GSI Scientific Report 2009 [GSI Report 2010-1] [PDF]
Displacement design response spectrum is an essential component for the currently-developing displacement-based seismic design and assessment procedures. This paper proposes a new and simple method for constructing displacement design response spectra on
Lam, Nelson T. K. +3 more
core +2 more sources
Numerical Solution of Fractional Partial Differential Equations with Normalized Bernstein Wavelet Method [PDF]
In this paper, normalized Bernstein wavelets are presented. Next, the fractional order integration and Bernstein wavelets operational matrices of integration are derived and finally are used for solving fractional partial differential equations.
Abbasbandy, Saeid +2 more
core +1 more source
Theoretical and numerical studies of fractional Volterra-Fredholm integro-differential equations in Banach space [PDF]
This paper examines the theoretical, analytical, and approximate solutions of the Caputo fractional Volterra-Fredholm integro-differential equations (FVFIDEs).
AlSa'di, Kawthar +2 more
core +1 more source
Closure and completeness problems in approximation theory [PDF]
Much of the work in the theory of approximation has crystallised around two classical problems; the first is the Tchebyshev problem of finding a polynomial of degree n which gives the best uniform approximation to a given continuous function on an ...
Tambetabi, Henry Tabe
core
Teledetección. Nuevas plataformas y sensores aplicados a la gestión del agua, la agricultura y el medio ambiente [PDF]
Este libro recoge las comunicaciones presentadas al XVII Congreso de la Asociación Española de Teledetección (AET), celebrado del 3 al 7 de octubre de 2017 en el auditorio y palacio de congresos de Murcia y organizado por el Grupo de Sistemas de ...
Erena Arrabal, Manuel +2 more
core
In this work, a numerical algorithm is developed with the help of Legendre wavelets and quasilinearization method for simulation of Multidimensional Benjamin–Bona–Mahony–Burgers (BBMB) and Sobolev equations.
Kotapally Harish Kumar, Ram Jiwari
semanticscholar +1 more source
An Application of Müntz Wavelets Galerkin Method for Solving the Fractional Differential Equations
Inthis study, the Müntz wavelet which is a one of the quitely fresh wavelet typesis considered to derive a solution of the fractional differential equations inCaputo sense.
Seçer, Aydın, Çınar, Melih
core
NONLINEAR QUADRATIC INTEGRAL EQUATIONS USING MUNTZ-LEGENDRE WAVELETS
semanticscholar +1 more source
Müntz-Legendre spectral collocation method for solving delay fractional optimal control problems
In this paper, a numerical method is applied for solving delay fractional optimal control problems (DFOCPs). The fractional derivative is described in the Caputo sense. Since the fractional derivative of Muntz polynomials can be expressed in terms of the
S. Hosseinpour, A. Nazemi, E. Tohidi
semanticscholar +1 more source
Optimal Control of Time-Delay Fractional Equations via a Joint Application of Radial Basis Functions and Collocation Method. [PDF]
Chen SB +6 more
europepmc +1 more source

