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	<title>Knowledge Commons | Afshin Rashid | Activity</title>
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	<description>Activity feed for Afshin Rashid.</description>
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				<title>Afshin Rashid&#039;s profile was updated</title>
				<link>https://hcommons.org/activity/p/1934665/</link>
				<pubDate>Mon, 17 Nov 2025 16:34:14 -0500</pubDate>

				
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				<title>Afshin Rashid&#039;s profile was updated</title>
				<link>https://hcommons.org/activity/p/1905487/</link>
				<pubDate>Fri, 22 Nov 2024 07:12:41 -0500</pubDate>

				
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				<title>Afshin Rashid deposited Nanoelectronics Technology has Dedicated some Very Exciting Materials to Improve the Sensing Phenomenon in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1899370/</link>
				<pubDate>Sat, 21 Sep 2024 03:00:48 -0400</pubDate>

									<content:encoded><![CDATA[<p>Nanoelectronics technology has dedicated some very exciting materials to improve the sensing phenomenon. The use of various nanomaterials, including nanoparticles, nanotubes, nanotubes, and nanowires, causes faster identification and reproducibility in a much better way. The unique properties of nanomaterials such as high electrical conductivity,&hellip;<span class="activity-read-more" id="activity-read-more-1899370"><a href="https://hcommons.org/activity/p/1899370/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Nanoelectronics Technology has Dedicated some Very Exciting Materials to Improve the Sensing Phenomenon in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1899369/</link>
				<pubDate>Sat, 21 Sep 2024 03:00:40 -0400</pubDate>

									<content:encoded><![CDATA[<p>Nanoelectronics technology has dedicated some very exciting materials to improve the sensing phenomenon. The use of various nanomaterials, including nanoparticles, nanotubes, nanotubes, and nanowires, causes faster identification and reproducibility in a much better way. The unique properties of nanomaterials such as high electrical conductivity,&hellip;<span class="activity-read-more" id="activity-read-more-1899369"><a href="https://hcommons.org/activity/p/1899369/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Nanoelectronics Technology has Dedicated some Very Exciting Materials to Improve the Sensing Phenomenon in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1899368/</link>
				<pubDate>Sat, 21 Sep 2024 03:00:15 -0400</pubDate>

									<content:encoded><![CDATA[<p>Nanoelectronics technology has dedicated some very exciting materials to improve the sensing phenomenon. The use of various nanomaterials, including nanoparticles, nanotubes, nanotubes, and nanowires, causes faster identification and reproducibility in a much better way. The unique properties of nanomaterials such as high electrical conductivity,&hellip;<span class="activity-read-more" id="activity-read-more-1899368"><a href="https://hcommons.org/activity/p/1899368/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Nanoelectronics Technology has Dedicated some Very Exciting Materials to Improve the Sensing Phenomenon</title>
				<link>https://hcommons.org/activity/p/1899283/</link>
				<pubDate>Fri, 20 Sep 2024 05:34:33 -0400</pubDate>

									<content:encoded><![CDATA[<p>Nanoelectronics technology has dedicated some very exciting materials to improve the sensing phenomenon. The use of various nanomaterials, including nanoparticles, nanotubes, nanotubes, and nanowires, causes faster identification and reproducibility in a much better way. The unique properties of nanomaterials such as high electrical conductivity,&hellip;<span class="activity-read-more" id="activity-read-more-1899283"><a href="https://hcommons.org/activity/p/1899283/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Examining the Band Gap Structure of Nano-Electronic Devices, in Addition to Introducing a Method for Researching the Performance of One-Dimensional Systems in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1899192/</link>
				<pubDate>Thu, 19 Sep 2024 03:00:36 -0400</pubDate>

									<content:encoded><![CDATA[<p>based on organic materials can be mechanically exible to a large extent because of the loose intermolecular bonds in the nano-electrons created from them. Unlike these organic materials, minerals such as silicon, germanium, and gallium arsenide can be used in the structure of electronic devices only in crystalline states, and in this case,&hellip;<span class="activity-read-more" id="activity-read-more-1899192"><a href="https://hcommons.org/activity/p/1899192/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Examining the Band Gap Structure of Nano-Electronic Devices, in Addition to Introducing a Method for Researching the Performance of One-Dimensional Systems in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1899191/</link>
				<pubDate>Thu, 19 Sep 2024 03:00:27 -0400</pubDate>

