{"id":189,"date":"2019-08-08T08:43:29","date_gmt":"2019-08-07T23:43:29","guid":{"rendered":"https:\/\/www.ee.nthu.edu.tw\/oh-e\/?page_id=189"},"modified":"2025-08-01T13:40:32","modified_gmt":"2025-08-01T04:40:32","slug":"lecture","status":"publish","type":"page","link":"https:\/\/www.ee.nthu.edu.tw\/oh-e\/lecture\/","title":{"rendered":"Lectures"},"content":{"rendered":"<p>For undergraduate courses, we normally assign a textbook and the contents of an undergraduate course would come from it. However, we try to reorganize the contents in a more digestible way and provide physical insights underlying each topic. For graduate courses, we explore interdisciplinary knowledge: physics, chemistry, engineering, photonics, optics and others that surround organic optoelectronic devices. In particular, we view organic optoelectronic devices from the viewpoint of material science. To this end, we develop our own course materials. We try to use several teaching styles including active leaning, report works and presentations such that we encourage students to participate in class in an active way.<\/p>\n<h3>Fall 2025<\/h3>\n<p><a href=\"https:\/\/www.ee.nthu.edu.tw\/oh-e\/wp-content\/uploads\/2025\/08\/Syllabus_11410EE211000_ModernPhysics_052725.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Modern Physics<\/a><br \/>\n(\u8fd1\u4ee3\u7269\u7406) for undergraduates<\/p>\n<h3>Spring 2025<\/h3>\n<p><a href=\"https:\/\/www.ee.nthu.edu.tw\/oh-e\/wp-content\/uploads\/2025\/08\/Syllabus_11320IPT56200_PhysChemOptElecDevices_112624.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Organic Optoelectronics: Physics, Materials and Devices<\/a><br \/>\n(\u6709\u6a5f\u5149\u96fb\u7279\u8ad6\uff1a\u7269\u7406\u3001\u6750\u6599\u548c\u5143\u4ef6) for graduates<\/p>\n<h3>Fall 2024<\/h3>\n<p><a href=\"https:\/\/www.ee.nthu.edu.tw\/oh-e\/wp-content\/uploads\/2024\/06\/Syllabus_11310IPT561000_MatSciForOrgOptoelec_052724.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Materials Science for Organic Optoelectronics<\/a><br \/>\n(\u6709\u6a5f\u5149\u96fb\u6750\u6599\u79d1\u5b78) for graduates<\/p>\n<h3>Spring 2024<\/h3>\n<p>Ordinary Differential Equations<br \/>\n(\u5e38\u5fae\u5206\u65b9\u7a0b\u5f0f) for undergraduates<\/p>\n<p>Organic Optoelectronics: Physics, Materials and Devices<br \/>\n(\u6709\u6a5f\u5149\u96fb\u7279\u8ad6\uff1a\u7269\u7406\u3001\u6750\u6599\u548c\u5143\u4ef6) for graduates<\/p>\n<h3>Fall 2023<\/h3>\n<p>Materials Science for Organic Optoelectronics<br \/>\n(\u6709\u6a5f\u5149\u96fb\u6750\u6599\u79d1\u5b78) for graduates<\/p>\n<p><a href=\"https:\/\/www.ee.nthu.edu.tw\/oh-e\/wp-content\/uploads\/2023\/07\/Syllabus_11210IPT591000_IIPTSeminar_052223.