Math 246A: Complex Analysis

Lectures: MWF 11:00-11:50 in MS 5137.
Discussion Session Thursday 11:00-11:50 in MS 5233.

Instructor: Rowan Killip, 6935 Math Sciences Building.
T.A. Andreas Aaserud, 2901 Math Sciences Building.

Office Hours: Killip: W 1:00-3:00pm + by appointment, in 6935 Math Sciences Building. Aaserud: W 4:00-5:00pm

Exams: One in-class midterm: Wednesday, October 31st. Three-hour final: Tuesday, December 11, 2012, 8:00am-11:00am.

Homework: There will be weekly homework. It is due in class.
You are welcome (indeed encouraged) to discuss the problems amongst yourselves and to use whatever human, online, or printed sources you wish. However, you must write up your solutions in your own words; the loaning or copying of solutions is strictly forbidden.

Grading: Homework, 40%; Midterm 15%; Final 45%.

Syllabus: This course covers the main topics in classical Complex Analysis at the graduate level and provides preparation for the complex analysis part of the Analysis Qualifying Exam. Computational familiarity with the subject, such as is typically covered in undergraduate courses, will be assumed (though can reasonably be gained in parallel with a little extra effort).

There is no formal textbook. Probably the best match for the syllabus is
   Complex Analysis by Elias M. Stein and Rami Shakarchi.
Other popular volumes on the subject are
   Complex Analysis by Lars Ahlfors.
   Complex Analysis by Ted Gamelin.
   Analytic Functions by Stanislaw Saks and Antoni Zygmund, which is available online.
Our discussion of harmonic functions is strongly influenced by Chapter 2 of
   Elliptic Partial Differential Equations of Second Order by David Gilbarg and Neil Trudinger.

Homework Problems:
Homework 0. Due Oct 5.
Homework 1. Due Oct 12.
Homework 2. Due Oct 19.
Homework 3. Due Oct 26.
Homework 4. Due Nov 5 (Monday).
Homework 5. Due Nov 14 (Wednesday).
Homework 6. Due Nov 28 (Wednesday).
Homework 7. Due Dec 7.