Prof LAU Gih-Keong also actively contributes to teaching. He designed inviting course materials to interest and teach students in the study of science, technology, and engineering. Rather than simply narrating the classical textbook, he brought live experiments to the classroom. He designed the experiment session, case study/topical review, and computer modelling so that participating students in the course will have first-hand experiences in solving engineering/technological problems. From 2019 to now, the undergraduate course he taught includes Engineering Mechanics II- Dynamics, Vibration, and Unmanned Air Vehicles; whereas, the graduate courses include Bioinspired Soft Robotics and Finite Element Methods. From 2008 to 2019, he also taught the following subjects: Solid Mechanics and Vibration, Dynamics, Aircraft Structure II, and an M.Sc course on Micro-Electro-Mechanical Systems (MEMS). During 2021-22, he also organized a Drone making class for high school students
Courses:
Engineering Mechanics 2: Dynamics
Finite Element Methods for Multiphysics Applications
Introduction to Finite element Methods
Vibration
Bio-inspired Soft Robots
Practice of Unmanned Aerial Vehicles
3/11/2024 (日) #定時導覽, #展覽, #動手做, #互動體驗 #
NSTC國科會主辦陽明交大籌辦-場域簡介及活動規劃
https://kissscience.tw/?newsid=12904&menuid=14302&lgid=1&siteid=100614
2023/11/26(日)及2023/12/03(日) 「仿生智慧無人機」工作坊的主講者包括陽明交通大學機械工程學系的劉義強教授和環境工程學系的莊易學副教授。 課程概述包含了兩個主題:“仿生智慧載具:設計思考+實作”和“無人機在環境工程的應用”。
https://ict.nycu.edu.tw/?p=1802
29/10/2022 (六) #定時導覽, #展覽, #動手做, #互動體驗 #
NSTC國科會主辦陽明交大籌辦-場域簡介及活動規劃
https://www.kissscience.tw/?newsid=11611&menuid=14232&lgid=1&siteid=100611
2022/08/01~2022/09/04
國立陽明交通大學的ewant育網開放教育平臺高中MOOC-深度體驗營:本營隊旨在帶領學生認識無人機飛行原理與無人機的基本構造,並實際操作無人機翼的製作以及實際飛行。期能透過線上課程與實體營隊的活動,讓學生對於無人機有基本的了解,進而建立對飛行機械的興趣與進入大學前的先備概念。https://www.ewant.org/admin/tool/mooccourse/mnetcourseinfo.php?hostid=11&id=5956
Drone Inspired by Fastest Bird Is a Mix of a Paraglider, Airplane and Helicopter
Read up: Chin, Y.W., Kok, J.M., Zhu, Y.Q., Chan, W.L., Chahl, J.S., Khoo, B.C. and Lau, G.K., 2020. Efficient flapping wing drone arrests high speed flight using post-stall soaring. Sci. Robot., 5, p.eaba2386.