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Thermal Physics II. Thermodynamics. Thermodynamics is the branch of physics that is built. upon the fundamental laws that heat and work obey. Terminology. The collection of objects on which attention is being focused is called the system, while everything else in the environment is called the surroundings. To understand. Thermal Physics. Temperature. Thermometers. Thermal Expansion. Definitions. Thermal Contact – if energy can be exchanged between two objects, then they are in thermal contact; Thermal Equilibrium – if two objects are in thermal contact and there is no exchange of energy, then they are in thermal equilibrium. The Law. IB Physics. Topic 3 – Introduction to Thermo physics. Mr. Jean. Thermal Physics. 14-1 Heat As Energy Transfer. We often speak of heat as though it were a material that flows from one object to another; it is not. Rather, it is a form of energy. Unit of heat: calorie (cal). 1 cal is the amount of heat necessary to raise the. Thermal Physics /Heat - IGCSE Physics Complete Lesson Thermal properties and Temperature Thermal expansion of solids, liquids, and gases at constant pressure Applications and consequences of thermal expansion Measurement of. THERMAL PHYSICS. Temperature and the zeroth Law of Thermodynamics; 2 objects are in thermal contact if energy can be exchange between them; 2 objects are in thermal equilibrium if they are in thermal contact and there is no net exchange of energy (ex: in fig); Zeroth law of thermodynamics (law of equilibrium). Physics 1 REGULAR. Module 2 Thermal Physics. HEAT CAPACITY. LATENT HEAT. PHYSICS: FUN EXCITING SIMPLE. What is cooking all about? ptC_heat .ppt. 2. Overview of Thermal Physics Module: Thermodynamic Systems: Work, Heat, Internal Energy 0th, 1st and 2nd Law of Thermodynamics; Thermal Expansion. http://www.schoolphysics.co.uk/age11-14/Heat%20energy/Expansion/text/Expansion_of_solids/index.html. Thermal Expansion. - applications. Thermometer. Mercury or alcohol. Expanding liquid. Calibration scale. As the temperature rises, the liquid in the bulb expands, and so rises up the narrow tube which is calibrated to. 'The moving pencil uses kinetic energy.' (QCA). 'The steam [from a volcano vent] is converted into energy and transported to Europe via a 1,200-mile sea-floor cable.' (a London newspaper). 'Carbonaceous matter is converted to heat or other forms of energy.' (Physics World); 'Energy makes things happen.' (ASE Big Ideas). Chapter 10. Thermal Physics, Temperature and Heat. Some Vocabulary. Thermodynamics: Study of energy transfers (engines); Changes of state (solid, liquid, gas...) Heat: Transfer of microscopic thermal energy. Thermal Equilibrium: Condition after two objects are in thermal contact and finish exchanging heat. Zeroth Law. 2 Kinetic Theory Kinetic theory – all matter is made of small particles (such as atoms, ions, or molecules) that are identical and in constant motion at a constant velocity. All collisions between particles are “perfectly elastic" (meaning that the total amount of kinetic energy remains the same before and after the collision). Heat flows from hot to cold 21/04/2017 Net energy flow stops when their temperatures are the same i.e. They are in thermal equilibrium. Change of State (Phase) of Matter There are 3 states (phases) of matter: Solids, liquids and gases When the temperature of a solid is increased enough, it will become a liquid When temperature is increased even more, it becomes a gas. Thermal Physics (Thermodynamics). Concerned with the concepts of thermal (or internal) energy transfers between a system and its environment and the resulting temperature variations. Temperature is central concept of thermodynamics; Be careful not to trust your (subjective) senses to measure temperature! Historically. IGCSE Physics 0625 notes for topic 2: Thermal Physics. 