									<content:encoded><![CDATA[<p>based on organic materials can be mechanically exible to a large extent because of the loose intermolecular bonds in the nano-electrons created from them. Unlike these organic materials, minerals such as silicon, germanium, and gallium arsenide can be used in the structure of electronic devices only in crystalline states, and in this case,&hellip;<span class="activity-read-more" id="activity-read-more-1899191"><a href="https://hcommons.org/activity/p/1899191/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Examining the Band Gap Structure of Nano-Electronic Devices, in Addition to Introducing a Method for Researching the Performance of One-Dimensional Systems in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1899190/</link>
				<pubDate>Thu, 19 Sep 2024 03:00:02 -0400</pubDate>

									<content:encoded><![CDATA[<p>based on organic materials can be mechanically exible to a large extent because of the loose intermolecular bonds in the nano-electrons created from them. Unlike these organic materials, minerals such as silicon, germanium, and gallium arsenide can be used in the structure of electronic devices only in crystalline states, and in this case,&hellip;<span class="activity-read-more" id="activity-read-more-1899190"><a href="https://hcommons.org/activity/p/1899190/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Examining the Band Gap Structure of Nano-Electronic Devices, in Addition to Introducing a Method for Researching the Performance of One-Dimensional Systems</title>
				<link>https://hcommons.org/activity/p/1899099/</link>
				<pubDate>Wed, 18 Sep 2024 05:36:31 -0400</pubDate>

									<content:encoded><![CDATA[<p>based on organic materials can be mechanically exible to a large extent because of the loose intermolecular bonds in the nano-electrons created from them. Unlike these organic materials, minerals such as silicon, germanium, and gallium arsenide can be used in the structure of electronic devices only in crystalline states, and in this case,&hellip;<span class="activity-read-more" id="activity-read-more-1899099"><a href="https://hcommons.org/activity/p/1899099/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Signal Measurement Electrochemical Methods are very Suitable for Detecting Direct DNA Oxidation because Electrochemical Reactions Directly Generate Electronic Signals in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1899096/</link>
				<pubDate>Wed, 18 Sep 2024 03:01:45 -0400</pubDate>

									<content:encoded><![CDATA[<p>Signal measurement Electrochemical methods are very suitable for detecting direct DNA oxidation because electrochemical reactions directly generate electronic signals and therefore do not require expensive converters. In addition, in this process, because the order of the immobilized game can be limited to onlya series of electrode substrates, the&hellip;<span class="activity-read-more" id="activity-read-more-1899096"><a href="https://hcommons.org/activity/p/1899096/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Signal Measurement Electrochemical Methods are very Suitable for Detecting Direct DNA Oxidation because Electrochemical Reactions Directly Generate Electronic Signals in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1899095/</link>
				<pubDate>Wed, 18 Sep 2024 03:01:37 -0400</pubDate>

									<content:encoded><![CDATA[<p>Signal measurement Electrochemical methods are very suitable for detecting direct DNA oxidation because electrochemical reactions directly generate electronic signals and therefore do not require expensive converters. In addition, in this process, because the order of the immobilized game can be limited to onlya series of electrode substrates, the&hellip;<span class="activity-read-more" id="activity-read-more-1899095"><a href="https://hcommons.org/activity/p/1899095/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">cf951b63b31c71bba382b0b6c3cba4b2</guid>
				<title>Afshin Rashid deposited Signal Measurement Electrochemical Methods are very Suitable for Detecting Direct DNA Oxidation because Electrochemical Reactions Directly Generate Electronic Signals in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1899094/</link>
				<pubDate>Wed, 18 Sep 2024 03:01:13 -0400</pubDate>

									<content:encoded><![CDATA[<p>Signal measurement Electrochemical methods are very suitable for detecting direct DNA oxidation because electrochemical reactions directly generate electronic signals and therefore do not require expensive converters. In addition, in this process, because the order of the immobilized game can be limited to onlya series of electrode substrates, the&hellip;<span class="activity-read-more" id="activity-read-more-1899094"><a href="https://hcommons.org/activity/p/1899094/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Signal Measurement Electrochemical Methods&#38;nbsp;&#60;span&#62;are very Suitable for Detecting Direct DNA O&#60;/span&#62;&#60;span&#62;xidation because Electrochemical Reactions D&#60;/span&#62;&#60;span&#62;irectly Generate Electronic Signals&#60;/span&#62;</title>
				<link>https://hcommons.org/activity/p/1899053/</link>
				<pubDate>Tue, 17 Sep 2024 16:01:24 -0400</pubDate>

									<content:encoded><![CDATA[<p>Signal measurement Electrochemical methods are very suitable for detecting direct DNA oxidation because electrochemical reactions directly generate electronic signals and therefore do not require expensive converters. In addition, in this process, because the order of the immobilized game can be limited to onlya series of electrode substrates, the&hellip;<span class="activity-read-more" id="activity-read-more-1899053"><a href="https://hcommons.org/activity/p/1899053/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Nanoantennas distribution of alternating current (with a wavelength that is ۱۰۰ times smaller than the wavelength of free space) in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895369/</link>
				<pubDate>Sat, 03 Aug 2024 03:00:36 -0400</pubDate>

