COMPARISON PRINCIPLES FOR HADAMARD-TYPE FRACTIONAL DIFFERENTIAL EQUATIONS
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Publication:4959966
DOI10.1142/S0218348X18500561zbMath1433.34016OpenAlexW2802707836WikidataQ129915247 ScholiaQ129915247MaRDI QIDQ4959966
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Publication date: 7 April 2020
Published in: Fractals (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1142/s0218348x18500561
Related Items (5)
RIEMANN–LIOUVILLE FRACTIONAL INTEGRO-DIFFERENTIAL EQUATIONS WITH FRACTIONAL NONLOCAL MULTI-POINT BOUNDARY CONDITIONS ⋮ FINITE PART INTEGRALS ASSOCIATED WITH RIESZ AND HILFER DERIVATIVES ⋮ Maximum principles for a class of generalized time-fractional diffusion equations ⋮ COMPARISON THEOREMS FOR CAPUTO–HADAMARD FRACTIONAL DIFFERENTIAL EQUATIONS ⋮ Temporal discretization for Caputo-Hadamard fractional derivative with incomplete gamma function via Whittaker function
Cites Work
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- Comparison theorems for neutral stochastic functional differential equations
- Fractional dynamical system and its linearization theorem
- Comparison theorem for stochastic functional differential equations and applications
- Fractional derivatives for physicists and engineers. Volume I: Background and theory. Volume II: Applications
- Mellin transform analysis and integration by parts for Hadamard-type fractional integrals
- Power law analysis of financial index dynamics
- Comparison and existence theorems for multicomponent diffusion systems
- Stability of fractional-order nonlinear dynamic systems: Lyapunov direct method and generalized Mittag-Leffler stability
- Comparison theorems for differential equations
- Fractional calculus in the Mellin setting and Hadamard-type fractional integrals
- Comparison Theorems for Matrix Riccati Equations
- An Analysis of the Modified L1 Scheme for Time-Fractional Partial Differential Equations with Nonsmooth Data
- Recent Advances in Applied Nonlinear Dynamics with Numerical Analysis
- Fractional differentiation matrices with applications
- Necessary and sufficient conditions for the existence of the Hadamard-type fractional derivative
- Asymptotic Integration and Stability
- ON HADAMARD FRACTIONAL CALCULUS
- Solutions of Fractional Partial Differential Equations of Quantum Mechanics
- Comparison Theorems and Integral Inequalities for Volterra Integral Equations
- Comparison Theorems Related to Nonlinear Eigenvalue Problems
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