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He Yang
Associate Professor
Mathematics
Email
hyang1
augusta
edu
h-index
179
Citations
6
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2010
2023
Research activity per year
Overview
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Scholarly Output
(24)
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(6)
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Dive into the research topics where He Yang is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Mathematics
Advection Equation
21%
Approximation
9%
Beam Equation
15%
Boundary conditions
10%
Boussinesq Equations
14%
Chebyshev
12%
Coefficient
14%
Collocation
12%
Conservation
22%
Dirac delta function
16%
Discontinuous Galerkin Method
41%
Discretization
11%
Dissipation
12%
Divergence-free
15%
Duality
10%
Energy
19%
Energy Conservation
16%
Error Estimates
33%
Euler-Bernoulli Beam
17%
Existence and Uniqueness Theorem
17%
Flexibility
9%
Fractional
40%
Fractional Diffusion Equation
14%
Gibbs Phenomenon
8%
High-order Methods
24%
Higher Order
12%
Homotopy Analysis Method
15%
Hyperbolic Equations
12%
Inverse Problem
24%
Klein-Gordon Equation
32%
Linear Order
13%
Local Discontinuous Galerkin Method
52%
Maxwell System
16%
Mesons
20%
Momentum
12%
Numerical Experiment
12%
Numerical Methods
23%
Optimal Error Estimates
20%
Plasma
8%
Proof by induction
12%
Recovery
12%
Runge-Kutta
17%
Scalar
12%
Source Terms
13%
Stability Analysis
10%
Term
10%
Ultrasound
12%
Unknown
8%
Verify
8%
Wave equation
10%
Engineering & Materials Science
Advection
19%
Boundary conditions
19%
Boundary value problems
30%
Charged particles
9%
Chebyshev approximation
20%
Collisionless plasmas
9%
Conservation
26%
Convergence of numerical methods
11%
Convolutional neural networks
32%
Deep learning
33%
Deep neural networks
18%
Delta functions
18%
Derivatives
8%
Differential equations
7%
Diffraction
6%
Electromagnetic induction
15%
Energy conservation
15%
Experiments
15%
Finite difference method
6%
Fluorescence
14%
Fluorophores
21%
Fluxes
8%
Galerkin methods
100%
Hamiltonians
22%
Image reconstruction
6%
Integral equations
6%
Inverse problems
47%
Limiters
7%
Machine learning
9%
Magnetic fields
6%
Magnetohydrodynamics
7%
Medical imaging
7%
Momentum
11%
Nonlinear equations
13%
Numerical methods
36%
Object recognition
6%
Parallel processing systems
6%
Photons
7%
Pipe
9%
Plasmas
9%
Polynomials
11%
Quantum theory
6%
Recovery
8%
Scattering
17%
Solitons
8%
Tomography
24%
Ultrasonics
10%
Wave equations
16%
Wear of materials
9%
X rays
11%
Physics & Astronomy
boundary conditions
9%
coefficients
6%
Crank-Nicholson method
11%
existence theorems
6%
far fields
7%
fluorescence
18%
Galerkin method
14%
inverse scattering
14%
learning
13%
mice
5%
nonlinear equations
11%
solitary waves
5%
tomography
20%
uniqueness
14%
uniqueness theorem
6%
wave equations
12%