<?xml version="1.0" encoding="UTF-8"?><rss xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:content="http://purl.org/rss/1.0/modules/content/" xmlns:atom="http://www.w3.org/2005/Atom" version="2.0"><channel><title><![CDATA[RSS Feed]]></title><description><![CDATA[RSS Feed]]></description><link>http://direct.ecency.com</link><image><url>http://direct.ecency.com/logo512.png</url><title>RSS Feed</title><link>http://direct.ecency.com</link></image><generator>RSS for Node</generator><lastBuildDate>Thu, 07 May 2026 12:25:15 GMT</lastBuildDate><atom:link href="http://direct.ecency.com/created/materialscience/rss.xml" rel="self" type="application/rss+xml"/><item><title><![CDATA[Modeling crystal behavior—toward answers in self-organization]]></title><description><![CDATA[The electrical and mechanical responses of crystal materials, and the control of their coupled effect, form one of the central themes in material science. They are vital to applications such as ultrasonic]]></description><link>http://direct.ecency.com/dlike/@flemingfarm/modeling-crystal-behaviortoward-answers-in-self-organization</link><guid isPermaLink="true">http://direct.ecency.com/dlike/@flemingfarm/modeling-crystal-behaviortoward-answers-in-self-organization</guid><category><![CDATA[dlike]]></category><dc:creator><![CDATA[flemingfarm]]></dc:creator><pubDate>Wed, 19 Sep 2018 14:35:57 GMT</pubDate><enclosure url="https://images.ecency.com/p/2YRZBi4FZVHeN6wS1u6rqCsgwM3ZPDhpR7zvMJwF9J8idSXrQAWyhXd5uXtMABv79Lg56vGhK686i8F6Acd8ZztXL2ZszrrwuSE?format=match&amp;mode=fit" length="0" type="false"/></item><item><title><![CDATA[Super Magnesium Alloy: High Strength & Low Cost]]></title><description><![CDATA[The Interbike Cycling Expo in Reno, Nevada is going on right now, and is featuring bicycle parts made from a new alloy that has previously been available only for military and aerospace applications. Made]]></description><link>http://direct.ecency.com/materialscience/@pinkspectre/super-magnesium-alloy-high-strength-and-low-cost</link><guid isPermaLink="true">http://direct.ecency.com/materialscience/@pinkspectre/super-magnesium-alloy-high-strength-and-low-cost</guid><category><![CDATA[materialscience]]></category><dc:creator><![CDATA[pinkspectre]]></dc:creator><pubDate>Mon, 17 Sep 2018 00:29:18 GMT</pubDate><enclosure url="https://images.ecency.com/p/C3TZR1g81UNaPs7vzNXHueW5ZM76DSHWEY7onmfLxcK2iQCBrkZP7p7Fu3rbmQzdz2KScXpDE4fpjck971YcXKo5hRyzNg6BnqXwjj6cK39BntGJ8KiVT2N?format=match&amp;mode=fit" length="0" type="false"/></item><item><title><![CDATA[Armor Body Suit (Part 2: Muscles)]]></title><description><![CDATA[source Part 1: Skin Part 2: Muscle Rationale Muscles are filaments made out of proteins whose structure is dependent on energy to stay relaxed, its rate is a property called lusitropy. This is seen in]]></description><link>http://direct.ecency.com/materialscience/@ertwro/armor-body-suit-part-2-muscles</link><guid isPermaLink="true">http://direct.ecency.com/materialscience/@ertwro/armor-body-suit-part-2-muscles</guid><category><![CDATA[materialscience]]></category><dc:creator><![CDATA[ertwro]]></dc:creator><pubDate>Sun, 17 Sep 2017 09:07:54 GMT</pubDate><enclosure url="https://images.ecency.com/p/2gsjgna1uruvUuS7ndh9YqVwYGPLVszbFLwwpAYXZivNnXMpcN1d93bFMocPq9F4fzQhy9swc1erkTnazTaUmrBJfRDJPE1PfFyVVKNwTeCSrmv8zS?format=match&amp;mode=fit" length="0" type="false"/></item><item><title><![CDATA[Armor Body Suit (Part 1: Skin)]]></title><description><![CDATA[Source Part 2: Muscles Let's suppose your