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640-223 Quantum Mechanics & Thermal Physics- Adv | |
Note | Credit cannot be gained for both 640-223 and any of the subjects 640-243, 640-226 and 640-246 listed in the 1998 Handbook. |
Credit Points | 12.5 |
Coordinator | Dr S N Tovey and Dr A Roberts |
Prerequisites | Physics 640-121 + 640-122 or 640-141 + 640-142; Mathematics 620-111 or 620-121 or 620-142; Mathematics 620-123 or 620-113 or 620-143. |
Pre/corequisites | Mathematics 620-112 or 620-122 or 620-200 or 620-211; Mathematics 620-231. (For subjects completed prior to 1998, the Mathematics and Statistics departmental code 620- should be replaced by the superseded Mathematics departmental code 618-) |
Semester | 1 (view timetable) |
Contact | 36 lectures and 12 x 1-hour tutorials |
Subject Description | This subject is in two parts: (i) Half of the subject covers the developments in 20th century physics which led to the formulation of wave mechanics and quantum physics. Specific topics will include the experimental basis of quantum mechanics: blackbody radiation, photoelectric effect, Compton effect, de Broglie waves and the Davisson-Germer experiment, Bohr quantisation rule; wave-particle duality, probability interpretation and the wave function; wave packets and an introduction to Fourier Transforms; Schrödinger equation and stationary states; one-dimensional examples: potential steps, barriers and wells, linear momentum; expectation values; an idea of 3-dimensional problems and the hydrogen atom. (ii) The other half of the subject explores concepts such as heat, temperature and internal energy via the classical phenomenological approach to thermal physics as well as the atomistic approach provided by kinetic theory. These developments are central to an understanding of many processes in physics, chemistry and engineering. Content includes: Basic concepts: thermodynamic variables; Zeroth law: heat, temperature, temperature dependence of material properties; Equations of state: special processes, differential changes of state, work; First law: internal energy, enthalpy, heat capacities, latent heats; Second law: heat engines, efficiencies, entropy, free energies; Kinetic theory: Maxwell distribution, efflux, transport theory, conductivity, blackbody radiation. |
Assessment | A 3-hour end-of-semester written examination plus tests and/or assignments, set during the semester, which may account for up to 20% of the final marks. |
Prescribed Texts |
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Search : Index : Faculty of Science : Physics
Prev 640-177 Stars and Galaxies
Next 640-225 Electromagnetism & Relativity- Advanced
Status: Official 1999 Last Modified: Tuesday October 20 11:53 SGML to HTML Conversion: Information Technology Services Authorised by: Academic Registrar Email Enquiries: Course_Information@registrar.unimelb.edu.au