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Reza Abazari
ORCID
Publication Activity (10 Years)
Years Active: 2010-2022
Publications (10 Years): 4
Top Topics
Speckle Noise
Continuous Functions
Denoising
Hamilton Jacobi
Top Venues
Informatica
Comput. Appl. Math.
Multim. Tools Appl.
Neural Comput. Appl.
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Publications
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Reza Abazari
,
Hadi Rezazadeh
,
Lanre Akinyemi
,
Mustafa Inç
Numerical simulation of a binary alloy of 2D Cahn-Hilliard model for phase separation.
Comput. Appl. Math.
41 (8) (2022)
Reza Abazari
,
Mehrdad Lakestani
Non-Subsampled Shearlet Transform and Log-Transform Methods for Despeckling of Medical Ultrasound Images.
Informatica
30 (1) (2019)
Reza Abazari
,
Mehrdad Lakestani
A hybrid denoising algorithm based on shearlet transform method and Yaroslavsky's filter.
Multim. Tools Appl.
77 (14) (2018)
Reza Abazari
,
Shabnam Jamshidzadeh
,
Anjan Biswas
Solitary wave solutions of coupled boussinesq equation.
Complex.
21 (S2) (2016)
Rafie Rafiezadeh
,
Reza Abazari
Weighted fuzzy transform and its application for approximation of discrete functions by continuous functions.
J. Intell. Fuzzy Syst.
26 (5) (2014)
Reza Abazari
,
Adem Kiliçman
Application of differential transform method on nonlinear integro-differential equations with proportional delay.
Neural Comput. Appl.
24 (2) (2014)
Reza Abazari
Comment on "A new method for a generalized Hirota-Satsuma coupled KdV equation [Applied Mathematics and Computation 217 (17) (2011) 7117-7125]".
Appl. Math. Comput.
218 (9) (2012)
Reza Abazari
,
Masoud Ganji
Extended two-dimensional DTM and its application on nonlinear PDEs with proportional delay.
Int. J. Comput. Math.
88 (8) (2011)
M. M. Kabir
,
A. Borhanifar
,
Reza Abazari
Application of (G'/G)-expansion method to Regularized Long Wave (RLW) equation.
Comput. Math. Appl.
61 (8) (2011)
Reza Abazari
,
A. Borhanifar
Numerical study of the solution of the Burgers and coupled Burgers equations by a differential transformation method.
Comput. Math. Appl.
59 (8) (2010)
Reza Abazari
The (G'/G)-expansion method for Tzitzéica type nonlinear evolution equations.
Math. Comput. Model.
52 (9-10) (2010)