cryptocurrencies explode in value. Let's suppose money is no longer an issue. Transport yourself mentally to that state in the not so distant future. Ok? follow]]></description><link>http://direct.ecency.com/materialscience/@ertwro/body-suit-armor-part-1</link><guid isPermaLink="true">http://direct.ecency.com/materialscience/@ertwro/body-suit-armor-part-1</guid><category><![CDATA[materialscience]]></category><dc:creator><![CDATA[ertwro]]></dc:creator><pubDate>Thu, 14 Sep 2017 05:28:24 GMT</pubDate><enclosure url="https://images.ecency.com/p/2gsjgna1uruvUuS7ndh9YqVwYGPLVszbFLwwpAYXYSLbRwtX5847MnmeWF6tUy9qNTSPUiz8XCq8taAQQiQvaSShksHpHodxzqpedaLCmFtXdYcQ2A?format=match&amp;mode=fit" length="0" type="false"/></item><item><title><![CDATA[Lattice 2D Materials and Spintronics: Towards Ending Obsolescence in Electronics]]></title><description><![CDATA[source One of the paradigms of the current state of the art in computer science regarding artificial intelligence is that machines are stupid (sorry, dear PC) in order for them to thrive we need to make]]></description><link>http://direct.ecency.com/materialscience/@ertwro/lattice-2d-materials-and-spintronics-towards-ending-obsolescence-in-electronics</link><guid isPermaLink="true">http://direct.ecency.com/materialscience/@ertwro/lattice-2d-materials-and-spintronics-towards-ending-obsolescence-in-electronics</guid><category><![CDATA[materialscience]]></category><dc:creator><![CDATA[ertwro]]></dc:creator><pubDate>Fri, 01 Sep 2017 15:53:42 GMT</pubDate><enclosure url="https://images.ecency.com/p/x7L2VSNEiyA2NAQwwMUhAd65n3KYPRh5CeZiiYmSmhNbKNqFzwvvGTBFxGHbTpSVv3F6snbevENUBtA?format=match&amp;mode=fit" length="0" type="false"/></item><item><title><![CDATA[Titanium in Medical Application]]></title><description><![CDATA[The use of titanium in medical applications began in the 1930s and is based on its biocompatibility, density, mechanical properties, and corrosion resistance (Ref 15.1, 15.2). Titanium has outstanding]]></description><link>http://direct.ecency.com/materialscience/@ahmadbp/titanium-in-medical-application</link><guid isPermaLink="true">http://direct.ecency.com/materialscience/@ahmadbp/titanium-in-medical-application</guid><category><![CDATA[materialscience]]></category><dc:creator><![CDATA[ahmadbp]]></dc:creator><pubDate>Tue, 18 Jul 2017 04:49:12 GMT</pubDate><enclosure url="https://images.ecency.com/p/3W72119s5BjWPGGUiZ9pqnZoj8JHYxCCp9dtn2QVdxxq6GyfnxpndStUpoxp6XjgBgVAPzGCoKXPex9x7Ht9zGoHk7u5LSSkGKGh3dvYzUUt63Zbfnb5BL?format=match&amp;mode=fit" length="0" type="false"/></item><item><title><![CDATA[Novel nanofiber material has power to clean wastewater]]></title><description><![CDATA[Materials scientists and bioelectrochemical engineers at Cornell University have created an innovative, cost-competitive electrode material for cleaning pollutants in wastewater. The researchers created]]></description><link>http://direct.ecency.com/materialscience/@ahmadbp/novel-nanofiber-material-has-power-to-clean-wastewater</link><guid isPermaLink="true">http://direct.ecency.com/materialscience/@ahmadbp/novel-nanofiber-material-has-power-to-clean-wastewater</guid><category><![CDATA[materialscience]]></category><dc:creator><![CDATA[ahmadbp]]></dc:creator><pubDate>Tue, 18 Jul 2017 04:35:12 GMT</pubDate><enclosure url="https://images.ecency.com/p/62PdCouTvNPDuXRaduVYiCb9hxbZWDcAb1acVYBWP5DNCkM1VVCv49kqjSZk6cKCWSZharCuJqaYKTcbJxWKRSjN6HEN13BiHbHJ1dXrpDYqcvi?format=match&amp;mode=fit" length="0" type="false"/></item></channel></rss>