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">IPT Seminar<\/a><br \/>\n(\u66f8\u5831\u8a0e\u8ad6) for graduates<\/p>\n<h3>Spring 2023<\/h3>\n<p>Ordinary Differential Equations<br \/>\n(\u5e38\u5fae\u5206\u65b9\u7a0b\u5f0f) for undergraduates<\/p>\n<p>Organic Optoelectronics: Physics, Materials and Devices<br \/>\n(\u6709\u6a5f\u5149\u96fb\u7279\u8ad6\uff1a\u7269\u7406\u3001\u6750\u6599\u548c\u5143\u4ef6) for graduates<\/p>\n<h3>Fall 2022<\/h3>\n<p>Materials Science for Organic Optoelectronics<br \/>\n(\u6709\u6a5f\u5149\u96fb\u6750\u6599\u79d1\u5b78) for graduates<\/p>\n<h3>Spring 2022<\/h3>\n<p>Ordinary Differential Equations<\/a><br \/>\n(\u5e38\u5fae\u5206\u65b9\u7a0b\u5f0f) for undergraduates<\/p>\n<p>Organic Optoelectronics: Physics, Materials and Devices<\/a><br \/>\n(\u6709\u6a5f\u5149\u96fb\u7279\u8ad6\uff1a\u7269\u7406\u3001\u6750\u6599\u548c\u5143\u4ef6) for graduates<\/p>\n<h3>Fall 2021<\/h3>\n<p>Materials Science for Organic Optoelectronics<br \/>\n(\u6709\u6a5f\u5149\u96fb\u6750\u6599\u79d1\u5b78) for graduates<\/p>\n<p>IPT Seminar<br \/>\n(\u66f8\u5831\u8a0e\u8ad6) for graduates<\/p>\n<h3>Spring 2021<\/h3>\n<p>Introduction to Solid-State Physics<br \/>\n(\u56fa\u614b\u7269\u7406\u5c0e\u8ad6) for undergraduates<\/p>\n<p>Selected Topics in Organic Optoelectronics: Physics, Materials and Devices<br \/>\n(\u6709\u6a5f\u5149\u96fb\u7279\u8ad6\uff1a\u7269\u7406\u3001\u6750\u6599\u548c\u5143\u4ef6) for graduates<\/p>\n<h3>Fall 2020<\/h3>\n<p>Special Topics in Materials Science for Organic Optoelectronics<br \/>\n(\u6709\u6a5f\u5149\u96fb\u6750\u6599\u79d1\u5b78\u7279\u8ad6) for graduates<\/p>\n<h3>Spring 2020<\/h3>\n<p>Modern Physics<br \/>\n(\u8fd1\u4ee3\u7269\u7406) for undergraduates<\/p>\n<p>Selected Topics in Organic Optoelectronics: Physics, Materials and Devices<br \/>\n(\u6709\u6a5f\u5149\u96fb\u7279\u8ad6\uff1a\u7269\u7406\u3001\u6750\u6599\u548c\u5143\u4ef6) for graduates<\/p>\n<h3>Fall 2019<\/h3>\n<p>Special Topics in Materials Science for Organic Optoelectronics<br \/>\n(\u6709\u6a5f\u5149\u96fb\u6750\u6599\u79d1\u5b78\u7279\u8ad6) for graduates<\/p>\n<h3>Spring 2019<\/h3>\n<p>Modern Physics<br \/>\n(\u8fd1\u4ee3\u7269\u7406) for undergraduates<\/p>\n<p>Selected Topics in Organic Optoelectronics: Physics, Materials and Devices<br \/>\n(\u6709\u6a5f\u5149\u96fb\u7279\u8ad6\uff1a\u7269\u7406\u3001\u6750\u6599\u548c\u5143\u4ef6) for graduates<\/p>\n<h3>Fall 2018<\/h3>\n<p>Special Topics in Materials Science for Organic Optoelectronics<br \/>\n(\u6709\u6a5f\u5149\u96fb\u6750\u6599\u79d1\u5b78\u7279\u8ad6) for graduates<\/p>\n<h3>Spring 2018<\/h3>\n<p>Modern Physics<br \/>\n(\u8fd1\u4ee3\u7269\u7406) for undergraduates<\/p>\n<h3>Fall 2017<\/h3>\n<p>Organic Optoelectronic Materials and Devices<br \/>\n(\u6709\u6a5f\u5149\u96fb\u6750\u6599\u548c\u5143\u4ef6) for graduates<\/p>\n<h3>Spring 2017<\/h3>\n<p>Organic Optoelectronic Materials and Devices<br \/>\n(\u6709\u6a5f\u5149\u96fb\u6750\u6599\u548c\u5143\u4ef6) for graduates<\/p>\n<h3>Fall 2016<\/h3>\n<p>Modern Physics<br \/>\n(\u8fd1\u4ee3\u7269\u7406) for undergraduates<\/p>\n","protected":false},"excerpt":{"rendered":"<p>For undergraduate courses, we normally assign a textbook and the contents of an  &#8230; 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