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    <name>Article</name>
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          <name>Title</name>
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              <text>Chemical Reaction Effects on Nano Carreau Liquid Flow Past a Cone and a Wedge with Cattaneo-Christov Heat Flux Model</text>
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          <name>Subject</name>
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              <text>Brownian motion; Carreau fluid; Cattaneo-Christov heat flux model; chemical reaction; convective condition; nanofluid</text>
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          <name>Description</name>
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              <text>Chemical reaction aspect is utilized for heat mass transfer analysis of nano non-Newtonian liquid flow past a cone and a wedge. Flow is steady, laminar and two dimensional created due to a cone and a wedge. The Carreau liquid and Cattaneo-Christov heat flux models are utilized. The magneto-nano Carreau liquid material occupies the porous space. The relevant PDEs are rendered into coupled non-linear ODEs via appropriate transformations before treated them numerically through Runge-Kutta and Newton's method. The computed results are plotted for employing the various values of physical constraints on the profiles of velocity, temperature and nanoparticle volume fraction. Moreover, vitiation of the friction factor, Nusselt number and Sherwood number against physical parameters are presented numerically. It is figured out that convective heating and Brownian motion effects are constructive for thermal boundary layer growth. Aspect of chemical reaction is significant to control the solute layer growth and mass transfer rate.  2017 Walter de Gruyter GmbH, Berlin/Boston.</text>
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          <name>Creator</name>
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            <elementText elementTextId="135582">
              <text>Kumar R.V.M.S.S.K.; Raju C.S.K.; Mahanthesh B.; Gireesha B.J.; Varma S.V.K.</text>
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              <text>International Journal of Chemical Reactor Engineering, Vol-16, No. 4</text>
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          <name>Publisher</name>
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              <text>Walter de Gruyter GmbH</text>
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          <name>Date</name>
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              <text>2018-01-01</text>
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              <text>&lt;a href="https://doi.org/10.1515/ijcre-2017-0108" target="_blank" rel="noreferrer noopener"&gt;https://doi.org/10.1515/ijcre-2017-0108&lt;/a&gt;
&lt;br /&gt;&lt;br /&gt;&lt;a href="https://www.scopus.com/inward/record.uri?eid=2-s2.0-85037714971&amp;amp;doi=10.1515%2Fijcre-2017-0108&amp;amp;partnerID=40&amp;amp;md5=7094713728e5eb1187bd74b9055c0359" target="_blank" rel="noreferrer noopener"&gt;https://www.scopus.com/inward/record.uri?eid=2-s2.0-85037714971&amp;amp;doi=10.1515%2fijcre-2017-0108&amp;amp;partnerID=40&amp;amp;md5=7094713728e5eb1187bd74b9055c0359&lt;/a&gt;</text>
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              <text>Restricted Access</text>
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              <text>ISSN: 15426580</text>
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          <name>Format</name>
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              <text>Online</text>
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              <text>Kumar R.V.M.S.S.K., Sri Venkateswara University, Tirupati, Andhra Pradesh, India; Raju C.S.K., Department of Mathematics, GITAM School of Technology, Bengaluru, India; Mahanthesh B., Christ University, Bangalore, 560029, India, Kuvempu University, Shankaraghatta, Karnataka, 577 451, India; Gireesha B.J., Kuvempu University, Shankaraghatta, Karnataka, 577 451, India; Varma S.V.K., Sri Venkateswara University, Tirupati, Andhra Pradesh, India</text>
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