									<content:encoded><![CDATA[<p>The use of graphene helps to solve this problem to a great extent. The speed of propagation of waves in CNTs and GNRs can be 100 times lower than its speed in vacuum, and this is related to the physical structure, temperature and energy. Based on this, the resonance frequency of graphene-based nano-antennas can be two orders of magnitude lower&hellip;<span class="activity-read-more" id="activity-read-more-1895369"><a href="https://hcommons.org/activity/p/1895369/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Nanoantennas distribution of alternating current (with a wavelength that is ۱۰۰ times smaller than the wavelength of free space) in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895368/</link>
				<pubDate>Sat, 03 Aug 2024 03:00:28 -0400</pubDate>

									<content:encoded><![CDATA[<p>The use of graphene helps to solve this problem to a great extent. The speed of propagation of waves in CNTs and GNRs can be 100 times lower than its speed in vacuum, and this is related to the physical structure, temperature and energy. Based on this, the resonance frequency of graphene-based nano-antennas can be two orders of magnitude lower&hellip;<span class="activity-read-more" id="activity-read-more-1895368"><a href="https://hcommons.org/activity/p/1895368/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">da42908371b4b9828f62dcbbe76bc81a</guid>
				<title>Afshin Rashid deposited Nanoantennas distribution of alternating current (with a wavelength that is ۱۰۰ times smaller than the wavelength of free space) in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1895367/</link>
				<pubDate>Sat, 03 Aug 2024 03:00:03 -0400</pubDate>

									<content:encoded><![CDATA[<p>The use of graphene helps to solve this problem to a great extent. The speed of propagation of waves in CNTs and GNRs can be 100 times lower than its speed in vacuum, and this is related to the physical structure, temperature and energy. Based on this, the resonance frequency of graphene-based nano-antennas can be two orders of magnitude lower&hellip;<span class="activity-read-more" id="activity-read-more-1895367"><a href="https://hcommons.org/activity/p/1895367/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">2192a94e7b7bdbd6cbaa7b9e82c3ff0a</guid>
				<title>Afshin Rashid deposited Nanoantennas distribution of alternating current (with a wavelength that is ۱۰۰ times smaller than the wavelength of free space)</title>
				<link>https://hcommons.org/activity/p/1895330/</link>
				<pubDate>Fri, 02 Aug 2024 06:23:25 -0400</pubDate>

