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Introduction to Annotated Logics = F...
~
Akama, Seiki.
Introduction to Annotated Logics = Foundations for Paracomplete and Paraconsistent Reasoning /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Introduction to Annotated Logics/ by Jair Minoro Abe, Seiki Akama, Kazumi Nakamatsu.
Reminder of title:
Foundations for Paracomplete and Paraconsistent Reasoning /
Author:
Abe, Jair Minoro.
other author:
Akama, Seiki.
Description:
X, 190 p. 22 illus.online resource. :
Contained By:
Springer Nature eBook
Subject:
Computational intelligence. -
Online resource:
https://doi.org/10.1007/978-3-319-17912-4
ISBN:
9783319179124
Introduction to Annotated Logics = Foundations for Paracomplete and Paraconsistent Reasoning /
Abe, Jair Minoro.
Introduction to Annotated Logics
Foundations for Paracomplete and Paraconsistent Reasoning /[electronic resource] :by Jair Minoro Abe, Seiki Akama, Kazumi Nakamatsu. - 1st ed. 2015. - X, 190 p. 22 illus.online resource. - Intelligent Systems Reference Library,881868-4394 ;. - Intelligent Systems Reference Library,67.
Introduction -- Propositional Annotated Logics P -- Predicate Annotated Logics Q -- Formal Issues -- Variants and Related Systems -- Applications -- Conclusions.
This book is written as an introduction to annotated logics. It provides logical foundations for annotated logics, discusses some interesting applications of these logics and also includes the authors' contributions to annotated logics. The central idea of the book is to show how annotated logic can be applied as a tool to solve problems of technology and of applied science. The book will be of interest to pure and applied logicians, philosophers, and computer scientists as a monograph on a kind of paraconsistent logic. But, the layman will also take profit from its reading.
ISBN: 9783319179124
Standard No.: 10.1007/978-3-319-17912-4doiSubjects--Topical Terms:
568984
Computational intelligence.
LC Class. No.: Q342
Dewey Class. No.: 006.3
Introduction to Annotated Logics = Foundations for Paracomplete and Paraconsistent Reasoning /
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