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EMA 2017 Invited Speakers

Invited speaker Affiliation Symposium Symposium name
Andy Bell

University of Leeds, UK

S1 Advanced electronic materials: Processing, structures, properties, and applications
 Dragan Damjanovic  Swiss Federal Institute of Technology-EPFL, Switzerland S1 Advanced electronic materials: Processing, structures, properties, and applications
 John Daniel  University of New South Wales, Australia S1 Advanced electronic materials: Processing, structures, properties, and applications
 Eugene Furman  Penn State University S1 Advanced electronic materials: Processing, structures, properties, and applications
 Sean Garner  Corning Incorporated S1 Advanced electronic materials: Processing, structures, properties, and applications
 Jacob Jones  North Carolina State University S1 Advanced electronic materials: Processing, structures, properties, and applications
 Ken-ichi Kakimoto  Nagoya Institute of Technology, Japan S1 Advanced electronic materials: Processing, structures, properties, and applications
 Jim LeBeau  North Carolina State University S1 Advanced electronic materials: Processing, structures, properties, and applications
 Fei Li  Penn State University S1 Advanced electronic materials: Processing, structures, properties, and applications
 Jun Luo  TRS Technologies Inc., State College S1 Advanced electronic materials: Processing, structures, properties, and applications
 Steven Milne  

University of Leeds, UK

S1 Advanced electronic materials: Processing, structures, properties, and applications
 Vladimir Shvartsman  University of Duisburg-Essen, Germany  S1 Advanced electronic materials: Processing, structures, properties, and applications
 Clive Randall  Penn State University S1 Advanced electronic materials: Processing, structures, properties, and applications
 Rajeev Ranjan  Indian Institute of Science, India S1 Advanced electronic materials: Processing, structures, properties, and applications
 Matt Rosseinsky  University of Liverpool, UK S1 Advanced electronic materials: Processing, structures, properties, and applications
 Ke Wang  Tsinghua University, China S1 Advanced electronic materials: Processing, structures, properties, and applications
 Zuoguang Ye  Simon Fraser University, Canada S1 Advanced electronic materials: Processing, structures, properties, and applications
Paul McIntyre