									<content:encoded><![CDATA[<p>The use of graphene helps to solve this problem to a great extent. The speed of propagation of waves in CNTs and GNRs can be 100 times lower than its speed in vacuum, and this is related to the physical structure, temperature and energy. Based on this, the resonance frequency of graphene-based nano-antennas can be two orders of magnitude lower&hellip;<span class="activity-read-more" id="activity-read-more-1895330"><a href="https://hcommons.org/activity/p/1895330/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Review of: "Oligophenylene vanillin (silicon/germanium ) structured nanowires and cylinders for possible applications in electronic energy" in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895166/</link>
				<pubDate>Wed, 31 Jul 2024 03:11:27 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: Oligophenylene vanillin (silicon/germanium) structure nano wires and cylinders are used for possible applications in energy, electronics, optics and other fields. Oligophenylene vanillin nanowires (Si Silicon / Germanium Gi) , narrow structures whose diameter is only a few billionths of a meter but thousands or millions of times longer. They&hellip;<span class="activity-read-more" id="activity-read-more-1895166"><a href="https://hcommons.org/activity/p/1895166/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">4b16e6aea83b9352c063d2db40d3e5a2</guid>
				<title>Afshin Rashid deposited Review of: "Oligophenylene vanillin (silicon/germanium ) structured nanowires and cylinders for possible applications in electronic energy" in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895165/</link>
				<pubDate>Wed, 31 Jul 2024 03:11:20 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: Oligophenylene vanillin (silicon/germanium) structure nano wires and cylinders are used for possible applications in energy, electronics, optics and other fields. Oligophenylene vanillin nanowires (Si Silicon / Germanium Gi) , narrow structures whose diameter is only a few billionths of a meter but thousands or millions of times longer. They&hellip;<span class="activity-read-more" id="activity-read-more-1895165"><a href="https://hcommons.org/activity/p/1895165/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">7bd38824d55a4d50f48be7bfb2393a9f</guid>
				<title>Afshin Rashid deposited Review of: "Oligophenylene vanillin (silicon/germanium ) structured nanowires and cylinders for possible applications in electronic energy" in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1895164/</link>
				<pubDate>Wed, 31 Jul 2024 03:11:05 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: Oligophenylene vanillin (silicon/germanium) structure nano wires and cylinders are used for possible applications in energy, electronics, optics and other fields. Oligophenylene vanillin nanowires (Si Silicon / Germanium Gi) , narrow structures whose diameter is only a few billionths of a meter but thousands or millions of times longer. They&hellip;<span class="activity-read-more" id="activity-read-more-1895164"><a href="https://hcommons.org/activity/p/1895164/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Review of: "Propagation of Oligophenylene vanillin nanowires by focused ion beam (FIB) nanolithography method (below ۱۰۰ nm - ۱۰ nm range)" in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895163/</link>
				<pubDate>Wed, 31 Jul 2024 03:11:01 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: From the physical properties of Oligophenylene vanillin nanowires, we can mention their electrical, photoelectric and mechanical properties. Nanowires (SiNWs) have high mobility and surface-to-volume ratio, which makes them easy to control using a weak electric field. These one-dimensional nanostructures are created from nanowires with a&hellip;<span class="activity-read-more" id="activity-read-more-1895163"><a href="https://hcommons.org/activity/p/1895163/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">1df1ba463e69f308954e7b34c83323bb</guid>
				<title>Afshin Rashid deposited Review of: "Propagation of Oligophenylene vanillin nanowires by focused ion beam (FIB) nanolithography method (below ۱۰۰ nm - ۱۰ nm range)" in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895162/</link>
				<pubDate>Wed, 31 Jul 2024 03:10:54 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: From the physical properties of Oligophenylene vanillin nanowires, we can mention their electrical, photoelectric and mechanical properties. Nanowires (SiNWs) have high mobility and surface-to-volume ratio, which makes them easy to control using a weak electric field. These one-dimensional nanostructures are created from nanowires with a&hellip;<span class="activity-read-more" id="activity-read-more-1895162"><a href="https://hcommons.org/activity/p/1895162/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">a5e0523b7fa8f196b013aa272dce8700</guid>
				<title>Afshin Rashid deposited Review of: "Propagation of Oligophenylene vanillin nanowires by focused ion beam (FIB) nanolithography method (below ۱۰۰ nm - ۱۰ nm range)" in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1895161/</link>
				<pubDate>Wed, 31 Jul 2024 03:10:39 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: From the physical properties of Oligophenylene vanillin nanowires, we can mention their electrical, photoelectric and mechanical properties. Nanowires (SiNWs) have high mobility and surface-to-volume ratio, which makes them easy to control using a weak electric field. These one-dimensional nanostructures are created from nanowires with a&hellip;<span class="activity-read-more" id="activity-read-more-1895161"><a href="https://hcommons.org/activity/p/1895161/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Review of: "Nano wire immersion method (structure and function)" in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895160/</link>
				<pubDate>Wed, 31 Jul 2024 03:10:35 -0400</pubDate>

									<content:encoded><![CDATA[<p>Structural study with FESEM in the immersion method of single-stranded nanowires in all porosities and in alarge area of nanowire particles are formed. Changing the Sr / Fe ratio does not change the morphology of thenanowires. And spectroscopy of nanowires with a ratio of Sr / Fe states within the nano-particles inside(nanowires uniform) elements&hellip;<span class="activity-read-more" id="activity-read-more-1895160"><a href="https://hcommons.org/activity/p/1895160/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Afshin Rashid deposited Review of: "Nano wire immersion method (structure and function)" in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895159/</link>
				<pubDate>Wed, 31 Jul 2024 03:10:29 -0400</pubDate>

									<content:encoded><![CDATA[<p>Structural study with FESEM in the immersion method of single-stranded nanowires in all porosities and in alarge area of nanowire particles are formed. Changing the Sr / Fe ratio does not change the morphology of thenanowires. And spectroscopy of nanowires with a ratio of Sr / Fe states within the nano-particles inside(nanowires uniform) elements&hellip;<span class="activity-read-more" id="activity-read-more-1895159"><a href="https://hcommons.org/activity/p/1895159/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">0c25b3e20aab45d5fc2438fb31197166</guid>
				<title>Afshin Rashid deposited Review of: "Nano wire immersion method (structure and function)" in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1895158/</link>
				<pubDate>Wed, 31 Jul 2024 03:10:13 -0400</pubDate>

