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    <title><![CDATA[Heat Transfer and Effectiveness Analysis of a Cross-Flow Heat Exchanger for Potential Energy Recovery Applications in Hot-Humid Climate]]></title>
    <link>https://thescipub/abstract/erjsp.2015.7.14</link>
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        <![CDATA[<p>Energy Research Journal, Published online: 15 May 2015; <a href="https://thescipub.com/abstract/erjsp.2015.7.14">doi:10.3844/erjsp.2015.7.14</a></p>This paper presents heat transfer and effectiveness analysis based on a physical model of a cross-flow heat exchanger. Using the model, the transferred heat and effectiveness (ε) in terms of temperat...]]></content:encoded>
    <dc:title><![CDATA[Heat Transfer and Effectiveness Analysis of a Cross-Flow Heat Exchanger for Potential Energy Recovery Applications in Hot-Humid Climate]]></dc:title><dc:creator>A.R.S.  Masitah</dc:creator><dc:creator>Mardiana I Ahmad</dc:creator><dc:creator>Y.M.  Yatim</dc:creator><dc:identifier>doi:10.3844/erjsp.2015.7.14</dc:identifier>
    <dc:source>Energy Research Journal, Published online: 2015-05-15; | doi:10.3844/erjsp.2015.7.14</dc:source>
    <dc:date>2015-05-15</dc:date>
    <prism:publicationName>Science Publications</prism:publicationName>
    <prism:doi>10.3844/erjsp.2015.7.14</prism:doi>
    <prism:url>https://thescipub/abstract/erjsp.2015.7.14</prism:url>
    </item><item rdf:about="https://thescipub/abstract/erjsp.2010.26.31">
    <title><![CDATA[Bioethanol Production from Rice Straw]]></title>
    <link>https://thescipub/abstract/erjsp.2010.26.31</link>
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        <![CDATA[<p>Energy Research Journal, Published online: 30 June 2010; <a href="https://thescipub.com/abstract/erjsp.2010.26.31">doi:10.3844/erjsp.2010.26.31</a></p>Problem statement: Rice straw has been treated with different chemical (acid, alkali) and physical (subcritical water, ultrasound) methods to convert lignocellulose material to sugar. In addition enzy...]]></content:encoded>
    <dc:title><![CDATA[Bioethanol Production from Rice Straw]]></dc:title><dc:creator>Nutawan  Yoswathana</dc:creator><dc:creator>Phattayawadee  Phuriphipat</dc:creator><dc:creator>Pattranit  Treyawutthiwat</dc:creator><dc:creator>Mohammad Naghi Eshtiaghi</dc:creator><dc:identifier>doi:10.3844/erjsp.2010.26.31</dc:identifier>
    <dc:source>Energy Research Journal, Published online: 2010-06-30; | doi:10.3844/erjsp.2010.26.31</dc:source>
    <dc:date>2010-06-30</dc:date>
    <prism:publicationName>Science Publications</prism:publicationName>
    <prism:doi>10.3844/erjsp.2010.26.31</prism:doi>
    <prism:url>https://thescipub/abstract/erjsp.2010.26.31</prism:url>
    </item><item rdf:about="https://thescipub/abstract/erjsp.2011.51.56">
    <title><![CDATA[An Automatic Incubator]]></title>
    <link>https://thescipub/abstract/erjsp.2011.51.56</link>
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        <![CDATA[<p>Energy Research Journal, Published online: 29 May 2012; <a href="https://thescipub.com/abstract/erjsp.2011.51.56">doi:10.3844/erjsp.2011.51.56</a></p>The designing of an automatic incubator consists of three main parts. The first part is a mathematical model of an incubator. Thermo-physical properties of selected materials were substituted to inves...]]></content:encoded>
    <dc:title><![CDATA[An Automatic Incubator]]></dc:title><dc:creator>Siriluk  Sansomboonsuk</dc:creator><dc:creator>Chagorn  Phonhan</dc:creator><dc:creator>Girati  Phonhan</dc:creator><dc:identifier>doi:10.3844/erjsp.2011.51.56</dc:identifier>
    <dc:source>Energy Research Journal, Published online: 2012-05-29; | doi:10.3844/erjsp.2011.51.56</dc:source>
    <dc:date>2012-05-29</dc:date>
    <prism:publicationName>Science Publications</prism:publicationName>
    <prism:doi>10.3844/erjsp.2011.51.56</prism:doi>
    <prism:url>https://thescipub/abstract/erjsp.2011.51.56</prism:url>
    </item><item rdf:about="https://thescipub/abstract/erjsp.2010.82.86">
    <title><![CDATA[Feasibility of Using TIG Welding in Dissimilar Metals between Steel/Aluminum Alloy]]></title>
    <link>https://thescipub/abstract/erjsp.2010.82.86</link>
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        <![CDATA[<p>Energy Research Journal, Published online: 31 October 2010; <a href="https://thescipub.com/abstract/erjsp.2010.82.86">doi:10.3844/erjsp.2010.82.86</a></p>Problem statement: Currently, in order to suppress intermetallic reaction layer formation during dissimilar metals welding between steel/aluminum alloy, only laser beam welding as self-brazing techniq...]]></content:encoded>
    <dc:title><![CDATA[Feasibility of Using TIG Welding in Dissimilar Metals between Steel/Aluminum Alloy]]></dc:title><dc:creator>Rattana  Borrisutthekul</dc:creator><dc:creator>Pusit  Mitsomwang</dc:creator><dc:creator>Sirirat  Rattanachan</dc:creator><dc:creator>Yoshiharu  Mutoh</dc:creator><dc:identifier>doi:10.3844/erjsp.2010.82.86</dc:identifier>
    <dc:source>Energy Research Journal, Published online: 2010-10-31; | doi:10.3844/erjsp.2010.82.86</dc:source>
    <dc:date>2010-10-31</dc:date>
    <prism:publicationName>Science Publications</prism:publicationName>
    <prism:doi>10.3844/erjsp.2010.82.86</prism:doi>
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    </item><item rdf:about="https://thescipub/abstract/erjsp.2012.12.19">
    <title><![CDATA[Global High-Power Rectenna Site Selection]]></title>
    <link>https://thescipub/abstract/erjsp.2012.12.19</link>
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        <![CDATA[<p>Energy Research Journal, Published online: 28 August 2012; <a href="https://thescipub.com/abstract/erjsp.2012.12.19">doi:10.3844/erjsp.2012.12.19</a></p>The reasons for implementing a high power density (>1 kW/m2) terrestrial rectenna for a space power plant system are described. The physical limitations on rectenna implementation are outlined and for...]]></content:encoded>
    <dc:title><![CDATA[Global High-Power Rectenna Site Selection]]></dc:title><dc:creator>Oleg  Nizhnik</dc:creator><dc:identifier>doi:10.3844/erjsp.2012.12.19</dc:identifier>
    <dc:source>Energy Research Journal, Published online: 2012-08-28; | doi:10.3844/erjsp.2012.12.19</dc:source>
    <dc:date>2012-08-28</dc:date>
    <prism:publicationName>Science Publications</prism:publicationName>
    <prism:doi>10.3844/erjsp.2012.12.19</prism:doi>
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