1. TOPIC 2. THERMAL PHYSICS. THERMAL PHYSICS: The branch of physics that study the temperature, heat energy and their relation to the matter. Temperature: It is the degree of hotness of an object and it can be measured by thermometer. Temperature can be. www.physics.rutgers.edu/~wdwu/351/Lecture1.ppt. Physics 351 Thermal Physics Spring 2011. Textbook: An Introduction to Thermal Physics,. D.V. Schroeder,. Addison-Wesley-Longman, 2000. Web Site Access: http://www.physics.rutgers.edu/ugrad/351. Homework assignments, announcements and notes will be posted. PowerPoint slide on Thermal Physics compiled by Himanshu Jain. Thermal Physics PH2001. Lecture 13. Entropy changes – the universe. Imagine heating a beaker of water by putting it in contact with a reservoir whose temperature remains fixed and the system remains at constant pressure. In lecture 11 we calculated the entropy change under different process conditions. However as. Chapter 18. Temperature, Heat, and the First Law of Thermodynamics. Thermodynamics. and Statistical Physics. Key contents: Temperature scales. Thermal expansion. Temperature and heat, specific heat. Heat and work, the 1st law of thermodynamics. Heat transfer mechanisms. 18.2 Temperature. What is 'temperature' ? Thermal Physics Lesson 1. Learning Objectives. Define specific heat capacity. Perform calculations using ∆Q=mc ∆θ. Describe how specific heat capacity can be measured in the lab. Homework. Complete worksheet to practice calculations we will look at today. Why do we care. The large SHC of water is particularly. Temperature a property that determines the direction of thermal energy. ( The mosh-pit demo.) Thermal Physics. Heat and Internal Energy. – A free PowerPoint PPT presentation (displayed as a Flash slide show) on PowerShow.com - id: 14154a-YjFkZ. This week in the physics course. Lectures will cover Chapter 16 (Temperature and Heat) and start Chapter 17 (Thermal Behaviour of Matter). Tutorial class will practise problems from last week's lectures on Chapter 15 (Fluid Motion). Laboratory class will perform buoyancy experiments. Physics help available in MASH. Office: Serin Physics Building Room 122W. e-mail: gersh@physics.rutgers.edu. phone: 732-445-3180 (office). office hour: Mon. 2:30 - 3:30 PM and by appointment. lectures: SEC-117, W 10:20-11:40 AM and F 3:20-4:40 PM. Textbook: An Introduction to Thermal Physics,. D.V. Schroeder, Addison-Wesley-Longman, 2000. Thermal Equilibrium. Temperature Scales. Laws of Thermodynamics. Entropy. Specific Heat. Calorimetry. Heat Transfer Processes. Phase changes. Thermal Expansion. Heat Engines & Refrigerators. Latent Heat of Fusion Latent Heat of Vaporization. Kinetic-Molecular Theory. It was once common belief that heat was an. Thermal Physics. Thermal Properties of Matter. Thermal Properties of Matter. Specific Heat Capacity. We know that temperature is a measure of the average KE per particle in a substance. However not all substances will behave in the same way when heated. ∆Q = mc ∆T. The specific heat capacity of a material is the. ... Thermal Physics Daniel V. Schroeder PPT An Introduction to Thermal Physics Daniel V. Schroeder TXT An Introduction to Thermal Physics Daniel V. Schroeder Ebook An Introduction to Thermal Physics Daniel V. Schroeder iBooks An Introduction to Thermal Physics Daniel V. Schroeder Kindle An Introduction to Thermal. Batesville High School Physics. Historical Heat. Heat energy “flows" from an object at higher temperature to an object at lower temperature - if the objects are in thermal contact. (To make energy. Heat energy will “flow" until the two objects reach the same temperature - they are then in thermal equilibrium. The Lowest. Today's Agenda. Topics. Temperature and Zeroth Law of Thermodynamics; Temperature scales; Thermal expansion; Ideal gas. Physics 151: Lecture 37, Pg 2. Temperature. Temperature: measure of the motion of the individual atoms and molecules in a gas, liquid, or solid. related to average kinetic energy of constituents. Physics to Physics & to Science in. General. Some comments on the. importance of Statistical. & Thermal Physics from. some famous physicists. Also, some brief history &. more trivia. To put the following in context, the. historical acceptance of the atomic. hypothesis & the importance of &. acceptance of Statistical Mechanics. Thermal properties + heat transfer. Daniel Pringle, Fall 2006, GEOS 692, University Alaska Fairbanks. Heat capacity. Thermal conductivity. Variability. -Rock type. Sea ice heat capacity. • S = 12.5 ppt. □ S = 8.5 ppt. △S = 6 ppt. Trodahl et at. JGR, 2000... Kittel, C, 1971, Introduction to Thermal Physics, Wiley & Sons.