									<content:encoded><![CDATA[<p>Structural study with FESEM in the immersion method of single-stranded nanowires in all porosities and in alarge area of nanowire particles are formed. Changing the Sr / Fe ratio does not change the morphology of thenanowires. And spectroscopy of nanowires with a ratio of Sr / Fe states within the nano-particles inside(nanowires uniform) elements&hellip;<span class="activity-read-more" id="activity-read-more-1895158"><a href="https://hcommons.org/activity/p/1895158/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">7dcee75d2817838500f6725883afbbd4</guid>
				<title>Afshin Rashid deposited Review of: "High speed (doping) nMOS graphene transistor in p- and n-doping electronic circuits (positive and negative)" in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895157/</link>
				<pubDate>Wed, 31 Jul 2024 03:10:10 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: The term graphene nMOS transistor comes from the combination of the words graphene and nMOS transistor in transmission and resistance. In a nMOS graphene field effect transistor, the resistance between two electrodes can be transferred or controlled by a third electrode. In a multilayer graphene field effect nMOS transistor, the current&hellip;<span class="activity-read-more" id="activity-read-more-1895157"><a href="https://hcommons.org/activity/p/1895157/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">09a5b26632fa59bec4e7b0a5b9be4363</guid>
				<title>Afshin Rashid deposited Review of: "High speed (doping) nMOS graphene transistor in p- and n-doping electronic circuits (positive and negative)" in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895156/</link>
				<pubDate>Wed, 31 Jul 2024 03:10:03 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: The term graphene nMOS transistor comes from the combination of the words graphene and nMOS transistor in transmission and resistance. In a nMOS graphene field effect transistor, the resistance between two electrodes can be transferred or controlled by a third electrode. In a multilayer graphene field effect nMOS transistor, the current&hellip;<span class="activity-read-more" id="activity-read-more-1895156"><a href="https://hcommons.org/activity/p/1895156/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">5a9843a277674696f474bbc6ac6f2f9c</guid>
				<title>Afshin Rashid deposited Review of: "High speed (doping) nMOS graphene transistor in p- and n-doping electronic circuits (positive and negative)" in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1895155/</link>
				<pubDate>Wed, 31 Jul 2024 03:09:47 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: The term graphene nMOS transistor comes from the combination of the words graphene and nMOS transistor in transmission and resistance. In a nMOS graphene field effect transistor, the resistance between two electrodes can be transferred or controlled by a third electrode. In a multilayer graphene field effect nMOS transistor, the current&hellip;<span class="activity-read-more" id="activity-read-more-1895155"><a href="https://hcommons.org/activity/p/1895155/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">ea45673d1c2d445e090b5bc09b242f5b</guid>
				<title>Afshin Rashid deposited Review of: "(Field effect nano transistors) Nano transistor electronic quantity and ionization potential)" in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895154/</link>
				<pubDate>Wed, 31 Jul 2024 03:09:44 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: In the nano transistor structure, the electronic quantity that is more easily available is the ionization potential, and the ionization potential is greater in the size of the small grains of the nano structure (smaller particles), that is, as the size of the particles increases, their ionization potential decreases. Finds. An increase in&hellip;<span class="activity-read-more" id="activity-read-more-1895154"><a href="https://hcommons.org/activity/p/1895154/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">a552d40050e3cd4db7568f68c5a5bf81</guid>
				<title>Afshin Rashid deposited Review of: "(Field effect nano transistors) Nano transistor electronic quantity and ionization potential)" in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895153/</link>
				<pubDate>Wed, 31 Jul 2024 03:09:37 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: In the nano transistor structure, the electronic quantity that is more easily available is the ionization potential, and the ionization potential is greater in the size of the small grains of the nano structure (smaller particles), that is, as the size of the particles increases, their ionization potential decreases. Finds. An increase in&hellip;<span class="activity-read-more" id="activity-read-more-1895153"><a href="https://hcommons.org/activity/p/1895153/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">7c25d90cc5f2309febeb8cbf23482888</guid>
				<title>Afshin Rashid deposited Review of: "(Field effect nano transistors) Nano transistor electronic quantity and ionization potential)" in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1895152/</link>
				<pubDate>Wed, 31 Jul 2024 03:09:22 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: In the nano transistor structure, the electronic quantity that is more easily available is the ionization potential, and the ionization potential is greater in the size of the small grains of the nano structure (smaller particles), that is, as the size of the particles increases, their ionization potential decreases. Finds. An increase in&hellip;<span class="activity-read-more" id="activity-read-more-1895152"><a href="https://hcommons.org/activity/p/1895152/" rel="nofollow ugc">[Read more]</a></span></p>
]]></content:encoded>
				
