Modeling of sensor properties for reducing gases and charge distribution in nanostructured oxides: A comparison of theory with experimental data
V. L. Bodneva(Semenov Institute of Chemical Physics), Л. И. Трахтенберг(Lomonosov Moscow State University), Olusegun J. Ilegbusi(University of Central Florida), K. S. Kurmangaleev(Semenov Institute of Chemical Physics), V. S. Posvyanskiǐ(Semenov Institute of Chemical Physics), M. A. Kozhushner(Moscow Institute of Physics and Technology)
Cited by 17
Related Papers
Convection Heat Transfer
|Unknown|2013|708
Effect of Endothelial Shear Stress on the Progression of Coronary Artery Disease, Vascular Remodeling, and In-Stent Restenosis in Humans
|Circulation|2003|436
Determination of in vivo velocity and endothelial shear stress patterns with phasic flow in human coronary arteries: A methodology to predict progression of coronary atherosclerosis
|American Heart Journal|2002|119
Reproducibility of coronary lumen, plaque, and vessel wall reconstruction and of endothelial shear stress measurements in vivo in humans
|Catheterization and Cardiovascular Interventions|2003|83
The Physical and Mathematical Modeling of Tundish Operations
|Unknown|1989|80