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Differential geometry. Global analysis --- Concordances (Topology) --- Knot theory --- Knots (Topology) --- Low-dimensional topology --- Isotopies (Topology) --- Piecewise linear topology --- Topological imbeddings --- Knot theory. --- Topologie. --- Noeuds, Théorie des.
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Algebraic geometry --- Concordances (Topology) --- Isotopies (Topology) --- Piecewise linear topology --- PL topology --- Manifolds (Mathematics) --- Topology --- Homeomorphisms --- Topological imbeddings --- Piecewise linear topology. --- Topologie linéaire par morceaux. --- Isotopies (topologie)
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Analytical spaces --- 517.518.5 --- Theory of the Fourier integral --- Topological imbeddings. --- Isometrics (Mathematics) --- Metric spaces. --- Lp spaces. --- Isometrics (Mathematics). --- 517.518.5 Theory of the Fourier integral --- Topological imbeddings --- Metric spaces --- Lp spaces --- Isométrie (Mathématiques) --- Espaces Lp --- Espaces métriques --- Espaces fonctionnels --- Function spaces
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Algebraic geometry --- CW complexes --- Group actions (Mathematics) --- Manifolds (Mathematics) --- Topological imbeddings --- Topological transformation groups --- Transformation groups --- Embeddings, Topological --- Imbeddings, Topological --- Topological embeddings --- Embeddings (Mathematics) --- Geometry, Differential --- Topology --- Actions, Group (Mathematics) --- Algebraic varieties --- Algebraic topology --- Complexes --- Topological transformation groups. --- CW complexes. --- Topological imbeddings. --- Groupes topologiques de transformations. --- CW-complexes. --- Plongements topologiques. --- Actions de groupes (mathématiques)
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Group theory --- Three-manifolds (Topology) --- Topological imbeddings --- Embeddings, Topological --- Imbeddings, Topological --- Topological embeddings --- Embeddings (Mathematics) --- 3-manifolds (Topology) --- Manifolds, Three dimensional (Topology) --- Three-dimensional manifolds (Topology) --- Low-dimensional topology --- Topological manifolds --- Plongements topologiques --- Plongements topologiques.
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This accessible research monograph investigates how 'finite-dimensional' sets can be embedded into finite-dimensional Euclidean spaces. The first part brings together a number of abstract embedding results, and provides a unified treatment of four definitions of dimension that arise in disparate fields: Lebesgue covering dimension (from classical 'dimension theory'), Hausdorff dimension (from geometric measure theory), upper box-counting dimension (from dynamical systems), and Assouad dimension (from the theory of metric spaces). These abstract embedding results are applied in the second part of the book to the finite-dimensional global attractors that arise in certain infinite-dimensional dynamical systems, deducing practical consequences from the existence of such attractors: a version of the Takens time-delay embedding theorem valid in spatially extended systems, and a result on parametrisation by point values. This book will appeal to all researchers with an interest in dimension theory, particularly those working in dynamical systems.
Dimension theory (Topology) --- Attractors (Mathematics) --- Topological imbeddings. --- Embeddings, Topological --- Imbeddings, Topological --- Topological embeddings --- Embeddings (Mathematics) --- Attracting sets (Mathematics) --- Attractors of a dynamical system --- Dynamical system, Attractors of --- Sets, Attracting (Mathematics) --- Differentiable dynamical systems --- Topology
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Topology --- 51 <082.1> --- Mathematics--Series --- Low-dimensional topology. --- Knot theory. --- Concordances (Topology) --- Topologie de basse dimension. --- Noeuds, Théorie des. --- Knot theory --- Low-dimensional topology --- Knots (Topology) --- Isotopies (Topology) --- Piecewise linear topology --- Topological imbeddings --- Topology, Low-dimensional --- Algebraic topology --- Manifolds (Mathematics)
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