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PHS2061 · Quantum and thermal physics

Official Handbook

2027 Handbook6 credit pointsLevel 2School of Physics and Astronomy

Last checked: 30 Sep 2026 UTC

Overview

Quantum physics is at the core of physics and this unit provides a basis for understanding key quantum concepts, applications and associated phenomena. Thermal physics aims to understand how energy resides in matter as thermal energy, how energy moves irreversibly as heat between bodies at different temperatures, and how heat flow arises from entropy and the second law of thermodynamics; entropy is defined carefully in terms of the multiplicity of microstates of a system. Thermal physics explores how work can be interconverted with thermal energy and how entropy limits the efficiency of engines, heat pumps and refrigerators. • Quantum mechanics: the domain of quantum mechanics; particle and wave description; the Schrodinger equation, energy, momentum and angular momentum as operators, expectation values and stationary states; one-dimensional scattering and potentials, including the quantum oscillator, quantum mechanical tunnelling and quantum technologies; Heisenberg's uncertainty principle. • Thermal physics: review of heat, work and internal (thermal) energy, phase transitions, latent heats and heat capacities; the inadequacy of heat capacities as a basis for thermometry; statistical descriptions of a macroscopic physical system: microstates, macrostates, multiplicity and entropy; the second law of thermodynamics; absolute temperature related to entropy; pressure related to entropy; review of PV diagrams and work in thermodynamics, especially as applied to ideal gases; adiabatic and isothermal processes; introduction to engines and the Carnot cycle; examples of thermodynamic cycles in applications; heat pumps and refrigerators; inter alia Maxwell's daemon, the thermodynamics of computation and the heat death of the Universe.

Areas of study: Astrophysics Physics

Offerings

CampusTeaching periodMode
ClaytonFirst semesterTeaching activities are on-campus (ON-CAMPUS)

Assessment

The Handbook lists an examination for this unit.

#AssessmentTypeWeightHurdle
1LaboratoriesDemonstration30%Threshold
2Computational applied classesArtefact10%—
3Assignments, workshop activities and testsExercise20%—
4Final assessment - Exam (3 hours and 10 minutes)Examination40%—

Assessment details may change. Please refer to the assessment information in Moodle closer to the start of the teaching period.

Requisites

prerequisite

PREREQUISITE: One unit from PHS1022, PHS1002 and one unit from MTH1030, MTH1035 or ENG1005

PHS1022PHS1002MTH1030MTH1035ENG1005

prohibition

PROHIBITION: PHS2011

PHS2011

corequisite

COREQUISITE: Recommended: MTH2010 or MTH2015 or ENG2005 Note: supporting mathematics studies are required for progression towards the Astrophysics and Physics majors

MTH2010MTH2015ENG2005

Learning outcomes

  1. Describe and perform calculations appropriate to key concepts in quantum mechanics, including the foundations of quantum mechanics and a wide variety of quantum systems in 1D, 2D and 3D;
  2. Describe and perform calculations related to thermal physics and statistical thermodynamics, including a foundational understanding of temperature, energy, heat and work, and its applications to heat pumps and engines, entropy and information;
  3. Apply numerical modelling to solve problems in quantum mechanics and thermal physics;
  4. Demonstrate awareness of scientific computing methods and visualization;
  5. Acquire, manipulate and interpret physical data and write scientific log books and lab reports.

Workload

The workload to achieve the learning outcomes for this unit is 144 hours spread across the semester (roughly 12 hours per week) - approximately an even mixture of attendance at scheduled activities and self-scheduled study time. Learning activities comprise a mixture of instructor-directed, peer-directed and self-directed learning, which includes face-to-face and online engagement.

ActivityDuration
Workshops24 hours
Laboratories16 hours
Applied sessions12 hours

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