), Kluwer Academic/Plenum Publishers, New York (2003), pp. 79–91.
3. S. A. Badaev, S. S. Goncharov, and A. Sorbi, “Elementary properties of Rogers semilattices of arithmetical numberings,” in Proc. 7th and 8th Asian Logic Conf., R. Downey, D. Ding, S. H. Tung, etc. (eds.), World Scientific, Singapore (2003), pp. 1–10.
4. S. A. Badaev, S. S. Goncharov, and A. Sorbi, “Elementary theories for Rogers semilattices,” Algebra Logika, 44, No. 3, 261–268 (2005).
5. A. I. Mal’tsev, Algorithms and Recursive Functions [in Russian], Nauka, Moscow (1965).
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