Temperature scales: Fahrenheit, Celsius (centigrade), Kelvin; Thermal expansion; The ideal gas law. Part 3 Thermodynamics. Chapter 19: Temperature and the Ideal Gas Law. Reading assignment: Chapter 20.1-20.5. Homework : (due Wednesday, Nov. 30, 2005):. Problems: Chapter 19: 1, 14, 17, 28, 30. Chapter 20: 3, 5,. Working substance: the matter inside the heat engine that undergoes addition or rejection of heat and that does work on the surroundings. Examples include air and water vapour (steam). In a cycle, the working substance is in the same thermodynamic state at the end as at the start. HE2 Thermal Physics. Heat Engine. E. Physics: Principles with Applications, 7th edition. to Disorder; Unavailability of Energy; Heat Death; Statistical Interpretation of Entropy and the Second Law; Thermal Pollution, Global Warming, and Energy Resources. It is easy to produce thermal energy using work, but how does one produce work using thermal energy? Thermal Physics. Thermal equilibrium occurs when all parts of the system are at the same temperature. There is no exchange of thermal energy/please do not mention heat. (This is how a thermometer works). Potential energy of the molecules arises from the forces (bonds/ because of intermolecular forces) between them. Thermal Physics. • Introduction. • The Joule-Thomson effect. • The inversion diagram. • The 3rd law of thermodynamics. • Nernst's heat theorem. • Planck's statement of the 3rd law. • The unattainability statement. • Implications of the 3rd law in phase diagrams. • The quest for T → 0. • Low temperature. THERMAL ENERGY AND HEAT. Jennefer Cardenas. Objectives. Students will be able to identify and know difference between THERMAL ENERGY, TEMPERATURE, and HEAT. Students will be able to identify the 3 ways heat is transferred. Students will be able to compare different conductors and insulators. Students will. 8.2 – Thermal energy transfer. Applications and skills: • Sketching and interpreting graphs showing the variation of intensity with wavelength for bodies emitting thermal radiation at different temperatures. • Solving problems involving the Stefan–Boltzmann law and Wien's displacement law. • Describing the effects of the. Heat, energy and temperature pervade our lives. Just think about it. We give attention to hot and cold in deciding what we wear during the day, at night and when we go to bed. We think about the topic when deciding how many covers, if any at all, we will wrap in or sleep under at night in order to maintain the right. 16-1 Temperature and the Zeroth Law of. Thermodynamics. The zeroth law of thermodynamics: If object A is in thermal equilibrium with object B, and object C is also in thermal equilibrium with object B, then objects A and C will be in thermal equilibrium if brought into thermal contact. That is, temperature is the only factor. Concerns the processes that “violate" conservation of mechanical energy -- friction -- via the conversion between thermal and mechanical energy. Physics 207: Lecture 25, Pg 2. Physics 207, Lecture 25, Nov. 29. Agenda: Chapter 19, Temperature. Heat; Thermal Expansion; Temperature and Zeroth Law of Thermodynamics. Thermal Physics II. Chris Parkes. Part 2. A) Thermodynamic Potentials &. Maxwell Relations. B) Statistical Thermodynamics. http://ppewww.ph.gla.ac.uk/~parkes/teaching/TP/TP.html. 2. Thermodynamic Potentials & Maxwell Relations. Maxwell Relations from 1st Laws for U,H,F,G; Heat Capacities; Joule-Kelvin Process. 1 min - Uploaded by MAD 10Ten hardest physics topics thetoptens shamsulbahriel physics is number one my best things to. See also Kirchhoff's laws (disambiguation) for other laws named after Gustav Kirchhoff. In heat transfer, Kirchhoff's law of thermal radiation refers to wavelength-specific radiative emission and absorption by a material body in thermodynamic equilibrium, including radiative exchange equilibrium. A body at temperature T. If two objects have different temperatures, they are not in thermal equilibrium with each other. Thermometers. A thermometer is a device that is used to measure the temperature of a system; Thermometers are based on the principle that some physical property of a system changes as the system's temperature changes. Searching to download for many sold publication or reading resource. SCHROEDER THERMAL PHYSICS SOLUTIONS CHAPTER 3? Wesupply them done in format kind as word, txt, kindle, pdf, zip, rar and also ppt. one of them is this certified SCHROEDER THERMAL PHYSICS SOLUTIONS CHAPTER 3 that has been. Thermal Energy at the Nanoscale is a self-paced online course that develops a unified framework for understanding essential physics of nanoscale thermal energy and its important applications, trends, and directions. The course is taught at the level of a Purdue graduate course for first-year students, but there are no. A Level Physics. Induction, 28th June, 2016. Outline of the course. You are operating under a new specification. The course is linear, which means you will sit: Two exams at. Periodic motion (further mechanics); Thermal physics; Fields and their consequences; Nuclear physics. Plus 1 from the. PowerPoint Presentation. Thermal physics ppt. Report Document as copy-rights infringement · View All Pages For PDF Printing. All rights reserved to Tiny-Tools.com Privacy Policy. PHYSICS 2 (FLUID MECHANICS AND THERMAL PHYSICS). 