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Studia Logica 41 (2-3):131 - 139 (1982)

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  1. Recursively enumerable vector spaces.G. Metakides - 1977 - Annals of Mathematical Logic 11 (2):147.
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  • (1 other version)Effective Galois Theory.Peter La Roche - 1981 - Journal of Symbolic Logic 46 (2):385 - 392.
    Krull [4] extended Galois theory to arbitrary normal extensions, in which the Galois groups are precisely the profinite groups. Metakides and Nerode [7] produced two recursively presented algebraic extensionsK⊂Fof the rationals such thatFis abelian,Fis of infinite degree overK, and the Galois group ofFoverK, although of cardinalityc, has only one recursive element. This indicated the limits of effectiveness for Krull's theory. Nerode suggested developing a natural effective version of Krull's theory.It is evident from the classical literature that the free profinite group (...)
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  • R-maximal Boolean algebras.J. B. Remmel - 1979 - Journal of Symbolic Logic 44 (4):533-548.
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  • Recursively enumerable Boolean algebras.J. B. Remmel - 1978 - Annals of Mathematical Logic 15 (1):75.
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  • Recursion theory on orderings. I. a model theoretic setting.G. Metakides & J. B. Remmel - 1979 - Journal of Symbolic Logic 44 (3):383-402.
    In [6], Metakides and Nerode introduced the study of the lattice of recursively enumerable substructures of a recursively presented model as a means to understand the recursive content of certain algebraic constructions. For example, the lattice of recursively enumerable subspaces,, of a recursively presented vector spaceV∞has been studied by Kalantari, Metakides and Nerode, Retzlaff, Remmel and Shore. Similar studies have been done by Remmel [12], [13] for Boolean algebras and by Metakides and Nerode [9] for algebraically closed fields. In all (...)
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  • Effective content of field theory.G. Metakides - 1979 - Annals of Mathematical Logic 17 (3):289.
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  • (1 other version)Effective galois theory.Peter la Roche - 1981 - Journal of Symbolic Logic 46 (2):385-392.
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