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    <title><![CDATA[A Generalized Algorithm for the Gravitational Potential of a Homogeneous Cuboid]]></title>
    <link>https://thescipub/abstract/pisp.2025.7.17</link>
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        <![CDATA[<p>Physics International, Published online: 28 November 2025; <a href="https://thescipub.com/abstract/pisp.2025.7.17">doi:10.3844/pisp.2025.7.17</a></p>This paper presents a mathematical formulation for computing the gravitational potential of a cuboid (or right rectangular prism) with uniform density. The resulting analytical expressions are valid i...]]></content:encoded>
    <dc:title><![CDATA[A Generalized Algorithm for the Gravitational Potential of a Homogeneous Cuboid]]></dc:title><dc:creator>Thunendran   Periyandy</dc:creator><dc:creator>Thunendran   Periyandy</dc:creator><dc:creator>Michael   Bevis</dc:creator><dc:identifier>doi:10.3844/pisp.2025.7.17</dc:identifier>
    <dc:source>Physics International, Published online: 2025-11-28; | doi:10.3844/pisp.2025.7.17</dc:source>
    <dc:date>2025-11-28</dc:date>
    <prism:publicationName>Science Publications</prism:publicationName>
    <prism:doi>10.3844/pisp.2025.7.17</prism:doi>
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    </item><item rdf:about="https://thescipub/abstract/pisp.2025.1.6">
    <title><![CDATA[ Gravity. Origin and Quantum Evolution of the Cosmos]]></title>
    <link>https://thescipub/abstract/pisp.2025.1.6</link>
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        <![CDATA[<p>Physics International, Published online: 15 September 2025; <a href="https://thescipub.com/abstract/pisp.2025.1.6">doi:10.3844/pisp.2025.1.6</a></p>The most widely accepted hypothesis regarding the birth and evolution of the Cosmos is the Big Bang theory, which states that, before the beginning, all the current mass energy of the Cosmos was alrea...]]></content:encoded>
    <dc:title><![CDATA[ Gravity. Origin and Quantum Evolution of the Cosmos]]></dc:title><dc:creator>Francisco Pavía Alemany</dc:creator><dc:creator>Francisco Pavía Alemany</dc:creator><dc:creator>Marcelino Alvarez Villarroya</dc:creator><dc:identifier>doi:10.3844/pisp.2025.1.6</dc:identifier>
    <dc:source>Physics International, Published online: 2025-09-15; | doi:10.3844/pisp.2025.1.6</dc:source>
    <dc:date>2025-09-15</dc:date>
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    <prism:doi>10.3844/pisp.2025.1.6</prism:doi>
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    </item><item rdf:about="https://thescipub/abstract/pisp.2024.7.9">
    <title><![CDATA[Shift of Zeeman Components of Ionic Spectral Lines Caused by the Angular Doppler Effect]]></title>
    <link>https://thescipub/abstract/pisp.2024.7.9</link>
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        <![CDATA[<p>Physics International, Published online: 16 June 2025; <a href="https://thescipub.com/abstract/pisp.2024.7.9">doi:10.3844/pisp.2024.7.9</a></p>The angular Doppler effect was introduced by Garetz. While the usual Doppler effect is caused by the translational motion of the emitter, the angular Doppler effect is caused by the rotational motion ...]]></content:encoded>
    <dc:title><![CDATA[Shift of Zeeman Components of Ionic Spectral Lines Caused by the Angular Doppler Effect]]></dc:title><dc:creator>Eugene  Oks</dc:creator><dc:identifier>doi:10.3844/pisp.2024.7.9</dc:identifier>
    <dc:source>Physics International, Published online: 2025-06-16; | doi:10.3844/pisp.2024.7.9</dc:source>
    <dc:date>2025-06-16</dc:date>
    <prism:publicationName>Science Publications</prism:publicationName>
    <prism:doi>10.3844/pisp.2024.7.9</prism:doi>
    <prism:url>https://thescipub/abstract/pisp.2024.7.9</prism:url>
    </item><item rdf:about="https://thescipub/abstract/pisp.2024.1.6">
    <title><![CDATA[Energy Transformation and the Emergence of Space-Time: A Classical-Quantum Unified Framework]]></title>
    <link>https://thescipub/abstract/pisp.2024.1.6</link>
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        <![CDATA[<p>Physics International, Published online: 29 August 2024; <a href="https://thescipub.com/abstract/pisp.2024.1.6">doi:10.3844/pisp.2024.1.6</a></p>The complex dynamics of energy transformation is the thrust area of this research study. The idea that the universe&#039;s creation is driven by constructive resonant energy transformation offers a co...]]></content:encoded>
    <dc:title><![CDATA[Energy Transformation and the Emergence of Space-Time: A Classical-Quantum Unified Framework]]></dc:title><dc:creator>Sanjay  Bhushan</dc:creator><dc:identifier>doi:10.3844/pisp.2024.1.6</dc:identifier>
    <dc:source>Physics International, Published online: 2024-08-29; | doi:10.3844/pisp.2024.1.6</dc:source>
    <dc:date>2024-08-29</dc:date>
    <prism:publicationName>Science Publications</prism:publicationName>
    <prism:doi>10.3844/pisp.2024.1.6</prism:doi>
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    </item><item rdf:about="https://thescipub/abstract/pisp.2023.6.9">
    <title><![CDATA[Advantage of Classical Approximate Analytical Methods for Studying Rydberg States Over the Quantum Counterparts]]></title>
    <link>https://thescipub/abstract/pisp.2023.6.9</link>
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        <![CDATA[<p>Physics International, Published online: 2 July 2024; <a href="https://thescipub.com/abstract/pisp.2023.6.9">doi:10.3844/pisp.2023.6.9</a></p>In studies of atomic and molecular systems, approximate analytical methods play a significant role. This is because they can be used for benchmarking the results of numerical methods. Besides they off...]]></content:encoded>
    <dc:title><![CDATA[Advantage of Classical Approximate Analytical Methods for Studying Rydberg States Over the Quantum Counterparts]]></dc:title><dc:creator>Eugene  Oks</dc:creator><dc:identifier>doi:10.3844/pisp.2023.6.9</dc:identifier>
    <dc:source>Physics International, Published online: 2024-07-02; | doi:10.3844/pisp.2023.6.9</dc:source>
    <dc:date>2024-07-02</dc:date>
    <prism:publicationName>Science Publications</prism:publicationName>
    <prism:doi>10.3844/pisp.2023.6.9</prism:doi>
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