Amanote Research
Register
Sign In
Discover open access scientific publications
Search, annotate, share and cite publications
Publications by Bingkang Chen
ADE-FDTD Method for Study of Two-Dimensional Electromagnetic Wave Propagation in Lossy Lorentz Medium
MATEC Web of Conferences
Materials Science
Engineering
Chemistry
Related publications
Comparison of FDTD and TDWP Methods for Simulating Electromagnetic Wave Propagation Above Terrains
Journal of Microwaves, Optoelectronics and Electromagnetic Applications
Electronic Engineering
Electrical
Tunnel Geological Prediction Radar Alternating Electromagnetic Field Propagation Attenuation in Lossy Inhomogeneous Medium
The FDTD Method for Ultrasound Pulse Propagation Through a Two‐dimensional Model of the Human Breast
Journal of the Acoustical Society of America
Acoustics
Ultrasonics
Arts
Humanities
On Some Strategies for Computer Simulation of the Wave Propagation Using Finite Differences I. One–Dimensional FDTD Method
Journal of Electrical Engineering
Electronic Engineering
Electrical
A Laguerre-Based FDTD Method for Wave Propagation in 2-D Anisotropic Dispersive Materials
IEICE Electronics Express
Electronic Engineering
Condensed Matter Physics
Optical
Electrical
Magnetic Materials
Electronic
Simulation of Electromagnetic Wave Propagation in the Medium Using Finite Difference Method on the Displaced Grids
Radioelektronika, Nanosistemy, Informacionnye Tehnologii
Materials Science
Information Systems
Computer Networks
Hardware
Communications
Optical
Architecture
Magnetic Materials
Electronic
Electromagnetic Scattering by a Cylinder in a Lossy Medium of an Inhomogeneous Elliptically Polarized Plane Wave
Journal of Telecommunications and Information Technology
Electronic Engineering
Communications
Electrical
Computer Networks
FDTD Study on Wave Propagation in Layered Structures With Biaxial Anisotropic Metamaterials
Progress In Electromagnetics Research
Two‐dimensional Nonlinear Wave Propagation in an Inhomogeneous Elastic Solid
Journal of the Acoustical Society of America
Acoustics
Ultrasonics
Arts
Humanities