{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2025,5,14]],"date-time":"2025-05-14T02:40:30Z","timestamp":1747190430927,"version":"3.40.5"},"reference-count":23,"publisher":"Wiley","license":[{"start":{"date-parts":[[2021,5,26]],"date-time":"2021-05-26T00:00:00Z","timestamp":1621987200000},"content-version":"unspecified","delay-in-days":0,"URL":"https:\/\/creativecommons.org\/licenses\/by\/4.0\/"}],"content-domain":{"domain":[],"crossmark-restriction":false},"short-container-title":["Applied Computational Intelligence and Soft Computing"],"published-print":{"date-parts":[[2021,5,26]]},"abstract":"<jats:p>In this paper, the generalized concept of conformable fractional derivatives of order <jats:inline-formula>\n                     <a:math xmlns:a=\"http:\/\/www.w3.org\/1998\/Math\/MathML\" id=\"M1\">\n                        <a:mi>q<\/a:mi>\n                        <a:mo>\u2208<\/a:mo>\n                        <a:mfenced open=\"(\" close=\"]\" separators=\"|\">\n                           <a:mrow>\n                              <a:mi>n<\/a:mi>\n                              <a:mo>,<\/a:mo>\n                              <a:mi>n<\/a:mi>\n                              <a:mo>+<\/a:mo>\n                              <a:mn>1<\/a:mn>\n                           <\/a:mrow>\n                        <\/a:mfenced>\n                     <\/a:math>\n                  <\/jats:inline-formula> for fuzzy functions is introduced. We presented the definition and proved properties and theorems of these derivatives. The fuzzy conformable fractional differential equations and the properties of the fuzzy solution are investigated, developed, and proved. Some examples are provided for both the new solutions.<\/jats:p>","DOI":"10.1155\/2021\/5571818","type":"journal-article","created":{"date-parts":[[2021,5,28]],"date-time":"2021-05-28T00:03:29Z","timestamp":1622160209000},"page":"1-8","source":"Crossref","is-referenced-by-count":0,"title":["Solving Higher-Order Fractional Differential Equations by the Fuzzy Generalized Conformable Derivatives"],"prefix":"10.1155","volume":"2021","author":[{"ORCID":"https:\/\/orcid.org\/0000-0003-3603-9268","authenticated-orcid":true,"given":"Atimad","family":"Harir","sequence":"first","affiliation":[{"name":"Laboratory of Applied Mathematics and Scientific Computing, Sultan Moulay Slimane University, P.O. Box 523, Beni Mellal 23000, Morocco"}]},{"given":"Said","family":"Melliani","sequence":"additional","affiliation":[{"name":"Laboratory of Applied Mathematics and Scientific Computing, Sultan Moulay Slimane University, P.O. Box 523, Beni Mellal 23000, Morocco"}]},{"given":"Lalla Saadia","family":"Chadli","sequence":"additional","affiliation":[{"name":"Laboratory of Applied Mathematics and Scientific Computing, Sultan Moulay Slimane University, P.O. Box 523, Beni Mellal 23000, Morocco"}]}],"member":"311","reference":[{"key":"1","doi-asserted-by":"crossref","DOI":"10.1142\/3779","volume-title":"Applications of Fractional Calculus in Physics","author":"R. Hilfer","year":"2000"},{"volume-title":"Theory and Applications of Fractional Differential Equations. North-holland mathematics studies","year":"2006","author":"A. 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