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姓名Name
高國傑 / Guo-Jie Jason Gao
職稱Title
助理教授 / Assistant Professor
辦公室Office
工綜601室 / Engineering Building, Room 601
電話Phone
+886-2-3366-2710
傳真Fax
+886-2-2363-1755
電子郵件E-mail
個人網頁Homepage
(準備中 / In preparation)
實驗室Lab

工綜521室 / Engineering Building, Room 521

計算粉粒體實驗室 / Computational Laboratory for Granular Materials

 

自傳
Short Biography
學歷 / Education

2003.9 - 2009.12 Yale University, New Haven, CT, USA
M. Phil., M. S., and Ph.D. in Mechanical Engineering
Area of Specialization: Soft Condensed Matter Physics

1999.9 - 2001.6 National Taiwan University, Taipei, Taiwan
M. S. in Applied Mechanics (summa cum laude)
Area of Specialization: Fluid Mechanics

1995.9 - 1999.6 National Taiwan University, Taipei, Taiwan
B. S. in Physics

經歷 / Professional Experiences & Services

2014.8 - Present National Taiwan University, Taipei, Taiwan
Assistant Professor
Department of Mechanical Engineering

2011.4 - 2014.7 Osaka University, Osaka, Japan
Specially Appointed Researcher
Department of Mechanical Science and Bioengineering

2003.9 - 2010.9 Yale University, New Haven, CT, USA
Research Assistant and Research Scientist
Department of Mechanical Engineering

榮譽 / Honors

2004 Mildred Jordan Tuttle Fund Fellowship, Yale University, USA
2001 Inducted into Phi Tau Phi Scholastic Honor Society, Taiwan

學會 / Society Memberships

American Physical Society (APS), USA
研究領域
Research Interests
粉粒體物理及其工業應用、非平衡統計力學、離散元素法數值模擬
Physics of Granular Materials and Their Industrial Applications, Nonequilibrium Statistical Mechanics, Discrete Element Method
教學課程
Teaching Courses

簡單液體之理論與數值模擬
Theory and Numerical Simulations of Simple Liquids

工程數學下
Engineering Mathematics (II)
研究計劃
Research Projects
(準備中 / In preparation)

 

研究著作
Publications
期刊論文 (Journal Papers):

(Underlined names indicate corresponding authors. All papers are peer-reviewed.)


1. G. J. Gao, Corey S. O’Hern and S. Ogata, “Evolutionarily designing the least obstructive 
hopper”, (in preparation).

2. G. J. Gao, Y. Wang and S. Ogata, “Configuration and dynamics in binary mixtures with 
tunable composition and stiffness under shear”, (in preparation).

3. G. J. Gao, Y. Wang and S. Ogata, “Studying the elastic properties of nanocrystalline copper using a model of randomly packed uniform grains”, Computational Materials 
Science, 79, 56 (2013).

4. Y. Wang, G. J. Gao and S. Ogata, “Atomistic understanding of diffusion kinetics in 
nanocrystals from molecular dynamics simulations”, Physical Review B, 88, 115413 
(2013).

5. Y. Wang, G. J. Gao and S. Ogata, “Size-dependent transition of deformation mechanism, 
and nonlinear elasticity in Ni3Al nanowires,” Applied Physics Letters, 102, 041902 (2013).

6. G. J. Gao, “Theoretical and computational studies of small jammed systems”, Ph. D. 
Dissertation, Yale University, New Haven (2009).

7. G. J. Gao, J. Blawzdziewicz, C. S. O'Hern and M. Shattuck, “Experimental demonstration 
of nonuniform frequency distributions of granular packings”, Physical Review E, 80, 
061304 (2009).

8. G. J. Gao, J. Blawzdziewicz and C. S. O'Hern, “Geometrical families of mechanically 
stable granular packings”, Physical Review E, 80, 061303 (2009).

9. G. J. Gao, J. Blawzdziewicz and C. S. O'Hern, “Enumeration of distinct mechanically stable disk packings in small systems”, Philosophical Magazine, 87, 425 (2007).

10. G. J. Gao, J. Blawzdziewicz and C. S. O'Hern, “Frequency distribution of mechanically stable disk packings”, Physical Review E, 74, 061304 (2006).


研討會論文 / CONFERENCE PROCEEDINGS


1. G. J. Gao, J. Blawzdziewicz, and C. S. O'Hern, “Testing the equal-probability assumption for jammed particle packings”, Reports of the Institute of Fluid Science, Tohoku University, 19, 23 (2007).