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Physics Used
Electric
All Papers in all subcategories
Physics Used - Electric
2-D Simulations of Striations in Direct Current Glow Discharges in Argon
R. R. Arslanbekov and V. I. Kolobov -
CFD Research Corporation
A 2-D Microcantilever Array for Multiplexed Biomolecular Analysis
Min Yue, Henry Lin, Daniel E. Dedrick, Srinath Satyanarayana and Arunava Majumdar
University of California, Berkeley
Aditya Bedekar and Jerry W. Jenkins
CFD Research Corporation
A Bi-directional Microfluidic Driving System
Chun-Ping Jen, Wei-Da Wu, Chung-Yi Wu and Yu-Cheng Lin
National Cheng Kung University
Guang-Guo Wu and Chong-Ching Chang
Kun Shan University of Technology
A Feedback Controlled Carbon Nanotube Based NEMS Device: Concept and Modeling
Changhong Ke and Horacio D. Espinosa
Northwestern University
A microfluidic device for continuous, real time blood plasma separation
Sung Yang, Akif U¨ ndar and Jeffrey D. Zahn
Department of Bioengineering, Pennsylvania State University
A Novel Technology to Create Monolithic Instruments for Micro Total Analysis Systems
Konstantin Seibel, Lars Scholer, Marcus Walder, Heiko Schafer, Andre Schafer, Tobias Pletzer, Rene Puschl, Michael Waidelich, Heiko Ihmels, Dietmar Ehrhardt and Markus Bohm
University of Siegen
Aluminum Doping of Epitaxial Silicon Carbide
U. Forsberg, O. Danielsson, A. Henry, E. Janzen
Linkoping University
M.K. Linnarsson
Royal Institute of Technology
An analysis of induced pressure fields in electroosmotic flows through microchannels
Yonghao Zhang, Xiao-Jun Gu, Robert W. Barber and David R. Emerson
CCLRC Daresbury Laboratory
An Integrated Multidisciplinary CAD/CAE Environment for Micro-Electro-Mechanical Systems (MEMS)
Andrzej Przekwas
CFD Research Corp.
An Investigation of Magnetohydrodynamic Acceleration of Subsonic Plasma
Douglas G. Fletcher
von Karman Institute for Fluid Dynamics
Analysis of electrostatic charge distribution in nanotubes and nanowires
Changhong Ke and Horacio D. Espinosa
Northwestern University
Analysis of electrostatic charge distribution in nanotubes and nanowires
Changhong Ke and Horacio D. Espinosa
Northwestern University
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