Syllabus: in pdf format.
Homework:
- Due Jan. 23
- Section 1.1 #'s 1,3,6,13,15,27,29,32
- Section 1.2 #'s 1,2,6,11,19,22,23,31,33
- Section 1.3 #'s 2,5,9,11,12
- Due Feb. 6
- Section 1.4 #'s 21,22,36,39
- Section 1.5 #'s 8,13,14,18,27,32,37,38
- Section 2.2 #'2 3,6,21,26,27,29
- Section 2.3 #'s 2,3,7,10
- Due March 3
- Section 3.3 #s 4, 10, 15, 24
- Section 3.4 #s 13, 14, 26, 27, 33
- Section 3.5 #s 20, 21, 31, 43, 47
- Section 3.6 #s 19, 22, 25, 27
- Section 5.1 #s 4, 11, 12, 21
- Section 5.2 #s 1, 4, 26, 27
- Due March 12
- Section 5.1 #s 4, 11, 12, 21
- Section 5.2 #s 1, 4, 26, 27
- Section 5.3 #s 1,6,14,15
- Section 5.4 #s 1,3,6
- Section 5.5 #s 3,4,33
- Due April 2
- Section 6.1 # 4,5,9 (sketch by hand)
- Section 6.2 # 11,19,20,33
- Section 6.4 #15,16,17
- Due April 14
- Section 9.1 # 3,6,12,30
- Section 9.2 # 3,4,15,17
- Due April 26 (last hw assignment!)
- Section 9.5 # 1,7,13,17,20
- Section 9.6 # 1,6,13, 17 (take \rho = T = 1, L= \pi), 21 (take
h=1,L=\pi)
Computer projects:
- Here is the first computer project, in pdf format. And here is some Maple code to get you
started. You might want to download this code to your account and edit
it.
- Here is the second computer project, in pdf format. And here is some Maple code to get you
started. You might want to download this code to your account and edit
it.
- Here is some Maple code for
the forced Duffing equation. You're welcome to play around with
it.
Here is a derivation of the correct formula for the Laplacian in
polar coordinates, in pdf format.
Exams:
- Practice problems for the first exam: in pdf format.
- Solutions to the first set of practice problems:
in pdf format.
- Solutions to the first exam: in pdf format.
- Practice problems for the second exam: in pdf format.
- Solutions to the second set of practice problems:
in pdf format.
- Solutions to the second exam: in pdf format.
- Practice problems for the final exam: in pdf format.
- Solutions to the practice problems for the final exam:
in pdf format.
- Solutions to the final exam: in pdf format.