|
|
 |
 |
|
½Òµ{«ÂI
¥»½Òµ{¬O²Îp¤O¾Çªº¨âÓ¨t¦C½Òµ{¤¤ªº¤@Ó¡C¥»¯¸ÂI¤º¥]§t½Òµ{ªº²ßÃD¶°©M¦Ò¸ÕÃD¡C
This course is part of a two-course sequence in Statistical Mechanics. The web site features problem sets and exams.
½Òµ{´yz
8.333¬O²Îp¤O¾Çªº¨â¾Ç´Á¨t¦C½Òµ{¤¤ªº²Ä¤@Ó¡C½Òµ{¤¤¦Ò¹î¤F²Îp¤O¾Çªº°ò¥»ì²z¡G¼ö¤O¾Ç©w«ß¥H¤Î·Å«×ªº·§©À¡B¥\¡B¼ö©Mæi¡C¸g¨å²Îp¤O¾Çªº°²©w¡B·L¥¿«h¡B¥¿«h©M¥¨¥¿«h¤À§G¡F²Îp¤O¾Ç¦b´¹®æ®¶°Ê¤¤ªºÀ³¥Î¡B²z·Q®ðÅé¡B¥ú¤l®ðÅé¡C¶q¤l²Îp¤O¾Ç¡BFermi©MBose¨t²Î¡C¬Û¤¬§@¥Î¨t²Î¡G¶°¹Î®i¶}¡Bvan der Waal®ðÅé©M¥§¡³õ²z½×¡C
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. Postulates of classical statistical mechanics, micro canonical, canonical, and grand canonical distributions; applications to lattice vibrations, ideal gas, photon gas. Quantum statistical mechanics; Fermi and Bose systems. Interacting systems: cluster expansions, van der Waal's gas, and mean-field theory.
|
|
 |
| ®v¸ê |
|
Á¿®v¡G
Senthil Todadri ±Ð±Â
|
| ¤W½Ò®É¼Æ |
±Ð®v±Â½Ò¡G
¨C¶g2¸`
¨C¸`1.5¤p®É
½Æ²ß/¹ê²ß½Òµ{¡G
¨C¶g1¸`
¨C¸`1.5¤p®É
|
| µ{«× |
|
¬ã¨s©Ò
|
| ¦^À³ |
| §i¶D§Ú̱z¹ï¥»½Òµ{©Î¡u¶}©ñ¦¡½Òµ{ºô¶¡vªº«ØÄ³¡C |
| Án©ú |
³Â¬Ù²z¤u¾Ç°|¶}©ñ¦¡½Òµ{»{¥i ¶}©ñ¦¡½Òµ{pµe¡]OOPS¡^ªºÂ½Ä¶pµe¡A¶}©ñ¦¡½Òµ{pµe¡]OOPS¡^¤D¬O¹B¥Î¨ä¿W¥ß¹Î¶¤¡B¿W¥ß¸ê·½¡B¿W¥ß¬yµ{¶i¦æÂ½Ä¶pµe¤§¹Î¶¤¡C
©Ò¦³³Â¬Ù²z¤u¾Ç°|¶}©ñ¦¡½Òµ{¤§§÷®Æ¬Ò¥H³Â¬Ù²z¤u¾Ç°|¶}©ñ¦¡½Òµ{³Ð§@¦@¨É±ÂÅvµo§G¡A©Ò¦³¤§Â½Ä¶¸ê®Æ¬Ò¥Ñ¶}©ñ¦¡½Òµ{pµe¡]OOPS¡^©Ò´£¨Ñ¡A¨Ã¥Ñ¨ät½Ķ«~½è¤§³d¥ô¡C
¦¹³B³Â¬Ù²z¤u¾Ç°|¶}©ñ¦¡½Òµ{¤§¸ê®Æ¤D¥Ñ ¶}©ñ¦¡½Òµ{pµe¡]OOPS¡^ ͬ°¥¿Å餤¤å¡C³Â¬Ù²z¤u¾Ç°|¶}©ñ¦¡½Òµ{¦b¦¹Án©ú¡A¤£½×¬O§_¾D¹J©Îµo²{¬ÛÃöijÃD¡A³Â¬Ù²z¤u¾Ç°|¶}©ñ¦¡½Òµ{¡B³Â¬Ù²z¤u¾Ç°|±Ð®v¡B³Â¬Ù²z¤u¾Ç°|®Õ¤è¨Ã¤£¹ï½Ķ¥¿½T«×¤Î§¹¾ã©Ê§@«OÃÒ¡C¤Wz³æ¦ì¨Ã¹ï½Ķ«á¤§¸ê®Æ¤£§@©ú¥Ü©ÎÀq³\¹ï¥ô¤@¯S©w¥Øªº¤§¾A¦X©Ê¤§«OÃÒ¡B«D«IÅv¤§«OÃÒ¡B©Î¥Ã¤£¥X¿ù¤§«OÃÒ¡C³Â¬Ù²z¤u¾Ç°|®Õ¤è¡B³Â¬Ù²z¤u¾Ç°|¶}©ñ¦¡½Òµ{¹ï½Ķ¤W¤§¤£¥¿½T¤£t¥ô¦ó³d¥ô¡C¥Ñ½Ķ©Ò¤Þµo¥ô¦óÃö©ó¦¹µ¥¸ê®Æ¤§¤£¥¿½T©Î¨ä¥L·å²«¡A¬Ò¥Ñ¶}©ñ¦¡½Òµ{pµe¡]OOPS¡^t¥þ³d¡A¦Ó«D³Â¬Ù²z¤u¾Ç°|¶}©ñ¦¡½Òµ{¤§³d¡C
ì¤åÁn©ú |
|
|
|
|
 |
 |
 |