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Embeddings of computable structures - MaRDI portal

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Embeddings of computable structures (Q976535)

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scientific article; zbMATH DE number 5720469
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English
Embeddings of computable structures
scientific article; zbMATH DE number 5720469

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    Embeddings of computable structures (English)
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    11 June 2010
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    The authors consider four notions of embedding property, namely, a class of computable presentations of computable structures is said to have {\parindent5.5mm \begin{itemize}\item[a)] the strong embedding property if for all its structures \(A_0\) and \(A_1\), if \(A_0\) is embeddable into \(A_1\) then there exists a computable embedding from \(A_0\) to \(A_1\); \item[b)] the weak domain embedding property if for all its structures \(A_0\) and \(A_1\), if \(A_0\) is embeddable into \(A_1\) then there is a computable presentation \(A_0'\cong A_0\) and a computable embedding from \(A_0'\) to \(A_1\); \item[c)] the weak range embedding property if for all its structures \(A_0\) and \(A_1\), if \(A_0\) is embeddable into \(A_1\) then there is a computable presentation \(A_1'\cong A_1\) and a computable embedding from \(A_0\) to \(A_1'\); \item[d)] the weak embedding property if for all its structures \(A_0\) and \(A_1\), if \(A_0\) is embeddable into \(A_1\) then there exist computable presentations \(A_0'\cong A_0\), \(A_1'\cong A_1\), and a computable embedding from \(A_0'\) to \(A_1'\). \end{itemize}} The authors give a complete picture of implications between these properties and give examples showing that there are no other implications. The examples used to distinguish these properties are found among the natural classes of structures, like computable ordered abelian groups, computable trees, some class of computable posets, computable equivalences, computable Boolean algebras, and computable algebraically closed fields.
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    computable embedding
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    computable structure
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    computable presentation
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    computable ordered abelian group
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    computable tree
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    computable equivalence
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    computable Boolean algebra
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    computable algebraically closed field
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