02 credits (30 periods). Chapter 1 Fluid Mechanics. Chapter 2 Heat, Temperature and the Zeroth Law of Thermodynamics. Chapter 3 Heat, Work and the First Law of Thermodynamics. Chapter 4 The Kinetic Theory of Gases. Chapter 5 Entropy and the Second. Springs · Simple Harmonic Oscillator · Pendulums · Resonance · Elasticity. Fluids. Density · Pressure · Buoyancy · Fluid Flow · Viscosity · Aerodynamic Drag · Flow Regimes. Thermal Physics. Heat & Temperature. Temperature · Thermal Expansion · The Atomic Nature of Matter · Gas Laws · Kinetic-Molecular Theory · Phases.
Physics 213. Thermal Physics. An Introductory Course in. Thermodynamics and Statistical Mechanics. Lecture 1, p 2. Welcome to Physics 213. All course information is on the web site: http://online.physics.uiuc.edu/courses/phys213 Read it !! Format: Active Learning (Learn from Participation) Homework: Do it on the web !! Optical constants and reflectivity depend on strain and temperature; Strain echoes give acoustic properties or film thickness; Thermoreflectance gives thermal properties. “Classical" models (DMM, AMM) for interface thermal conductance do not include physics of the interface itself: phonon transport is only a function of the. Thermal Physics 1. By: Wil Strang, Kyle Hyland. Some Things You May Remember. Internal energy; Methods of heat transfer; Specific Latent Heat; There are not very many equations in this topic (3). Some things You Definitely Remember. Direction of thermal energy transfer; Kelvin scale; Specific heat capacity; Evaporation. GENERAL GOALS OF THIS MODULE. Thermal physics, the study of energy transfers by means of disordered processes, has played an important role in the development of our current technology and is an essential element of our understanding of the environment. Microscopic models for disordered processes led to our. Provide information about subject physics.. These power point lessons help to teach and learn physics. These power point lessons are specially designed 'O' physics for 5054 syllabus.. Nov 11, 2012, 10:45 AM. v.1 · ď. ć. THERMAL PROPERTIES OF MATTER.pptx. (873k). Ibrahim Adhil,. Nov 11, 2012, 10:45 AM. v.1. Remind. To receive text reminders for class text @ap2-2017 to 81010. Need Help? Come to after school tutoring on Monday, Tuesday or Thursday 2:20 - 3:20. Try this website: Physics Classroom. Unit –II Thermal Physics. Introduction- Modes of Heat Transfer. Normally there are three modes of transfer of heat from one place to another viz., conduction, convection and radiation. Conduction : Conduction refers to the heat transfer that occurs across the medium. Medium can be solid or a fluid. Convection: It is the. More common in thermodynamics is the calorie: By definition 1 calorie is the amount of heat required to change the temperature of 1 gram of water 1 C. 1 Cal = 1 food calorie = 1000 cal. The English unit of heat is the Btu (British Thermal Unit.) It is the amount of heat required to change the temperature of 1. Thermal Physics: 425/625. Acknowledgement: I acknowledge the excellent efforts by Rutgers Physics Professors Misha Gershenson and Weida Wu in preparing powerpoint course material for this textbook. The powerpoint presentations in this course are rooted in their work, with permission from Dr Wu, with modifications. (Not net transfer of thermal energy or heat. Thermal equilibrium is the basis for measuring temperature with thermometers in that the thermometer must be in thermal equilibrium with an object before a temperature reading can be taken. Physics -Serway/Faughn (Holt). State of matter is related to temperature. Solids, liquids. Summary notes and past exam questions by topic for CIE Physics International A-Level Topics 10, 11 & 12 - Ideal Gases, Temperature and Thermal Properties of Materials. underpins thermodynamics, ideal gas (a classical physics model), ensembles of molecules, solids, liquids … the universe. Path to statistical physics from classical to quantum for bosons and fermions... Thermal conductivity goes to infinity at lambda point, so no hot bubbles can form while the liquid is boiling,. 