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dc.contributor.authorEndou, Noboru-
dc.date.accessioned2022-12-29T11:02:24Z-
dc.date.available2022-12-29T11:02:24Z-
dc.date.issued2022-
dc.identifier.citationFormalized Mathematics, Volume 30, Issue 1, Pages 31-52pl
dc.identifier.issn1426-2630-
dc.identifier.urihttp://hdl.handle.net/11320/14245-
dc.description.abstractThe goal of this article is to clarify the relationship between Riemann’s improper integrals and Lebesgue integrals. In previous articles [6], [7], we treated Riemann’s improper integrals [1], [11] and [4] on arbitrary intervals. Therefore, in this article, we will continue to clarify the relationship between improper integrals and Lebesgue integrals [8], using the Mizar [3], [2] formalism.pl
dc.language.isoenpl
dc.publisherDeGruyter Openpl
dc.rightsAttribution-ShareAlike 3.0 Unported (CC BY-SA 3.0)pl
dc.rights.urihttps://creativecommons.org/licenses/by-sa/3.0/pl
dc.subjectabsolutely integrablepl
dc.subjectimproper integralpl
dc.titleAbsolutely Integrable Functionspl
dc.typeArticlepl
dc.rights.holder© 2022 The Author(s)pl
dc.rights.holderCC BY-SA 3.0 licensepl
dc.identifier.doi10.2478/forma-2022-0004-
dc.description.AffiliationNoboru Endou - National Institute of Technology, Gifu College, 2236-2 Kamimakuwa, Motosu, Gifu, Japanpl
dc.description.referencesTom M. Apostol. Mathematical Analysis. Addison-Wesley, 1969.pl
dc.description.referencesGrzegorz Bancerek, Czesław Byliński, Adam Grabowski, Artur Korniłowicz, Roman Matuszewski, Adam Naumowicz, Karol Pąk, and Josef Urban. Mizar: State-of-the-art and beyond. In Manfred Kerber, Jacques Carette, Cezary Kaliszyk, Florian Rabe, and Volker Sorge, editors, Intelligent Computer Mathematics, volume 9150 of Lecture Notes in Computer Science, pages 261–279. Springer International Publishing, 2015. ISBN 978-3-319-20614-1. doi:10.1007/978-3-319-20615-8_17.pl
dc.description.referencesGrzegorz Bancerek, Czesław Byliński, Adam Grabowski, Artur Korniłowicz, Roman Matuszewski, Adam Naumowicz, and Karol Pąk. The role of the Mizar Mathematical Library for interactive proof development in Mizar. Journal of Automated Reasoning, 61(1):9–32, 2018. doi:10.1007/s10817-017-9440-6.pl
dc.description.referencesVladimir Igorevich Bogachev and Maria Aparecida Soares Ruas. Measure theory, volume 1. Springer, 2007.pl
dc.description.referencesNoboru Endou. Extended real-valued double sequence and its convergence. Formalized Mathematics, 23(3):253–277, 2015. doi:10.1515/forma-2015-0021.pl
dc.description.referencesNoboru Endou. Improper integral. Part I. Formalized Mathematics, 29(4):201–220, 2021. doi:10.2478/forma-2021-0019.pl
dc.description.referencesNoboru Endou. Improper integral. Part II. Formalized Mathematics, 29(4):279–294, 2021. doi:10.2478/forma-2021-0024.pl
dc.description.referencesNoboru Endou. Relationship between the Riemann and Lebesgue integrals. Formalized Mathematics, 29(4):185–199, 2021. doi:10.2478/forma-2021-0018.pl
dc.description.referencesNoboru Endou, Katsumi Wasaki, and Yasunari Shidama. Basic properties of extended real numbers. Formalized Mathematics, 9(3):491–494, 2001.pl
dc.description.referencesNoboru Endou, Yasunari Shidama, and Masahiko Yamazaki. Integrability and the integral of partial functions from R into R. Formalized Mathematics, 14(4):207–212, 2006. doi:10.2478/v10037-006-0023-ypl
dc.description.referencesGerald B. Folland. Real Analysis: Modern Techniques and Their Applications. Wiley, 2nd edition, 1999.pl
dc.identifier.eissn1898-9934-
dc.description.volume30pl
dc.description.issue1pl
dc.description.firstpage31pl
dc.description.lastpage52pl
dc.identifier.citation2Formalized Mathematicspl
dc.identifier.orcid0000-0002-5922-2332-
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