Publication result detail

Application of differential transform to two-term fractional differential equations with noncommensurate orders

REBENDA, J.; ŠMARDA, Z.

Original Title

Application of differential transform to two-term fractional differential equations with noncommensurate orders

English Title

Application of differential transform to two-term fractional differential equations with noncommensurate orders

Type

Paper in proceedings (conference paper)

Original Abstract

The paper deals with a semi-analytical approach based on Taylors theorem which is convenient for finding exact or approximate solution to the initial value problem for fractional differential equations of noncommensurate orders.

English abstract

The paper deals with a semi-analytical approach based on Taylors theorem which is convenient for finding exact or approximate solution to the initial value problem for fractional differential equations of noncommensurate orders.

Keywords

Differential transform; fractional differential equations; noncommensurate orders

Key words in English

Differential transform; fractional differential equations; noncommensurate orders

Authors

REBENDA, J.; ŠMARDA, Z.

RIV year

2020

Released

25.07.2019

ISBN

9780735418547

Book

International Conference of Numerical Analysis and Applied Mathematics, ICNAAM 2018.

ISBN

0094-243X

Periodical

AIP conference proceedings

Volume

2116

Number

310008

State

United States of America

Pages from

1

Pages to

4

Pages count

4

URL

BibTex

@inproceedings{BUT157984,
  author="Josef {Rebenda} and Zdeněk {Šmarda}",
  title="Application of differential transform to  two-term fractional  differential equations with noncommensurate orders",
  booktitle="International  Conference of Numerical Analysis and Applied Mathematics, ICNAAM 2018.",
  year="2019",
  journal="AIP conference proceedings",
  volume="2116",
  number="310008",
  pages="1--4",
  doi="10.1063/1.5114315",
  isbn="9780735418547",
  issn="0094-243X",
  url="https://aip.scitation.org/doi/abs/10.1063/1.5114315"
}