Fibrations and bundles with Hilbert cube manifold fibers / [electronic resource] H. Toru�nczyk and J. West.

By: Toru�nczyk, HenrykContributor(s): West, J. (James), 1944-Material type: TextTextSeries: Memoirs of the American Mathematical Society ; v. 406Publication details: Providence, R.I., USA : American Mathematical Society, 1989Description: 1 online resource (iv, 75 p. : ill.)ISBN: 9781470408299 (online)Subject(s): Fiber spaces (Mathematics) | Fiber bundles (Mathematics) | Infinite-dimensional manifoldsAdditional physical formats: Fibrations and bundles with Hilbert cube manifold fibers /DDC classification: 510 s | 514/.224 LOC classification: QA3 | .A57 no. 406 | QA612.6Online resources: Contents | Contents
Contents:
0. Introduction 1. Definitions 2. Characterization of $Q$-manifold bundles with compact fibers 3. $Q$-manifold bundles with non-compact fibers 4. A non-trivial Hurewicz fibration $Q \to Q \to Q$ 5. A trivial fibration with convex fibers 6. Fibrations that satisfy Fibred General Position 7. Fibred products of Hurewicz fibrations $Q \to Q \to Q$ 8. A General Position Fibration that is not a bundle 9. Fibred homeomorphism theory for General Position Fibrations Appendix A. ANR-fibrations: Basic lemmas Appendix B. Homeomorphism theory in $Q$-manifold bundles
Item type: E-BOOKS
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Link to resource Available EBK12859

"July 1989, vol. 80, no. 406 (second of 5 numbers)."

Includes bibliographical references (p. 71-75).

0. Introduction 1. Definitions 2. Characterization of $Q$-manifold bundles with compact fibers 3. $Q$-manifold bundles with non-compact fibers 4. A non-trivial Hurewicz fibration $Q \to Q \to Q$ 5. A trivial fibration with convex fibers 6. Fibrations that satisfy Fibred General Position 7. Fibred products of Hurewicz fibrations $Q \to Q \to Q$ 8. A General Position Fibration that is not a bundle 9. Fibred homeomorphism theory for General Position Fibrations Appendix A. ANR-fibrations: Basic lemmas Appendix B. Homeomorphism theory in $Q$-manifold bundles

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Electronic reproduction. Providence, Rhode Island : American Mathematical Society. 2012

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