Department of Mathematics  

Duke University




    

Spectral Sequence

Algebraic Topology II
(Math 262)

Fall 2009

Instructor: Paul Aspinwall

Credits: 1.00, Hours: 03.0

Time: TuTh, 11:40-12:55pm.

Location: Physics 227

Requirements

Prerequisits

Math 261, or consent from me.

Homework

is here.

Exams

There will be a final exam due in at noon on Tuesday December 8.

Synopsis

A rough outline is as follows
  • Cohomology
    • Some Homological Algebra
    • Singular Cohomology
    • Universal Coefficients Theorem (for both cohomology and homology)
    • De Rham Cohomology (fairly briefly)
    • The cup and cap product
    • The Künnuth Formula
    • Poincaré duality
  • Spectral sequences
    • Presheaves and Čech cohomology
    • Equivalence of Čech, singular, and De Rham cohomology
    • The Leray-Serre spectral sequence for fibre bundles
    • Group Cohomology and the Cartan-Leray spectral sequence
  • Further homotopy
    • Long exact sequence for fibre bundles
    • The path fibration
    • The Hurewicz Theorem
    • Eilenberg MacLane spaces
    • Computation of some homotopy groups for spheres

Textbooks

The course will be based on two texts:
  1. A. Hatcher, Algebraic Topology I, available over the web.
  2. R. Bott and L.W. Tu, Differential Forms in Algebraic Topology, Springer-Verlag 1982.
where Hatcher will be used for cohomology. From then on, we will tend more to follow Bott and Tu.

It may also be useful to refer to

  1. Edwin H. Spanier, Algebraic topology, Springer-Verlag 1966.
  2. Kenneth S. Brown, Cohomology of Groups, Springer-Verlag 1982.
  3. Charles A. Weibel, An Introduction to Homological Algebra, Cambridge 1994.
  4. Saunders MacLane, Homology, Springer 1995 (reprint of 1975).
  5. James R. Munkres, Topology: A First Course, Prentice Hall, 1974.

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