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Asymptotic Behavior of Solutions of Higher Order Fractional Differential Equations with a Caputo-Type Hadamard Derivative, Vol. 06, No. 1 (Jan. 2020), PP:1-10
doi:10.18576/pfda/060101
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Authors: |
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John R. Graef - Department of Mathematics, University of Tennessee at Chattanooga, Chattanooga, TN 37403, USA
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Said R. Grace - Department of Engineering Mathematics, Faculty of Engineering, Cairo University, Orman, Giza 12613, Egypt
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Ercan Tunc ̧ - Department of Mathematics, Faculty of Arts and Sciences, Gaziosmanpasa University, 60240, Tokat, Turkey
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How to Cite:
John R. Graef, Said R. Grace, Ercan Tunc ̧, Asymptotic Behavior of Solutions of Higher Order Fractional Differential Equations with a Caputo-Type Hadamard Derivative, Progress in Fractional Differentiation and Applications, Vol. 06, No. 1, pp: 1-10, 2020, Doi: https://dx.doi.org/10.18576/pfda/060101
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Linearization of Nonlinear Fractional Differential Systems with Riemann-Liouville and Hadamard Derivatives⋆, Vol. 06, No. 1 (Jan. 2020), PP:11-22
doi:10.18576/pfda/060102
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Authors: |
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Changpin Li - Department of Mathematics, Shanghai University, 200444, People’s Republic of China
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Shahzad Sarwar - Department of Mathematics & Statistics, King Fahd University of Petroleum and Minerals, Dhahran, 31261, Kingdom of Saudi Arabia
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How to Cite:
Changpin Li, Shahzad Sarwar, Linearization of Nonlinear Fractional Differential Systems with Riemann-Liouville and Hadamard Derivatives⋆, Progress in Fractional Differentiation and Applications, Vol. 06, No. 1, pp: 11-22, 2020, Doi: https://dx.doi.org/10.18576/pfda/060102
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A Convenience Approximate Method for Solving an Inverse Heat Conduction Problem, Vol. 06, No. 1 (Jan. 2020), PP:23-28
doi:10.18576/pfda/060103
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Authors: |
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Rahmat Darzi - Department of Mathematics, Neka Branch, Islamic Azad University, Neka, Iran
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Bahram Agheli - Department of Mathematics, Qaemshahr Branch, Islamic Azad University, Qaemshahr, Iran
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How to Cite:
Rahmat Darzi, Bahram Agheli, A Convenience Approximate Method for Solving an Inverse Heat Conduction Problem, Progress in Fractional Differentiation and Applications, Vol. 06, No. 1, pp: 23-28, 2020, Doi: https://dx.doi.org/10.18576/pfda/060103
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Mathematical Analysis and Numerical Simulation of Chaotic Noninteger Order Differential Systems with Riemann-Liouville Derivative, Vol. 06, No. 1 (Jan. 2020), PP:29-42
doi:10.18576/pfda/060104
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Authors: |
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Kolade M. Owolabi - Faculty of Mathematics and Statistics, Ton Duc Thang University, Ho Chi Minh City, Vietnam
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How to Cite:
Kolade M. Owolabi, Mathematical Analysis and Numerical Simulation of Chaotic Noninteger Order Differential Systems with Riemann-Liouville Derivative, Progress in Fractional Differentiation and Applications, Vol. 06, No. 1, pp: 29-42, 2020, Doi: https://dx.doi.org/10.18576/pfda/060104
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Modeling Transient Currents in Time-of-Flight Experiments with Tempered Time-Fractional Diffusion Equations, Vol. 06, No. 1 (Jan. 2020), PP:43-53
doi:10.18576/pfda/060105
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Authors: |
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Maria Lu ́ısa Morgado - Center for Computational and Sthocastic Mathematics, Instituto Superior Te ́cnico, Lisboa, Portugal and Department of Mathematics, University of Tra ́s-os-Montes e Alto Douro, UTAD, Quinta de Prados 5001-801, Vila Real, Portugal
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Lu ́ıs Filipe Morgado - Instituto de Telecomunicac ̧o ̃es, Lisboa, Portugal and Department of Physics, University of Tra ́s-os-Montes e Alto Douro, UTAD, Quinta de Prados 5001-801, Vila Real, Portugal
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How to Cite:
Maria Lu ́ısa Morgado, Lu ́ıs Filipe Morgado, Modeling Transient Currents in Time-of-Flight Experiments with Tempered Time-Fractional Diffusion Equations, Progress in Fractional Differentiation and Applications, Vol. 06, No. 1, pp: 43-53, 2020, Doi: https://dx.doi.org/10.18576/pfda/060105
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Using Finite Volume-Element Method for Solving Space Fractional Advection-Dispersion Equation, Vol. 06, No. 1 (Jan. 2020), PP:55-66
doi:10.18576/pfda/060106
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Authors: |
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Allahbakhsh Yazdani - Faculty of Mathematical Sciences,University of Mazandaran,Babolsar, Iran
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Navid Mojahed - Faculty of Mathematical Sciences,University of Mazandaran,Babolsar, Iran
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Afshin Babaei - Faculty of Mathematical Sciences,University of Mazandaran,Babolsar, Iran
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Elena Vazquez Cendon - Faculty of Mathematics, University of Santiago de Compostela, Santiago de Compostela, Spain
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How to Cite:
Allahbakhsh Yazdani, Navid Mojahed, Afshin Babaei, Elena Vazquez Cendon, Using Finite Volume-Element Method for Solving Space Fractional Advection-Dispersion Equation, Progress in Fractional Differentiation and Applications, Vol. 06, No. 1, pp: 55-66, 2020, Doi: https://dx.doi.org/10.18576/pfda/060106
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On a Space-Fractional Heat Equation with Non- homogeneous Fractional Time Poisson Process, Vol. 06, No. 1 (Jan. 2020), PP:67-79
doi:10.18576/pfda/060107
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Authors: |
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McSylvester Ejighikeme Omaba - Department of Mathematics, College of Science, University of Hafr Al Batin, P. O Box 1803 Hafr Al Batin 31991, Saudi Arabia
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How to Cite:
McSylvester Ejighikeme Omaba, On a Space-Fractional Heat Equation with Non- homogeneous Fractional Time Poisson Process, Progress in Fractional Differentiation and Applications, Vol. 06, No. 1, pp: 67-79, 2020, Doi: https://dx.doi.org/10.18576/pfda/060107
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