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Bestseller
BestsellerE-book
Author Magnus, P. D., author.

Title forall x Calgary : an introduction to formal logic / by P. D. Magnus, Tim Button ; with additions by J. Robert Loftis, Robert Trueman ; remixed and revised by Aaron Thomas-Bolduc, Richard Zach.

Publication Info. Calgary : forallx.openlogicproject.org, 2020.
[Victoria] : BCcampus, BC Open Textbook Project.

Item Status

Edition Fall 2020 edition.
Description 1 online resource (viii, 405 pages)
text file
PDF
Physical Medium polychrome
Note This work is licensed under the Creative Commons Attribution CC-BY.
This bibliographic record is available under the Creative Commons CC0 "No Rights Reserved" license.
Summary "forall x: Calgary is a full-featured textbook on formal logic. It covers key notions of logic such as consequence and validity of arguments, the syntax of truth-functional propositional logic TFL and truth-table semantics, the syntax of first-order (predicate) logic FOL with identity (first-order interpretations), translating (formalizing) English in TFL and FOL, and Fitch-style natural deduction proof systems for both TFL and FOL. It also deals with some advanced topics such as modal logic, soundness, and functional completeness. Exercises with solutions are available. It is provided in PDF (for screen reading, printing, and a special version for dyslexics) and in LaTeX source code. A proof editor/checker for the proof system used is available at proofs.openlogicproject.org."--BCcampus website.
Local Note Open Educational Resources (OER). Open Textbooks
Promoted: Local to Global Cooperative Open Textbook Library
Subject Logic -- Textbooks.
Logic.
Genre/Form Textbooks.
Subject Electronic books.
Electronic books.
Genre/Form Electronic books.
Textbooks.
Added Author Button, Tim, author.
Loftis, J. Robert. forall x, Lorain County remix. Selections.
Thomas-Bolduc, Aaron, contributor, editor.
Zach, Richard, contributor, editor.
BC Open Textbook Project, distributor.
BCcampus.
Added Title forall x
forall x : an introduction to formal logic, Calgary
Introduction to formal logic