51. Department of Physics and Astronomy, University of Rochester. Temperature (a quick review). Measuring temperature. The standard thermometer is the constant volume gas thermometer. The bulb of the thermometer, which is filled with gas, is put in thermal contact with the system to be studied. The reservoir on the right is. Andrew's experiments on CO2 gas. The classic experiment on the behaviour of gases was devised by Andrews in 1863.He carried out a number of experiments on the compressibility of gases while attempting to liquefy them. These experiments throw considerable light on the actual behaviour of gases. In his experiment he. A-level Physics AS & A2. Modules 1, 2 & 3. Particles, Quantum Phenomena and Electricity, Mechanics, Materials and Waves. Modules 4, 5 & 6. Fields and further mechanics. Nuclear Physics, thermal Physics & Astrophysics. Investigative and Practical Skills. Teaching units. and Assessment method and weighting. G484 The Newtonian World. Newton's Laws and Momentum; Circular Motion and Oscillations; Thermal Physics. G485 Fields, Particles and Frontiers of Physics. Electric and Magnetic Fields; Capacitors and Exponential Decay; Nuclear Physics; Medical Imaging. Thermal. Energy. 1. GOALS. 1. Differentiate between conduction, convection, and radiation. 5. Explain molecular motion as it relates to thermal energy changes in terms of conduction, convection, and radiation. 2. Explain common examples, such as ice in a soda, to show the direction of energy flow. 4. Determine the heat. Heat is transferred only when two objects are at different temperatures; Thermal energy always moves from warmer to cooler objects; The warmer object loses thermal energy and becomes cooler as the cooler object gains thermal energy and becomes warmer. Energy will continue to move from a warmer object to a cooler. Some of the physics cells have to deal with: Random walks, diffusion and Brownian motion. Background reading: — Frederick Reif: Statistical and Thermal Physics, Chpt. 1 (random walks), Chpt. 15 (fluctuations, Brownian motion). — Howard Berg: Random Walks in Biology, Chpts. 1, 2 (diffusion), Appendix A (distributions). Plasma physics; magnetic reconnection;. Tokamak transport. ( PPT, IREAP). 301.405.1471 drake@plasma.umd.edu. Drew, H. Dennis, Professor, Ph.D., Cor- nell Univ., 1968. Fellow-APS. Experimen- tal condensed matter physics; statistical and thermal physics; semiconductor het- erostructures; infrared properties of super-. scientific understanding of thermal physics of heat storage; identifcation of challenges for practical applications; finding suitable solutions; combined experimental and theoretical approach; technically feasible and robust as well as sustainable applications in terms of environment and economics. Connecting India and EU –. Discovery of the nucleus. Rutherford's experiment 1. Alpha particles had the same speed as otherwise slow particles would be deflected more than the faster ones on the same initial path Evacuated metal 2. Container must be evacuated or container would be stopped by air source Thin molecules metal foil Chapter 16. Physics, 3rd Edition. James S. Walker. Chapter 16. Temperature and Heat. Units of Chapter 16. Temperature and the Zeroth Law of Thermodynamics; Temperature Scales; Thermal Expansion; Heat and Mechanical Work; Specific Heats; Conduction, Convection, and Radiation. 16-1 Temperature and the Zeroth. How do you study for IB Physics SL/HL? Read our set of IB Physics notes and our free study guide for the best resources available.. if you are looking for a more in-depth explanation. Slideshow: PowerPoint presentation on the material.. Topic 3: Thermal Physics. Longer Overall Topic Notes · Slideshows. AP Physics II.B Temperature and Heat. Thermal energy – energy an object has because of the random movement of its molecules. Temperature – a measurement of an object's thermal energy. Temperature scales used in physics are the Celsius and Kelvin scales. What is “heat"? Not anything an object contains. Heat is a. PHYS 401 - SPRING 2018. Office hours: M 2-4pm, T 1-2pm, R noon-1pm in Bldg 180 (Baker Science) Rm. 522. I may be in my lab in 180-530. Feel free to stop by- if I'm busy we'll schedule another time. Two java applets are useful for exploring Thermal Physics, which we will use during the quarter. Gould has a suite of. 7/20/10 1:31 PM - Jeremy Paschke. 