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				<guid isPermaLink="false">30d9a1d786bbe88d5c2b265d0091984a</guid>
				<title>Afshin Rashid deposited Review of: "Investigating the performance of ( C۶۰ and C۷۰ endohistal bucky tubes and nano-fullers ) and diamond in the manufacture of nano-electronic devices" in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895151/</link>
				<pubDate>Wed, 31 Jul 2024 03:09:18 -0400</pubDate>

									<content:encoded><![CDATA[<p>The C70 carbon molecule can withstand a wide range of new chemical reactions. The third allotropic form iscarbon (after graphite and diamond). Fullerenes made up of less than 300 carbon atoms (sadial follicles) arecommonly known as “bacilli.”The molecule is fullerenes, which are made up of 70 carbon atoms. C70 FullerenesClosed hollow cages are mad&hellip;<span class="activity-read-more" id="activity-read-more-1895151"><a href="https://hcommons.org/activity/p/1895151/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">197581d32bba04029677597bf3528fbe</guid>
				<title>Afshin Rashid deposited Review of: "Investigating the performance of ( C۶۰ and C۷۰ endohistal bucky tubes and nano-fullers ) and diamond in the manufacture of nano-electronic devices" in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895150/</link>
				<pubDate>Wed, 31 Jul 2024 03:09:11 -0400</pubDate>

									<content:encoded><![CDATA[<p>The C70 carbon molecule can withstand a wide range of new chemical reactions. The third allotropic form iscarbon (after graphite and diamond). Fullerenes made up of less than 300 carbon atoms (sadial follicles) arecommonly known as “bacilli.”The molecule is fullerenes, which are made up of 70 carbon atoms. C70 FullerenesClosed hollow cages are mad&hellip;<span class="activity-read-more" id="activity-read-more-1895150"><a href="https://hcommons.org/activity/p/1895150/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">afc71d2d824cd3d4de495ac99c8d5e77</guid>
				<title>Afshin Rashid deposited Review of: "Investigating the performance of ( C۶۰ and C۷۰ endohistal bucky tubes and nano-fullers ) and diamond in the manufacture of nano-electronic devices" in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1895149/</link>
				<pubDate>Wed, 31 Jul 2024 03:08:56 -0400</pubDate>

									<content:encoded><![CDATA[<p>The C70 carbon molecule can withstand a wide range of new chemical reactions. The third allotropic form iscarbon (after graphite and diamond). Fullerenes made up of less than 300 carbon atoms (sadial follicles) arecommonly known as “bacilli.”The molecule is fullerenes, which are made up of 70 carbon atoms. C70 FullerenesClosed hollow cages are mad&hellip;<span class="activity-read-more" id="activity-read-more-1895149"><a href="https://hcommons.org/activity/p/1895149/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">dca08c444f280b001f9658ec9ddc8d21</guid>
				<title>Afshin Rashid deposited Review of: "Normally, the length of nanowires is more than 1000 times greater than their diameter. This huge difference in ratio (length to diameter) compared to nanowires is often referred to as ۱D materials" in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895148/</link>
				<pubDate>Wed, 31 Jul 2024 03:08:52 -0400</pubDate>

									<content:encoded><![CDATA[<p>Nanowires are less than 100 nm in diameter and can be as small as 3 nm. Typically, nanowires are more than1000 times larger than their diameter. This huge difference in length-to-diameter ratio compared to nanowires isoften referred to as 1D materials. This leads to unique properties not seen in bulk materials, The minute size ofnanowires means&hellip;<span class="activity-read-more" id="activity-read-more-1895148"><a href="https://hcommons.org/activity/p/1895148/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">69019c7b7c21f3a86329143aeb28ac6d</guid>
				<title>Afshin Rashid deposited Review of: "Normally, the length of nanowires is more than 1000 times greater than their diameter. This huge difference in ratio (length to diameter) compared to nanowires is often referred to as ۱D materials" in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895147/</link>
				<pubDate>Wed, 31 Jul 2024 03:08:45 -0400</pubDate>

									<content:encoded><![CDATA[<p>Nanowires are less than 100 nm in diameter and can be as small as 3 nm. Typically, nanowires are more than1000 times larger than their diameter. This huge difference in length-to-diameter ratio compared to nanowires isoften referred to as 1D materials. This leads to unique properties not seen in bulk materials, The minute size ofnanowires means&hellip;<span class="activity-read-more" id="activity-read-more-1895147"><a href="https://hcommons.org/activity/p/1895147/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">513ff0d2e13ec7e4079de5bd62f98abf</guid>
				<title>Afshin Rashid deposited Review of: "Normally, the length of nanowires is more than 1000 times greater than their diameter. This huge difference in ratio (length to diameter) compared to nanowires is often referred to as ۱D materials" in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1895146/</link>
				<pubDate>Wed, 31 Jul 2024 03:08:30 -0400</pubDate>

