nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
A fractional Gauss–Jacobi quadrature rule for approximating fractional integrals and derivatives
|
Jahanshahi, S. |
|
2017 |
102 |
C |
p. 295-304 |
artikel |
2 |
A generalization of the Lomnitz logarithmic creep law via Hadamard fractional calculus
|
Garra, Roberto |
|
2017 |
102 |
C |
p. 333-338 |
artikel |
3 |
Analytical approximate solutions for quadratic Riccati differential equation of fractional order using the Polynomial Least Squares Method
|
Bota, Constantin |
|
2017 |
102 |
C |
p. 339-345 |
artikel |
4 |
An enhanced multi-wing fractional-order chaotic system with coexisting attractors and switching hybrid synchronisation with its nonautonomous counterpart
|
Borah, Manashita |
|
2017 |
102 |
C |
p. 372-386 |
artikel |
5 |
An integro quadratic spline approach for a class of variable-order fractional initial value problems
|
Moghaddam, B.P. |
|
2017 |
102 |
C |
p. 354-360 |
artikel |
6 |
A novel adaptive order/parameter identification method for variable order systems application in viscoelastic soft tissue modeling
|
Tabatabaei, S. Sepehr |
|
2017 |
102 |
C |
p. 447-455 |
artikel |
7 |
Approximate controllability of semilinear Hilfer fractional differential inclusions with impulsive control inclusion conditions in Banach spaces
|
Debbouche, Amar |
|
2017 |
102 |
C |
p. 140-148 |
artikel |
8 |
A review of applications of fractional calculus in Earth system dynamics
|
Zhang, Yong |
|
2017 |
102 |
C |
p. 29-46 |
artikel |
9 |
A search for a spectral technique to solve nonlinear fractional differential equations
|
Turalska, Malgorzata |
|
2017 |
102 |
C |
p. 387-395 |
artikel |
10 |
A survey on Hadamard and Hilfer fractional differential equations: Analysis and stability
|
Abbas, Saïd |
|
2017 |
102 |
C |
p. 47-71 |
artikel |
11 |
Asymptotically compatible schemes for space-time nonlocal diffusion equations
|
Chen, An |
|
2017 |
102 |
C |
p. 361-371 |
artikel |
12 |
A time-fractional generalised advection equation from a stochastic process
|
Angstmann, C.N. |
|
2017 |
102 |
C |
p. 175-183 |
artikel |
13 |
A variable-order fractional differential equation model of shape memory polymers
|
Li, Zheng |
|
2017 |
102 |
C |
p. 473-485 |
artikel |
14 |
Backstepping based stabilization and synchronization of a class of fractional order chaotic systems
|
Shukla, Manoj Kumar |
|
2017 |
102 |
C |
p. 274-284 |
artikel |
15 |
Beyond monofractional kinetics
|
Sandev, Trifce |
|
2017 |
102 |
C |
p. 210-217 |
artikel |
16 |
Chaos analysis and asymptotic stability of generalized Caputo fractional differential equations
|
Baleanu, Dumitru |
|
2017 |
102 |
C |
p. 99-105 |
artikel |
17 |
Computational comparison and pattern visualization of forest fires
|
Lopes, António M. |
|
2017 |
102 |
C |
p. 407-413 |
artikel |
18 |
Conditions for continuity of fractional velocity and existence of fractional Taylor expansions
|
Prodanov, Dimiter |
|
2017 |
102 |
C |
p. 236-244 |
artikel |
19 |
Controllability of nonlinear stochastic fractional neutral systems with multiple time varying delays in control
|
Lizzy, R. Mabel |
|
2017 |
102 |
C |
p. 162-167 |
artikel |
20 |
Data-driven modelling of drug tissue trapping using anomalous kinetics
|
Copot, Dana |
|
2017 |
102 |
C |
p. 441-446 |
artikel |
21 |
Editorial Board
|
|
|
2017 |
102 |
C |
p. IFC |
artikel |
22 |
Energy methods for fractional Navier–Stokes equations
|
Zhou, Yong |
|
2017 |
102 |
C |
p. 78-85 |
artikel |
23 |
Existence results for coupled nonlinear fractional differential equations equipped with nonlocal coupled flux and multi-point boundary conditions
|
Agarwal, Ravi P. |
|
2017 |
102 |
C |
p. 149-161 |
artikel |
24 |
Extended Luenberger-type observer for a class of semilinear time fractional diffusion systems
|
Ge, Fudong |
|
2017 |
102 |
C |
p. 229-235 |
artikel |
25 |
Extending the deterministic Riemann–Liouville and Caputo operators to the random framework: A mean square approach with applications to solve random fractional differential equations
|
Burgos, C. |
|
2017 |
102 |
C |
p. 305-318 |
artikel |
26 |
Fractal-fractional differentiation and integration: Connecting fractal calculus and fractional calculus to predict complex system
|
Atangana, Abdon |
|
2017 |
102 |
C |
p. 396-406 |
artikel |
27 |
Fractional and fractal derivative models for transient anomalous diffusion: Model comparison
|
Sun, HongGuang |
|
2017 |
102 |
C |
p. 346-353 |
artikel |
28 |
Fractional calculus for respiratory mechanics: Power law impedance, viscoelasticity, and tissue heterogeneity
|
Ionescu, Clara |
|
2017 |
102 |
C |
p. 433-440 |
artikel |
29 |
Fractional calculus operators of special functions? The result is well predictable!
