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1 ¾É½×¡G¤°»ò¬O«Ø¼Ò¡H¤°»ò¬O¼ÒÀÀ¡H¥¦­Ì¦³¤°»ò¥Î¡H
Introduction: What is modeling, what is simulation, what are they used for?
2 ²Î­p¤O¾Ç¡G¥Ñ²³æ­ÓÅé²Õ¦¨¤§Á`Å骺²Î­p¥­§¡¦æ¬°¡F¬ï³z=ÀH¾÷Àô¹Ò¡FµL³W¦æ¨«¡FÂX´²¾É­Pªº»E¶°
Statistical Mechanics: Statistical averaged behavior of populations of simple actors; percolation = random environments; random walks; diffusion-limited aggregation
3 ¤À¤l°Ê¤O¾Ç
Molecular Dynamics
4 »X¦a¥dù
Monte-Carlo
5 ±qÀY­pºâªk¡G¹q¤l±K«×¨ç¼Æªº²Ä¤@­ì²z¶q¤l¤O¾Ç­pºâ
Ab-Initio Calculations: First-principles quantum mechanics calculations of electron density functions
6 ³sÄò¤¶½è¤èªkI¡G³sÄò¤¶½è¤èµ{¡A¼ö¶Ç¾Éªº¦³­­®t¤Àªk
Continuum Methods I: Continuum equations, finite difference method for heat conduction
7 ³sÄò¤¶½è¤èªkII¡G±qÂ÷´²¨ì³sÄò¡A¼u©Ê¤O¾Çªº¦³­­¤¸ªk
Continuum Methods II: From discrete to continuous, finite element method for elastic mechanics
8 ¬y¨F¤ÎPebble-Bed ®Ö¤ÏÀ³Äl¡F´¹Åé¬O«ç¼Ë¿Ä¤Æªº
Draining Sand and Pebble-Bed Nuclear Reactors; How Crystals Melt
9 ¥­¿ÅºA¤¶­±¡F¤¶­±°Ê¤O¾Ç¡F¶Ç¿é¾É­Pªº¹q¤Æ¾Ç
Interfaces at Equilibrium; Interface Dynamics; Transport-Limited Electrochemistry
10 ¬ÛÅÜ¡F¤O¾Ç¥­¿Å»P¼ö¿é¹B
Phase Transitions; Mechanical Equilibrium and Thermal Transport
11 ªK´¹©T¤Æ¡F¯Ç¦Ì§Þ³N¤¤ªº­ì¤l¼ÒÀÀ¡F¸g¨å»P¶q¤l°h¤õ
Dendritic Solidification; Atomistic Simulations in Nanotechnology; Classical and Quantum Annealing
12 ªí­±¤Æ¾Çªº¦h¤Ø«×«Ø¼Ò¡F°©¦A³y»P°©§éªº¥Íª«¤O¾Ç
Multiscale Modeling of Surface Chemistry; Biomechanics of Bone Remodeling and Fracture
13 ³J¥Õ½è§éÅ|¡F¥Íª«Âå¾Ç¹Lµ{ªº¼ÒÀÀ¡F¥Íª«½¤¼ÒÀÀ
Protein Folding; Simulation of Biomedical Processes; Biomembrane Simulations
14 ¾Ç¥Í¤j§@·~³ø§i
Student Project Presentations

 
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