									<content:encoded><![CDATA[<p>Nanowires are less than 100 nm in diameter and can be as small as 3 nm. Typically, nanowires are more than1000 times larger than their diameter. This huge difference in length-to-diameter ratio compared to nanowires isoften referred to as 1D materials. This leads to unique properties not seen in bulk materials, The minute size ofnanowires means&hellip;<span class="activity-read-more" id="activity-read-more-1895146"><a href="https://hcommons.org/activity/p/1895146/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">7565a37a3e9c396dd0cdeff9b8885606</guid>
				<title>Afshin Rashid deposited Review of: "Nano Fullerenes with The Ability to Store Electrostatic Energy That can be Used as Nano Supercapacitors With Very High Capacity" in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895145/</link>
				<pubDate>Wed, 31 Jul 2024 03:08:27 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: Nano fullerenes with the ability to store electrostatic energy that can be used as nanosupercapacitors with very high capacity. Also, with these nanotubes, the nervous network canbe repaired. Carbon nano fullerenes are allotropes of carbon such as diamond and graphite. Thesecompounds are made of carbon and take on spherical and elliptical&hellip;<span class="activity-read-more" id="activity-read-more-1895145"><a href="https://hcommons.org/activity/p/1895145/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">711746ba1adb9fb2f1f4d7a72222ef4a</guid>
				<title>Afshin Rashid deposited Review of: "Nano Fullerenes with The Ability to Store Electrostatic Energy That can be Used as Nano Supercapacitors With Very High Capacity" in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895144/</link>
				<pubDate>Wed, 31 Jul 2024 03:08:20 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: Nano fullerenes with the ability to store electrostatic energy that can be used as nanosupercapacitors with very high capacity. Also, with these nanotubes, the nervous network canbe repaired. Carbon nano fullerenes are allotropes of carbon such as diamond and graphite. Thesecompounds are made of carbon and take on spherical and elliptical&hellip;<span class="activity-read-more" id="activity-read-more-1895144"><a href="https://hcommons.org/activity/p/1895144/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">8815fe8db6069393051a6f27bf9bda13</guid>
				<title>Afshin Rashid deposited Review of: "Nano Fullerenes with The Ability to Store Electrostatic Energy That can be Used as Nano Supercapacitors With Very High Capacity" in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1895143/</link>
				<pubDate>Wed, 31 Jul 2024 03:08:05 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: Nano fullerenes with the ability to store electrostatic energy that can be used as nanosupercapacitors with very high capacity. Also, with these nanotubes, the nervous network canbe repaired. Carbon nano fullerenes are allotropes of carbon such as diamond and graphite. Thesecompounds are made of carbon and take on spherical and elliptical&hellip;<span class="activity-read-more" id="activity-read-more-1895143"><a href="https://hcommons.org/activity/p/1895143/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">a9596d21ea64e4adcee320ddbc2f4a3d</guid>
				<title>Afshin Rashid deposited Review of: "Micro and nano-electromechanical systems ( MEMS / NEMS ) are devices in which the physical motion of a micro- or nano-scale structure is controlled by an electronic circuit" in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895142/</link>
				<pubDate>Wed, 31 Jul 2024 03:08:01 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: MEMS / NEMS devices enable precise control of these nanoscale interactions and provide an ideal platform for interaction with the nanoscale world. It involves the integration of sub-micron-active materials and elements that combine mechanical, optical and electrical signals to produce nanostructured structures. Micro and&hellip;<span class="activity-read-more" id="activity-read-more-1895142"><a href="https://hcommons.org/activity/p/1895142/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">9359308e1d11ca1108745b1eae6007b3</guid>
				<title>Afshin Rashid deposited Review of: "Micro and nano-electromechanical systems ( MEMS / NEMS ) are devices in which the physical motion of a micro- or nano-scale structure is controlled by an electronic circuit" in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895141/</link>
				<pubDate>Wed, 31 Jul 2024 03:07:54 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: MEMS / NEMS devices enable precise control of these nanoscale interactions and provide an ideal platform for interaction with the nanoscale world. It involves the integration of sub-micron-active materials and elements that combine mechanical, optical and electrical signals to produce nanostructured structures. Micro and&hellip;<span class="activity-read-more" id="activity-read-more-1895141"><a href="https://hcommons.org/activity/p/1895141/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">14fa5ded300d75d90bb21db795027af3</guid>
				<title>Afshin Rashid deposited Review of: "Micro and nano-electromechanical systems ( MEMS / NEMS ) are devices in which the physical motion of a micro- or nano-scale structure is controlled by an electronic circuit" in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1895140/</link>
