8.333 is the first course in a two-semester sequence on statistical mechanics. Basic principles are examined in 8.333: the laws of thermodynamics and the concepts of temperature, work, heat, and entropy.
Todadri, Senthil
core
Solving the Hubbard model with neural quantum states. [PDF]
Gu Y +11 more
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Statistical mechanics of nonequilibrium liquids
Statistical Mechanics of Nonequilibrium Liquids deals with theoretical rheology. The book discusses nonlinear response of systems and outlines the statistical mechanical theory.
Evans, Denis J +3 more
core
On a neural phonon model of EEG brain dynamics. [PDF]
Batterton C +5 more
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Can de Broglie-Bohm Mechanics Be Considered Complete? [PDF]
Drezet A, Amblard A.
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How, Why and When Tsallis Statistical Mechanics Provides Precise Descriptions of Natural Phenomena. [PDF]
Robledo A, Velarde C.
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Decoupling of Mechanical and Thermal Signals in OFDR Measurements with Integrated Fibres Based on Fibre Core Doping. [PDF]
Dittmar C +7 more
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Order-disorder phase transitions of phosphorene and their application to adiabatic quantum computing. [PDF]
Gomrokizadeh I +3 more
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The influence of structure and local structural defects on the magnetic properties of cobalt nanofilms. [PDF]
Vakhrushev A +3 more
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Predicting superconducting transition temperature through advanced machine learning and innovative feature engineering. [PDF]
Gashmard H, Shakeripour H, Alaei M.
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