# | Course | Credits |
| University Requirements (40 Credits) | |
A. Compulsory Courses (13 Credits) | ||
1 | 0430 - 501 Classical Mechanics | 3 |
2 | 0430 - 503 Classical Electrodynamics | 3 |
3 | 0430 - 505 Quantum Mechanics I | 3 |
4 | 0430 - 507 Mathematical & Computational Methods | 3 |
5 | 0430 - 590 Seminar | 1 |
B. Elective Courses (18 credits) Students choose 6 from the following: | ||
6 | 0430 - 508 Special Topics I. Physics | 3 |
7 | 0430 - 509 Special Topics II. Engineering Physics | 3 |
8 | 0430 - 510 Atomic Spectra | 3 |
9 | 0430 - 512 Laser Physics | 3 |
10 | 0430 - 514 Theory of Atomic Collisions | 3 |
11 | 0430 - 520 Molecular Spectroscopy I | 3 |
12 | 0430 - 520 Molecular Spectroscopy II | 3 |
13 | 0430 - 523 Photo Physics | 3 |
14 | 0430 - 525 Raman Spectroscopy | 3 |
15 | 0430 - 530 Solid State Physics I | 3 |
16 | 0430 - 531 Solid State Physics II | 3 |
17 | 0430 - 533 Semiconductors | 3 |
18 | 0430 - 535 Thermal Solar Processes | 3 |
19 | 0430 - 540 Quantum Mechanics II | 3 |
20 | 0430 - 542 Field Theory | 3 |
21 | 0430 - 545 Particles and Symmetries | 3 |
22 | 0430 - 550 Nuclear Physics I | 3 |
23 | 0430 - 551 Nuclear Physics II | 3 |
24 | 0430 - 560 Electronics | 3 |
25 | 0430- 562 Digital Design II | 3 |
26 | 0430 - 563 Advanced Digital Signal Processing | 3 |
27 | 0430 - 564 Quantum Computing | 3 |
28 | 0430 - 570 Physics and Applications of GPS | 3 |
29 | 0430 - 571 Synthesis Aperture Radar Interferometry | 3 |
30 | 0430 - 572 Synthesis Aperture Radar Processing | 3 |
31 | 0430 - 574 Solar Plasma and Cosmic Rays | 3 |
Students may substitute up to 6 credit hours from the upper elective. Physics Undergraduate courses ( 400 level) with the approval of the Program Committee> | ||
C. Compulsory Thesis (9 credits) | ||
32 | 0430 – 597 Thesis | 0 |
33 | 0430 – 598 Thesis | 0 |
34 | 0430 – 599 Thesis | 9 |