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    <name>Article</name>
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          <name>Title</name>
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              <text>RayleighBard convection in a non-Newtonian dielectric fluid with MaxwellCattaneo law under the effect of internal heat generation/consumption</text>
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              <text>Casson fluid; Dielectric fluid; Heat source/sink; MaxwellCattaneo heat flux; Normal mode technique; RayleighBard convection</text>
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              <text>Purpose: The study of instability due to the effects of MaxwellCattaneo law and internal heat source/sink on Casson dielectric fluid horizontal layer is an open question. Therefore, in this paper, the impact of internal heat generation/absorption on RayleighBard convection in a non-Newtonian dielectric fluid with MaxwellCattaneo heat flux is investigated. The horizontal layer of the fluid is cooled from the upper boundary, while an isothermal boundary condition is utilized at the lower boundary. Design/methodology/approach: The Casson fluid model is utilized to characterize the non-Newtonian fluid behavior. The horizontal layer of the fluid is cooled from the upper boundary, while an isothermal boundary condition is utilized at the lower boundary. The governing equations are non-dimensionalized using appropriate dimensionless variables and the subsequent equations are solved for the critical Rayleigh number using the normal mode technique (NMT). Findings: Results are presented for two different cases namely dielectric Newtonian fluid (DNF) and dielectric non-Newtonian Casson fluid (DNCF). The effects of Cattaneo number, Casson fluid parameter, heat source/sink parameter on critical Rayleigh number and wavenumber are analyzed in detail. It is found that the value Rayleigh number for non-Newtonian fluid is higher than that of Newtonian fluid; also the heat source aspect decreases the magnitude of the Rayleigh number. Originality/value: The effect of MaxwellCattaneo heat flux and internal heat source/sink on Rayleigh-Bard convection in Casson dielectric fluid is investigated for the first time.  2020, Emerald Publishing Limited.</text>
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          <name>Creator</name>
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              <text>Mahanthesh B.; Nagouda S.S.; R K.</text>
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              <text>Multidiscipline Modeling in Materials and Structures, Vol-16, No. 5, pp. 1175-1188.</text>
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              <text>Emerald Group Holdings Ltd.</text>
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          <name>Date</name>
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              <text>2020-01-01</text>
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              <text>&lt;a href="https://doi.org/10.1108/MMMS-09-2019-0174" target="_blank" rel="noreferrer noopener"&gt;https://doi.org/10.1108/MMMS-09-2019-0174&lt;/a&gt;
&lt;br /&gt;&lt;br /&gt;&lt;a href="https://www.scopus.com/inward/record.uri?eid=2-s2.0-85083505628&amp;amp;doi=10.1108%2FMMMS-09-2019-0174&amp;amp;partnerID=40&amp;amp;md5=b1f77b6f971e453cbfa66c74664633ed" target="_blank" rel="noreferrer noopener"&gt;https://www.scopus.com/inward/record.uri?eid=2-s2.0-85083505628&amp;amp;doi=10.1108%2fMMMS-09-2019-0174&amp;amp;partnerID=40&amp;amp;md5=b1f77b6f971e453cbfa66c74664633ed&lt;/a&gt;</text>
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              <text>ISSN: 15736105</text>
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              <text>Online</text>
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              <text>English</text>
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              <text>Mahanthesh B., Department of Mathematics, CHRIST (Deemed to be University), Bangalore, India; Nagouda S.S., Department of Mathematics, CHRIST (Deemed to be University), Bangalore, India; R K., Department of Mathematics, CHRIST (Deemed to be University), Bangalore, India</text>
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