Delaying petal blackening of cut sacred lotus flowers by packaging conditions during storage

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Author listBuanong M., Wongs-Aree C., Meir S., Philosoph-Hadas S.

PublisherMDPI

Publication year2019

JournalEntropy (1099-4300)

Volume number1263

Issue number4

Start page367

End page374

Number of pages8

ISSN1099-4300

eISSN1099-4300

URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85065583785&doi=10.3390%2fe21040335&partnerID=40&md5=61a52891ad3141d8c9ce5aba1a671fad

LanguagesEnglish-Great Britain (EN-GB)


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Abstract

In the present article, we related the analytical solution of the fractional-order dispersive partial differential equations, using the Laplace-Adomian decomposition method. The Caputo operator is used to define the derivative of fractional-order. Laplace-Adomian decomposition method solutions for both fractional and integer orders are obtained in series form, showing higher convergence of the proposed method. Illustrative examples are considered to confirm the validity of the present method. The fractional order solutions that are convergent to integer order solutions are also investigated. ฉ 2019 by the authors.


Keywords

Laplace-Adomian decomposition methodThird-order dispersive equations


Last updated on 2023-25-09 at 07:36