16 Capacitors and Magnetism.pdf. 7/21/10 9:06 AM - Jeremy Paschke. 08 Fluid Mechanics.pdf. 7/21/10 7:52 AM - Jeremy Paschke. 17 Electromagnetic Induction.pdf. 7/21/10 9:05 AM - Jeremy Paschke. 09 Thermal Physics.pdf. 7/21/10 7:53 AM - Jeremy Paschke. 18 Nuclear Physics.pdf. These are lecture notes for AME 20231, Thermodynamics, a sophomore-level undergraduate course taught in the Department of Aerospace and Mechanical Engineering at the University of Notre Dame. The objective of the course is to survey practical and theoretical problems in classical thermodynamics. Thermal Physics IB Physics. Topic 3: Ideal gases. Ideal Gases. Understand and Apply the following. Pressure. Gas Laws (by name) PV = nRT Kinetic Molecular Theory Explain Pressure. WilliamThompson (Lord Kelvin). Pressure. Click on Me. Pressure is defined as force per unit area... This is the random motion of particles. It can be modeled mathematically and can tell us a lot about the way in which particles behave, particularly gases and liquids. A smoke cell can demonstrate Brownian motion very well. Smoke particles are very light and their direction of motion can be affected by air molecules. Temperature Scales: A brief introduction to temperature and temperature scales for students studying thermal physics or thermodynamics. image. Thermometer: A thermometer calibrated in degrees Celsius. From 1743 until 1954, 0°C was defined as the freezing point of water, and 100°C was defined as the boiling point of. Thermal Physics of Semiconductor Heat Sinks (SHS) is an interesting and urgent topics of semiconductor devices cooling. While in the long ago passed years of easy-happy Semiconductor Heat Sinks solutions. Those were practically of the single uniform design as, for example, this one for the 486X chipset from the early. This course explains Thermal Physics According to CIE Cambridge IGCSE Syllabus in a new wonderful way... Do not miss it - Free Course. Convection is the transfer of thermal (heat) energy when particles of a fluid move from one place to another. A Convection Current circulates within a fluid as the fluid alternately heats up and cools down. The warm fluid (even air) rises but the colder fluid sinks creating a loop-like cycle. Convection currents occur in many. The reactor is cooled, moderated and reflected by D2O, producing a peak thermal flux at the reactor centerline of 4 x 10 14 neutrons/cm2/s at the rated power level of 20 megawatts. The reactor is operated on a seven week cycle, with approximately 38 continuous days at full power (20 MW) operation followed by 11 days for. Right arrow Courses Right arrow Science Right arrow. AP Physics 2 Course. Go. This course is under development. Units (select a unit). Quantum Physics and Atomic Models. View. Nuclear Physics. View. Fluids. View. Thermal Physics. View. Geometric Optics. View. Review Materials. View. Resources. Download All. In the Earth, both conduction and convection are important. In the lithosphere, the temperature gradient is controlled mainly by conduction. Convection in the lithosphere does play a role in: Mid-ocean ridges in the form of hydrothermal ocean circulation. Volcanism and emplacement of magmatic bodies. Heat transfer: heat. In: At the 40th anniversary GEFTA conference (Thermal analysis in industry and research) Berlin Xiao S, Hu W, Luo W, Wu Y, Li X, Deng H (2006) Size effect on. Thermochim Acta 603:24–28 Leitner J (2010) Využití kalorimetrie při studiu nanočástic (Use of calorimetry for studying nanoparticles) KS2011_Leitner.ppt. Physics Unit 5: Heat and Temperature. Bellringer. In drawing 1, which bowl would feel warm to your hands? Which bowl would feel cool? We use words like hot.. Thermal Conduction. Conduction involves objects in direct contact. Conduction takes place when two objects that are in contact are at unequal temperatures. Thermodynamics 2017-18. Welcome to the homepage for Junior Honours Thermal Physics Part 1: Thermodynamics. Here you will find lecture notes, tutorial sheets, hand-in questions etc. The recommended text on which the course is based is "Thermal Physics" by Finn. There are several copies of the second edition in the.
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