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Part exposition and part presentation of new results, this monograph deals with that area of mathematics which has both combinatorial group theory and mathematical logic in common. Its main topics are the word problem for groups, the conjugacy problem for groups, and the isomorphism problem for groups. The presentation depends on previous results of J. L. Britton, which, with other factual background, are treated in detail.
Group theory --- 510.6 --- Mathematical logic --- 510.6 Mathematical logic --- Group theory. --- Logic, Symbolic and mathematical. --- Groupes, Théorie des --- Groups, Theory of --- Substitutions (Mathematics) --- Algebra --- Algebra of logic --- Logic, Universal --- Symbolic and mathematical logic --- Symbolic logic --- Mathematics --- Algebra, Abstract --- Metamathematics --- Set theory --- Syllogism --- Abelian group. --- Betti number. --- Characteristic function (probability theory). --- Characterization (mathematics). --- Combinatorial group theory. --- Conjecture. --- Conjugacy class. --- Conjugacy problem. --- Contradiction. --- Corollary. --- Cyclic permutation. --- Decision problem. --- Diffeomorphism. --- Direct product. --- Direct proof. --- Effective method. --- Elementary class. --- Embedding. --- Enumeration. --- Epimorphism. --- Equation. --- Equivalence relation. --- Exact sequence. --- Existential quantification. --- Finite group. --- Finite set. --- Finitely generated group. --- Finitely presented. --- Free group. --- Free product. --- Fundamental group. --- Fundamental theorem. --- Group (mathematics). --- Gödel numbering. --- Homomorphism. --- Homotopy. --- Inner automorphism. --- Markov property. --- Mathematical logic. --- Mathematical proof. --- Mathematics. --- Monograph. --- Natural number. --- Nilpotent group. --- Normal subgroup. --- Notation. --- Permutation. --- Polycyclic group. --- Presentation of a group. --- Quotient group. --- Recursive set. --- Requirement. --- Residually finite group. --- Semigroup. --- Simple set. --- Simplicial complex. --- Solvable group. --- Statistical hypothesis testing. --- Subgroup. --- Theorem. --- Theory. --- Topology. --- Transitive relation. --- Triviality (mathematics). --- Truth table. --- Turing degree. --- Turing machine. --- Without loss of generality. --- Word problem (mathematics). --- Groupes, Théorie des --- Décidabilité (logique mathématique)
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Group theory and topology are closely related. The region of their interaction, combining the logical clarity of algebra with the depths of geometric intuition, is the subject of Combinatorial Group Theory and Topology. The work includes papers from a conference held in July 1984 at Alta Lodge, Utah.Contributors to the book include Roger Alperin, Hyman Bass, Max Benson, Joan S. Birman, Andrew J. Casson, Marshall Cohen, Donald J. Collins, Robert Craggs, Michael Dyer, Beno Eckmann, Stephen M. Gersten, Jane Gilman, Robert H. Gilman, Narain D. Gupta, John Hempel, James Howie, Roger Lyndon, Martin Lustig, Lee P. Neuwirth, Andrew J. Nicas, N. Patterson, John G. Ratcliffe, Frank Rimlinger, Caroline Series, John R. Stallings, C. W. Stark, and A. Royce Wolf.
Combinatorial group theory --- Topology --- Abelian group. --- Algebraic equation. --- Algebraic integer. --- Automorphism. --- Basis (linear algebra). --- Betti number. --- Cayley graph. --- Cayley–Hamilton theorem. --- Characteristic polynomial. --- Characteristic subgroup. --- Characterization (mathematics). --- Classifying space. --- Combinatorial group theory. --- Combinatorics. --- Commutative algebra. --- Commutative property. --- Commutator subgroup. --- Compactification (mathematics). --- Complement (set theory). --- Conformal map. --- Conjugacy class. --- Connected component (graph theory). --- Connectivity (graph theory). --- Coprime integers. --- Coset. --- Coxeter group. --- Cyclic group. --- Cyclic permutation. --- Degeneracy (mathematics). --- Dehn's lemma. --- Diagram (category theory). --- Dirac delta function. --- Disk (mathematics). --- Epimorphism. --- Equation. --- Euclidean group. --- Finite group. --- Finitely generated abelian group. --- Finitely generated group. --- Free abelian group. --- Free group. --- Freiheitssatz. --- Fuchsian group. --- Function (mathematics). --- Fundamental domain. --- Fundamental group. --- Fundamental lemma (Langlands program). --- G-module. --- General linear group. --- Generating set of a group. --- Geodesic. --- Graph (discrete mathematics). --- Graph of groups. --- Graph product. --- Group theory. --- Haken manifold. --- Harmonic analysis. --- Homological algebra. --- Homology (mathematics). --- Homomorphism. --- Homotopy. --- Hurwitz's theorem (number theory). --- Hyperbolic 3-manifold. --- Identity theorem. --- Inclusion map. --- Inequality (mathematics). --- Inner automorphism. --- Intersection (set theory). --- Intersection number (graph theory). --- Intersection number. --- Invertible matrix. --- Jacobian matrix and determinant. --- Knot theory. --- Limit point. --- Mapping class group. --- Mapping cone (homological algebra). --- Mathematical induction. --- Module (mathematics). --- Parity (mathematics). --- Poincaré conjecture. --- Prime number. --- Pullback (category theory). --- Quotient group. --- Representation theory. --- Residually finite group. --- Riemann surface. --- Seifert–van Kampen theorem. --- Separatrix (mathematics). --- Set theory. --- Simplicial complex. --- Sphere theorem (3-manifolds). --- Sphere theorem. --- Subgroup. --- Sylow theorems. --- Theorem. --- Topology. --- Union (set theory). --- Uniqueness theorem. --- Variable (mathematics). --- Word problem (mathematics).
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