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A proof theory for general unification

In this monograph we study two generalizations of standard unification, E-unification and higher-order unification, using an abstract approach orig­ inated by Herbrand and developed in the case of standard first-order unifi­ cation by Martelli and Montanari. The formalism presents the unification co...

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Autor principal: Snyder, Wayne
Lenguaje:eng
Publicado: Springer 1991
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-1-4612-0435-0
http://cds.cern.ch/record/2006124
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author Snyder, Wayne
author_facet Snyder, Wayne
author_sort Snyder, Wayne
collection CERN
description In this monograph we study two generalizations of standard unification, E-unification and higher-order unification, using an abstract approach orig­ inated by Herbrand and developed in the case of standard first-order unifi­ cation by Martelli and Montanari. The formalism presents the unification computation as a set of non-deterministic transformation rules for con­ verting a set of equations to be unified into an explicit representation of a unifier (if such exists). This provides an abstract and mathematically elegant means of analysing the properties of unification in various settings by providing a clean separation of the logical issues from the specification of procedural information, and amounts to a set of 'inference rules' for unification, hence the title of this book. We derive the set of transformations for general E-unification and higher­ order unification from an analysis of the sense in which terms are 'the same' after application of a unifying substitution. In both cases, this results in a simple extension of the set of basic transformations given by Herbrand­ Martelli-Montanari for standard unification, and shows clearly the basic relationships of the fundamental operations necessary in each case, and thus the underlying structure of the most important classes of term unifi­ cation problems.
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spelling cern-20061242021-04-21T20:23:59Zdoi:10.1007/978-1-4612-0435-0http://cds.cern.ch/record/2006124engSnyder, WayneA proof theory for general unificationMathematical Physics and MathematicsIn this monograph we study two generalizations of standard unification, E-unification and higher-order unification, using an abstract approach orig­ inated by Herbrand and developed in the case of standard first-order unifi­ cation by Martelli and Montanari. The formalism presents the unification computation as a set of non-deterministic transformation rules for con­ verting a set of equations to be unified into an explicit representation of a unifier (if such exists). This provides an abstract and mathematically elegant means of analysing the properties of unification in various settings by providing a clean separation of the logical issues from the specification of procedural information, and amounts to a set of 'inference rules' for unification, hence the title of this book. We derive the set of transformations for general E-unification and higher­ order unification from an analysis of the sense in which terms are 'the same' after application of a unifying substitution. In both cases, this results in a simple extension of the set of basic transformations given by Herbrand­ Martelli-Montanari for standard unification, and shows clearly the basic relationships of the fundamental operations necessary in each case, and thus the underlying structure of the most important classes of term unifi­ cation problems.Springeroai:cds.cern.ch:20061241991
spellingShingle Mathematical Physics and Mathematics
Snyder, Wayne
A proof theory for general unification
title A proof theory for general unification
title_full A proof theory for general unification
title_fullStr A proof theory for general unification
title_full_unstemmed A proof theory for general unification
title_short A proof theory for general unification
title_sort proof theory for general unification
topic Mathematical Physics and Mathematics
url https://dx.doi.org/10.1007/978-1-4612-0435-0
http://cds.cern.ch/record/2006124
work_keys_str_mv AT snyderwayne aprooftheoryforgeneralunification
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