Stanford University

S2 Advances processing for electronic and electrochemical systems: Crystals, films, and devices
James Trevey PneumatiCoat Technologies S2 Advances processing for electronic and electrochemical systems: Crystals, films, and devices
Veronica Augustyn North Carolina State University S2 Advances processing for electronic and electrochemical systems: Crystals, films, and devices
Robert Nemanich Arizona State University S2 Advances processing for electronic and electrochemical systems: Crystals, films, and devices
Clive Randall The Pennsylvania State University  S2 Advances processing for electronic and electrochemical systems: Crystals, films, and devices
Javier Garay UC Riverside S2 Advances processing for electronic and electrochemical systems: Crystals, films, and devices
Hari Nair Cornell University S2 Advances processing for electronic and electrochemical systems: Crystals, films, and devices
Alex Rettie Argonne National Laboratory S2 Advances processing for electronic and electrochemical systems: Crystals, films, and devices
Nicholas Strandwitz Lehigh University S2 Advances processing for electronic and electrochemical systems: Crystals, films, and devices
Mickel Holcomb West Virginia University S2 Advances processing for electronic and electrochemical systems: Crystals, films, and devices
Xiaoyu Kang North Carolina State University S2 Advances processing for electronic and electrochemical systems: Crystals, films, and devices
Valentino Cooper Oak Ridge National Laboratory S4 Computational design of electronic materials
Eric Jankowski Boise State University  S4 Computational design of electronic materials
Anderson Janotti University of Delaware S4 Computational design of electronic materials
Seunghun Lee University of Virginia S4 Computational design of electronic materials
Turab Lookman Los Alamos National Laboratory S4 Computational design of electronic materials
Rohan Mishra Washington University in St. Louis S4 Computational design of electronic materials
Sumeet Pandey Micron Technology Inc.  S4 Computational design of electronic materials
Thomas Proffen Oak Ridge National Laboratory   S4 Computational design of electronic materials
Karin M. Rabe Rutgers, The State University of New Jersey S4 Computational design of electronic materials
Rampi Ramprasad University of Connecticut, Storrs S4 Computational design of electronic materials
Aloysius Soon Yonsei University, Korea S4 Computational design of electronic materials
Qimin Yan Temple University S4 Computational design of electronic materials
Kesong Yang University of California, San Diego S4 Computational design of electronic materials
Ronggui Yang University of Colorado at Boulder S4 Computational design of electronic materials
Joel Varley Lawrence Livermore National Laboratory S4 Computational design of electronic materials
Derek Stewart HGST S4 Computational design of electronic materials
Sungjong Woo Korea Institute for Advanced Study S4 Computational design of electronic materials
Eric Stach Brookhaven National Lab S7 In situ experiments of microstructure evolution and properties
Gerhard Dehm Max-Planck-Institut für Eisenforschung GmbH S7 In situ experiments of microstructure evolution and properties
Nigel Browning Pacific Northwest National Laboratory S7 In situ experiments of microstructure evolution and properties
Christina Scheu Max-Planck-Institut für Eisenforschung GmbH S7 In situ experiments of microstructure evolution and properties
Klaus van Benthem UC Davis S7 In situ experiments of microstructure evolution and properties
Bryan Huey University of Connecticut S7 In situ experiments of microstructure evolution and properties
Joerg Jinschek FEI S7 In situ experiments of microstructure evolution and properties
Dominique Chatain  CINaM-CNRS  S9  Interfaces in microstructural evolution: Structure, properties, anisotropy, and motion
Shen Dillon  University of Illinois S9   Interfaces in microstructural evolution: Structure, properties, anisotropy, and motion
Suk-Joong L. Kang  KAIST S9   Interfaces in microstructural evolution: Structure, properties, anisotropy, and motion
Klaus van Benthem  UC Davis S9   Interfaces in microstructural evolution: Structure, properties, anisotropy, and motion
Daniel Weygand  KIT S9   Interfaces in microstructural evolution: Structure, properties, anisotropy, and motion
Rachel Zucker*  Berkeley S9   Interfaces in microstructural evolution: Structure, properties, anisotropy, and motion
Ming Tang  Rice University S9   Interfaces in microstructural evolution: Structure, properties, anisotropy, and motion
Mehmet Ali Gulgun Sabanci University S9 Interfaces in microstructural evolution: Structure, properties, anisotropy, and motion
 George Sawatzky   University of British Columbia S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Charles Fadley   University of California  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Zhigang Gui   University of Delaware  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Vikram Deshpande*  University of Utah  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Steve May   Drexel University  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Roman Engel Herbert       Pennsylvania State University  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Kookrin Char   Seoul National University  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Julia Mundy*  University of California, Berkeley    S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Chang-Beom Eom  University of Wisconsin  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Charles Ahn  Yale University  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Charles Tu   University of California  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Judith Driscoll  Univ. of Cambridge  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Bilge Yildiz  Massachusetts Institute of Technology  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Hua Zhou*  Argonne National Lab   S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Milan Radovic  PSI/Swiss Light Source  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Woo Seok Choi   Sungkyunkwan  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Michele Riva    TU Wien  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Yasuyuki Hikita*   Stanford University   S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Kyle Shen   Cornell University  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Hidenori Takagi   Max Planck  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Xiaoqing Pan   University of California, Irvine  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Nini Pryds   Denmark Tech University  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Ryan Comes*  Auburn   S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Andre Mkhoyan   University of Minnesota  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Jürgen Fleig   

TU Wien

 S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 Regina Dittmann   FZ Jülich  S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
 David Mebane*  West Virginia   S10   Interfacial phenomena in multifunctional heterostructures: from theory to transport processes
Sefat Athena Oak Ridge National Laboratory S15 Superconducting materials and applications
Yifeng Yang

Institute of Physics, Chinese Academy of Sciences, China

S15 Superconducting materials and applications
Mary Ann Sebastian Air Force Research Laboratory S15 Superconducting materials and applications
Shifeng Jin

Institute of Physics, Chinese Academy of Sciences, China

S15 Superconducting materials and applications
Sergey Bud’ko Ames Laboratory S15 Superconducting materials and applications
Jinguang Cheng

Institute of Physics, Chinese Academy of Sciences, China

S15 Superconducting materials and applications
Jin-Feng Jia

Shanghai Jiaotong University, China

S15 Superconducting materials and applications
Xingjiang Zhou

Institute of Physics, Chinese Academy of Sciences, China

S15 Superconducting materials and applications
Jiaqiang Yan Oak Ridge National Laboratory S15 Superconducting materials and applications
Arend Nijhuis

University of Twente, Netherlands

S15 Superconducting materials and applications
Hai-Hu Wen Nanjing University, China S15 Superconducting materials and applications
Guanghan Cao

Zhejiang University, China

S15 Superconducting materials and applications
Xianhui Chen

University of Science and Technology of China, China

S15 Superconducting materials and applications
Jacilynn Brant Air Force Research Laboratory S15 Superconducting materials and applications
Judy Wu University of Kansas S15 Superconducting materials and applications
Nadina Gheorghiu UES, Inc. S15 Superconducting materials and applications
Timothy Haugan Air Force Research Laboratory S15 Superconducting materials and applications
Alex Gurevich Old Dominion University S15 Superconducting materials and applications
Michael Susner UES, Inc. S15 Superconducting materials and applications
Jose Rodriguez California State University S15 Superconducting materials and applications
Michael Sumption Ohio State University S15 Superconducting materials and applications

*Young Professional

 


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