Ch2.11~Ch2.13 Conclusion of continuous fluid to Ising model, Ch3.1 AD HOC solution methods

WeekCourse ContentCourse Video
Course Introduction
Ch1.1 Scaling & dimensional analysis
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Ch1.2 Power laws in statistical physicsWatch Online
Ch2.1&Ch2.2 Phase transition in principle —Universality &Scaling lawsWatch Online
Ch2.2 & Ch2.3 Thermaldynamic Limit & Phase boundaryWatch Online
Ch2.3 Type of phase transition & Finite size effect
Ch2.5 Ising model
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Ch2.5 Ising modelWatch Online
Ch2.7 Symmetry property of Ising magnetWatch Online
Ch2.8 Ising Ferromagnet & domain wallWatch Online
Ch2.9 Spontaneous symmetry brokenWatch Online
Ch2.10 (I) Ergodicity breaking
Ch2.11~Ch2.12 (II) Link from fluid to Ising model
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Ch2.11~CH2.13 Mapping from continuous fluid to Ising modelWatch Online
Ch2.11~Ch2.13 Conclusion of continuous fluid to Ising model
Ch3.1 AD HOC solution methods
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Ch3.2 Transfer matrix
Ch3.3 Perron's theorem
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Ch3.4 Thermaldynamic propertiesWatch Online
Ch3.5 Spatial correlationsWatch Online
Ch3.5~Ch3.7 Two spins correlations function & solvable Ising modelWatch Online
Ch3.7 Ising model mean field theoryWatch Online
Ch3.7 D-dimensions Ising model mean field theoryWatch Online
Ch 5.3 Landau theoryWatch Online
CH5.5 Landau theory & First order transitionWatch Online
Ch5.6 Landau’s free energyWatch Online
Ch5.7 Landau’s free energy Green’s functionWatch Online
Ch6.1& Ch6.2 Breakdown Landau theoryWatch Online
Ch6.2 Breakdown Landau theory
Ch6.3 Gaussian Approximation
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Ch6.3 Gaussian ApproximationWatch Online
Ch7.1 Anomalous DimensionsWatch Online
Ch7.2 Dimensional analysis
Ch8.1 Scaling
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Ch8.2 Scaling hypothesis
Ch9.1 block spin
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Ch9.1 Kadanoff’s block spin
Ch9.2 Renormalization group
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Ch9.2 Renormalization groupWatch Online
Ch9.3 Renormalization group—fixed pointsWatch Online
Ch9.4 Renormalization group transformationWatch Online
Ch9.6 RG for the two dimensional Ising modelWatch Online