				<pubDate>Wed, 31 Jul 2024 03:07:39 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: MEMS / NEMS devices enable precise control of these nanoscale interactions and provide an ideal platform for interaction with the nanoscale world. It involves the integration of sub-micron-active materials and elements that combine mechanical, optical and electrical signals to produce nanostructured structures. Micro and&hellip;<span class="activity-read-more" id="activity-read-more-1895140"><a href="https://hcommons.org/activity/p/1895140/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">45ee2d6ae9bc57d5f097e2c8709e8974</guid>
				<title>Afshin Rashid deposited Review of: "Production of nano supercapacitors using nanoparticles (a piezoelectric and ferroelectric material)" in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895139/</link>
				<pubDate>Wed, 31 Jul 2024 03:07:35 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: Production of nano supercapacitors using nanoparticles that can be polarized so that electricalenergy can be stored. Nanostructure multilayer technology (solid state) is a known dielectric materialused in nano supercapacitors because it is a piezoelectric and ferroelectric material. In this work, bycreating passive filters, they provide&hellip;<span class="activity-read-more" id="activity-read-more-1895139"><a href="https://hcommons.org/activity/p/1895139/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">2ae4d8cb3840a2760327899c6f1ca176</guid>
				<title>Afshin Rashid deposited Review of: "Production of nano supercapacitors using nanoparticles (a piezoelectric and ferroelectric material)" in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895138/</link>
				<pubDate>Wed, 31 Jul 2024 03:07:28 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: Production of nano supercapacitors using nanoparticles that can be polarized so that electricalenergy can be stored. Nanostructure multilayer technology (solid state) is a known dielectric materialused in nano supercapacitors because it is a piezoelectric and ferroelectric material. In this work, bycreating passive filters, they provide&hellip;<span class="activity-read-more" id="activity-read-more-1895138"><a href="https://hcommons.org/activity/p/1895138/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">633b1d92fdd228117848e9cc3aba165b</guid>
				<title>Afshin Rashid deposited Review of: "Production of nano supercapacitors using nanoparticles (a piezoelectric and ferroelectric material)" in the group Digital Humanists</title>
				<link>https://hcommons.org/activity/p/1895137/</link>
				<pubDate>Wed, 31 Jul 2024 03:07:13 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: Production of nano supercapacitors using nanoparticles that can be polarized so that electricalenergy can be stored. Nanostructure multilayer technology (solid state) is a known dielectric materialused in nano supercapacitors because it is a piezoelectric and ferroelectric material. In this work, bycreating passive filters, they provide&hellip;<span class="activity-read-more" id="activity-read-more-1895137"><a href="https://hcommons.org/activity/p/1895137/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">0451d758ba3d880d3d4fc42f3a9d8a76</guid>
				<title>Afshin Rashid deposited Review of: "_ Lindemann's change structure section in electrical nanostructures Lindemann change / (change structure) in multilayer nanostructures" in the group Scholarly Communication</title>
				<link>https://hcommons.org/activity/p/1895136/</link>
				<pubDate>Wed, 31 Jul 2024 03:07:10 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: In nanoelectronics technology, special parameters and systems must be used to perform suchprocesses. For example, in the metal marking process, it is inevitable to use copper metal instead of thecommon aluminum metal for internal connections between different practical parts. However, the rapidpenetration of Cu atoms under Si during heat&hellip;<span class="activity-read-more" id="activity-read-more-1895136"><a href="https://hcommons.org/activity/p/1895136/" rel="nofollow ugc">[Read more]</a></span></p>
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				<guid isPermaLink="false">aa5e87fbc8d9e70a1d344868414cf2c9</guid>
				<title>Afshin Rashid deposited Review of: "_ Lindemann's change structure section in electrical nanostructures Lindemann change / (change structure) in multilayer nanostructures" in the group Library &#38; Information Science</title>
				<link>https://hcommons.org/activity/p/1895135/</link>
				<pubDate>Wed, 31 Jul 2024 03:07:03 -0400</pubDate>

									<content:encoded><![CDATA[<p>Note: In nanoelectronics technology, special parameters and systems must be used to perform suchprocesses. For example, in the metal marking process, it is inevitable to use copper metal instead of thecommon aluminum metal for internal connections between different practical parts. However, the rapidpenetration of Cu atoms under Si during heat&hellip;<span class="activity-read-more" id="activity-read-more-1895135"><a href="https://hcommons.org/activity/p/1895135/" rel="nofollow ugc">[Read more]</a></span></p>
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