|
Kiryakova, Virginia |
|
2017 |
102 |
C |
p. 2-15 |
artikel |
30 |
Fractional derivatives on cosmic scales
|
Uchaikin, V.V. |
|
2017 |
102 |
C |
p. 197-209 |
artikel |
31 |
Fractional dynamical behavior of electrical activity in a model of pancreatic β-cells
|
Bodo, Bertrand |
|
2017 |
102 |
C |
p. 426-432 |
artikel |
32 |
Fractional Herglotz variational principles with generalized Caputo derivatives
|
Garra, Roberto |
|
2017 |
102 |
C |
p. 94-98 |
artikel |
33 |
Fractional spectral vanishing viscosity method: Application to the quasi-geostrophic equation
|
Song, Fangying |
|
2017 |
102 |
C |
p. 327-332 |
artikel |
34 |
Future Directions in Fractional Calculus Research and Applications
|
Meerschaert, Mark M. |
|
2017 |
102 |
C |
p. 1 |
artikel |
35 |
Generalised fractional evolution equations of Caputo type
|
Hernández-Hernández, M.E. |
|
2017 |
102 |
C |
p. 184-196 |
artikel |
36 |
Hyperchaotic behaviour obtained via a nonlocal operator with exponential decay and Mittag-Leffler laws
|
Atangana, Abdon |
|
2017 |
102 |
C |
p. 285-294 |
artikel |
37 |
Identification and validation of stable ARFIMA processes with application to UMTS data
|
Burnecki, Krzysztof |
|
2017 |
102 |
C |
p. 456-466 |
artikel |
38 |
Impulsive fractional differential equations with Riemann–Liouville derivative and iterative learning control
|
Chen, Qian |
|
2017 |
102 |
C |
p. 111-118 |
artikel |
39 |
Mellin integral transform approach to analyze the multidimensional diffusion-wave equations
|
Boyadjiev, Lyubomir |
|
2017 |
102 |
C |
p. 127-134 |
artikel |
40 |
Monotonicity analysis of a nabla discrete fractional operator with discrete Mittag-Leffler kernel
|
Abdeljawad, Thabet |
|
2017 |
102 |
C |
p. 106-110 |
artikel |
41 |
Multiplicity of solutions to fractional Hamiltonian systems with impulsive effects
|
Nyamoradi, Nemat |
|
2017 |
102 |
C |
p. 254-263 |
artikel |
42 |
New methodologies in fractional and fractal derivatives modeling
|
Chen, Wen |
|
2017 |
102 |
C |
p. 72-77 |
artikel |
43 |
On disappearance of chaos in fractional systems
|
Deshpande, Amey S. |
|
2017 |
102 |
C |
p. 119-126 |
artikel |
44 |
Pricing of basket options in subdiffusive fractional Black–Scholes model
|
Karipova, Gulnur |
|
2017 |
102 |
C |
p. 245-253 |
artikel |
45 |
Some properties of non-linear fractional stochastic heat equations on bounded domains
|
Foondun, Mohammud |
|
2017 |
102 |
C |
p. 86-93 |
artikel |
46 |
Stochastic representation of fractional Bessel-Riesz motion
|
Anh, V.V. |
|
2017 |
102 |
C |
p. 135-139 |
artikel |
47 |
The Cauchy problem for fractional Navier–Stokes equations in Sobolev spaces
|
Peng, Li |
|
2017 |
102 |
C |
p. 218-228 |
artikel |
48 |
The finite difference method for Caputo-type parabolic equation with fractional Laplacian: One-dimension case
|
Hu, Ye |
|
2017 |
102 |
C |
p. 319-326 |
artikel |
49 |
Time fractional cable equation and applications in neurophysiology
|
Vitali, Silvia |
|
2017 |
102 |
C |
p. 467-472 |
artikel |
50 |
Time fractional equations and probabilistic representation
|
Chen, Zhen-Qing |
|
2017 |
102 |
C |
p. 168-174 |
artikel |
51 |
Time fractional quantum mechanics
|
Laskin, Nick |
|
2017 |
102 |
C |
p. 16-28 |
artikel |
52 |
Upscaling chemical reactions in multicontinuum systems: When might time fractional equations work?
|
Bolster, Diogo |
|
2017 |
102 |
C |
p. 414-425 |
artikel |
53 |
Well-posedness of the Cahn–Hilliard equation with fractional free energy and its Fourier Galerkin approximation
|
Ainsworth, Mark |
|
2017 |
102 |
C |
p. 264-273 |
artikel |