Formality of the little N-disks operad / [electronic resource] Pascal Lambrechts, Ismar Voli�c.

By: Lambrechts, Pascal, 1964-Contributor(s): Voli�c, Ismar, 1973-Material type: TextTextSeries: Memoirs of the American Mathematical Society ; v. 1079Publisher: Providence, Rhode Island : American Mathematical Society, [2014]Copyright date: �2013Description: 1 online resource (vii, 116 pages : illustrations)Content type: text Media type: unmediated Carrier type: volumeISBN: 9781470416690 (online)Subject(s): Homotopy theory | Operads | Loop spacesAdditional physical formats: Formality of the little N-disks operad /DDC classification: 514/.24 LOC classification: QA612.7 | .L36 2014Online resources: Contents | Contents
Contents:
Acknowledgments Chapter 1. Introduction Chapter 2. Notation, linear orders, weak partitions, and operads Chapter 3. CDGA models for operads Chapter 4. Real homotopy theory of semi-algebraic sets Chapter 5. The Fulton-MacPherson operad Chapter 6. The CDGAs of admissible diagrams Chapter 7. Cooperad structure on the spaces of (admissible) diagrams Chapter 8. Equivalence of the cooperads $\mathcal {D}$ and $\mathrm {H}^*(\mathrm {C}[\bullet ])$ Chapter 9. The Kontsevich configuration space integrals Chapter 10. Proofs of the formality theorems Index of notation
Item type: E-BOOKS
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Link to resource Available EBK13532

"Volume 230, number 1079 (first of 5 numbers), July 2014."

Includes bibliographical references and index.

Acknowledgments Chapter 1. Introduction Chapter 2. Notation, linear orders, weak partitions, and operads Chapter 3. CDGA models for operads Chapter 4. Real homotopy theory of semi-algebraic sets Chapter 5. The Fulton-MacPherson operad Chapter 6. The CDGAs of admissible diagrams Chapter 7. Cooperad structure on the spaces of (admissible) diagrams Chapter 8. Equivalence of the cooperads $\mathcal {D}$ and $\mathrm {H}^*(\mathrm {C}[\bullet ])$ Chapter 9. The Kontsevich configuration space integrals Chapter 10. Proofs of the formality theorems Index of notation

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Electronic reproduction. Providence, Rhode Island : American Mathematical Society. 2014

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