This comprehensive yet easy-to-follow textbook covers both basic and sophisticated discrete mathematical concepts. It punctuates the rigorous treatment of theory with frequent uses of pertinent examples and exercises, enabling readers to achieve a feel for the subject at hand. The exercise hints and solutions are provided at the end of the book. To
This comprehensive yet easy-to-follow textbook covers both basic and sophisticated discrete mathematical concepts. It punctuates the rigorous treatment of theory with frequent uses of pertinent examples and exercises, enabling readers to achieve a feel for the subject at hand. The exercise hints and solutions are provided at the end of the book. ToHinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Sections include: Logic: Propositions and truth tables. Logical equivalence and logical implication. Algebra of propositions. Arguments in predicate logic Mathematical proof: Axioms and axiom systems. Mathematical induction. Sets: Operations on sets. Algebra of sets. Relations: Intersections and unions. Hasse diagrams. Functions: Injections and surjections. Databases - functional dependence and normal forms. Matrix algebra: Operations. The inverse of a matrix. Systems of linear equations: Matrix inverse method. Gaussian elimination. Algebraic structures: Some families of groups. Substructures. Morphisms. Boolean algebra: Switching circuits. Logic networks. Graph theory: Paths and circuits. Isomorphism of graphs. Trees. Applications of graph theory: Searching strategies. Networks and flows.
Sections include: Logic: Propositions and truth tables. Logical equivalence and logical implication. Algebra of propositions. Arguments in predicate logic Mathematical proof: Axioms and axiom systems. Mathematical induction. Sets: Operations on sets. Algebra of sets. Relations: Intersections and unions. Hasse diagrams. Functions: Injections and surjections. Databases - functional dependence and normal forms. Matrix algebra: Operations. The inverse of a matrix. Systems of linear equations: Matrix inverse method. Gaussian elimination. Algebraic structures: Some families of groups. Substructures. Morphisms. Boolean algebra: Switching circuits. Logic networks. Graph theory: Paths and circuits. Isomorphism of graphs. Trees. Applications of graph theory: Searching strategies. Networks and flows.
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