Seungbum Hong

Prof. Seungbum Hong has graduated summa cum laude with a B.S. from Korea Advanced Institute of Science and Technology (KAIST) in 1994 and received his Ph.D. in the field of nanoscale observation of ferroelectric thin films at KAIST in 2000. After a year of post-doc experience in Ecole Polytechnique Federale de Lausanne (EPFL) in Switzerland from 2000 to 2001, he joined the probe storage project team as a project leader at Samsung Advanced Institute of Technology from 2002 to 2007. In 2007, he moved to Argonne National Laboratory as a tenured staff scientist, and worked as a principal investigator in local domain and transport studies of oxide heterostructures and polymer ferroelectrics using atomic force microscopy until 2017. In 2017, Prof. Hong joined KAIST as an associate professor with tenure in the department of materials science and engineering. He has a broad experience to link the fundamental science with industrial applications (120 peer reviewed journal papers (including 4 book chapters), 5 book editions, 4 book chapters, 76 patents) with a profound knowledge in the area of nanoscale characterization of ferroelectric and piezoelectric materials. He has been invited in major conferences or universities, has been awarded the Young Investigator Outstanding Achievement Award from International Symposium on Integrated Ferroelectrics in 2008, elected as the Frontier Scientist by the Korean Academy of Science and Technology in 2014 and has worked as a symposium organizer in MRS Spring 2006 and 2008, MRS Fall 2010, and APS March Meeting 2013. He visited EPFL as an invited professor in 2014, and has been appointed as a senior fellow by Northwestern Argonne Institute of Science and Engineering since 2016. He was the chair of CNM user executive committee in 2015 and worked as a member of MSD colloquium committee at Argonne National Laboratory from 2011..

Filter Courses within "Seungbum Hong" (Click to filter)
Electrodynamics: Analysis of Electric Fields (Coursera) Coursera
Korea Advanced Institute of Science and Technology - KAIST

Electrodynamics: Analysis of Electric Fields (Coursera)

Expand your knowledge in electrodynamics by enrolling in 'Electrodynamics: Analysis of Electric Fields'. This advanced course builds upon the basics introduced in 'Electrodynamics: An Introduction', focusing on intricate methods for calculating electric fields, polarization phenomena, and the behavior of dielectrics. Whether you're a student or a professional, this course will equip you with the tools to analyze complex electromagnetic systems.

Aug 17th 2026
5-12 Weeks
Electrodynamics: In-depth Solutions for Maxwell’s Equations (Coursera) Coursera
Korea Advanced Institute of Science and Technology - KAIST

Electrodynamics: In-depth Solutions for Maxwell’s Equations (Coursera)

Dive deeper into the world of electrodynamics with our advanced course, directly following 'Electric and Magnetic Fields'. Explore complex systems like oscillating dipoles and understand how to solve Maxwell’s Equations effectively. This course will also introduce you to the fascinating realm of alternating current (AC) circuits, providing in-depth solutions and applications.

Aug 17th 2026
5-12 Weeks
Electrodynamics: Electric and Magnetic Fields (Coursera) Coursera
Korea Advanced Institute of Science and Technology - KAIST

Electrodynamics: Electric and Magnetic Fields (Coursera)

Expand your knowledge of electrodynamics by delving into the fascinating world of electric and magnetic fields. This course builds upon previous studies in electrodynamics to explore magnetostatics and electromotive force, providing a deeper understanding of how these forces work together and their practical applications in engineering and technology.

Aug 10th 2026
5-12 Weeks
Electrodynamics: An Introduction (Coursera) Coursera
Korea Advanced Institute of Science and Technology - KAIST

Electrodynamics: An Introduction (Coursera)

Dive into the fascinating world of Electrodynamics with our introductory course designed for those eager to understand the fundamental forces governing electromagnetism. This course serves as a stepping stone from basic principles to practical applications in energy storage, harvesting, and more across materials science, physics, and chemistry.

Aug 3rd 2026
5-12 Weeks
Page 1