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  <title><![CDATA[Tech Fee Funds Next-Level Lab Instruments, Equipment, Resources for College of Sciences Students]]></title>
  <body><![CDATA[<p>Some of the instruments in&nbsp;<a href="https://chemistry.gatech.edu/people/o%27mahony/christy">Christy O&rsquo;Mahony</a>&rsquo;s Analytical Chemistry Lab are split into two groups: The Avengers and Teenage Mutant Ninja Turtles.</p>

<p>The stickers that students and O&rsquo;Mahony, senior academic professional in the&nbsp;<a href="https://chemistry.gatech.edu/">School of Chemistry and Biochemistry</a>, have placed on the equipment are appropriate: &lsquo;Thor, Hulk, Iron Man, and Captain America&rsquo; denote equipment that breaks apart and transforms materials into their chemical and molecular components &mdash; while the &lsquo;Mutant Turtles&rsquo; machines safely look for and analyze possible trace amounts of radioactivity in materials.</p>

<p>Each machine sports a sticker with another popular public figure &mdash; Tech&rsquo;s very own Buzz ringed by a halo saying: &ldquo;Purchased with Technology Fee Funds.&rdquo;</p>

<p>Tech Fees &ldquo;make a huge difference in putting sophisticated instrumentation into our teaching labs,&rdquo; says&nbsp;<a href="https://chemistry.gatech.edu/faculty/collard/">David Collard</a>, senior associate dean in the College of Sciences and professor in the School of Chemistry and Biochemistry. &ldquo;This allows us to provide our undergraduates with experiences that are far beyond what is available at other institutions.&rdquo;</p>

<p>&ldquo;Most curriculum would have an instrumental analysis class, an analytical chemistry class where students are taught the concepts of this in a chemistry curriculum,&rdquo; says O&rsquo;Mahony. &ldquo;But it&rsquo;s unusual for them to have the access to actually do the measurements.&rdquo;&nbsp;</p>

<p>The lab&rsquo;s latest Tech Fee-funded purchase, a laser-induced breakdown spectrometer, will provide more accurate measurements of chemical components in materials. An earlier purchase, a capillary electrophoresis instrument, helped O&rsquo;Mahony and a graduate student publish a research paper detailing a new applied lab exercise on analyzing&nbsp;<a href="https://www.mayoclinic.org/diseases-conditions/phenylketonuria/symptoms-causes/syc-20376302">phenylketonuria</a>&nbsp;(PKU), a birth defect.&nbsp;</p>

<p>&ldquo;I think the students being able to put on their curriculum vitae that they have done these techniques, they know these software packages, and [that] these are all the exact same ones that industry has, is a huge help for them,&rdquo; O&rsquo;Mahony says. &ldquo;And I&#39;ve had quite a few students who I&#39;ve provided references for who have gone into quality control. &lsquo;They say they&#39;re familiar with this equipment. So, what level did they use it?&rsquo;,&rdquo; she says companies often ask. &ldquo;Well, they sat down and ran the whole thing, and fixed a problem.&rdquo;</p>

<p>Hear from a few of O&rsquo;Mahony&rsquo;s students on their experiences with the equipment and instruments:</p>

<p><strong>Dhruti Triveti, third-year biochemistry major&nbsp;</strong></p>

<p>&ldquo;I did not expect being able to use equipment like this. I did not know that the technology would be this high &mdash; that the equipment that we&#39;re able to use is very cutting-edge, I believe &mdash; and some of this is used in industry, which I think is really a good stepping stone to what we want to do in the future.&rdquo;</p>

<p><strong>Jack Winn, fourth-year biochemistry major:</strong></p>

<p>&ldquo;This has given me a chance to dive into a different field of chemistry, and see, as I&#39;m preparing to graduate, which field I want to go into.</p>

<p>That&#39;s actually part of the reason I came to Tech. I knew that we had these available resources and cutting-edge technology that would put me at an advantage, I suppose, to other schools.&rdquo;</p>

<p><strong>Julianna Mercado, third-year biochemistry major:</strong></p>

<p>&ldquo;I&#39;m able to be a little bit more comfortable going into different jobs, or research internships or something like that, rather than just be, &lsquo;oh, how do I do this again?&rsquo; I feel like it gives me a better advantage with that &mdash; and that&#39;s a good thing.&rdquo;</p>

<p><strong>Scot Sutton, graduate biochemistry student and Analytical Chemistry Lab teaching assistant:</strong></p>

<p>&ldquo;One of our experiments for the first rotation is flow injection analysis, which, in a lot of ways, is if you kind of took out the guts of one of our liquid chromatography instruments. That&#39;s actually how I explained it to the students &mdash; there&#39;s a lot of different tubing, so they get to see how the reaction takes place over time and get to see what the differences are between a batch process that they might do by hand, versus what the instrument itself can do. And they see different ways to approach chemical problems they might run into.&rdquo;</p>

<p><strong>A list of recently purchased College of Sciences lab and classroom equipment, instruments, and resources powered by Tech Fee funds:</strong></p>

<p><em><strong>Neuroscience/Biological Sciences </strong>&mdash; Instruments that use light to measure and manipulate the activity of neurons, and read electrical signals from specialized cells triggered by light/photons to learn about neurological activity.&nbsp;</em></p>

<p><em><strong>Biological Sciences</strong> &mdash; Equipment for &quot;western blotting&quot;&nbsp;protein identification procedures, allowing Intro to Biology students&nbsp;to visualize&nbsp;the presence of proteins downstream of various molecular biology techniques. Fall 2021&nbsp;students are using&nbsp;it to explore the SARS-CoV-2 spike protein.&nbsp;</em></p>

<p><em><strong>Earth and Atmospheric Sciences</strong> &mdash; Equipment for Kendeda Building EAS Teaching Labs</em></p>

<p><em><strong>Chemistry and Biochemistry </strong>&mdash; Next-Level Laptops for the Biochemistry Teaching Laboratories</em></p>

<p><em><strong>Physics (Neuroscience) </strong>&mdash; Electrophysiology instruments, allowing students to&nbsp;record the activity from neurons and hearts for Georgia Tech&rsquo;s new advanced neuroscience curriculum.</em></p>

<p><em><strong>Earth and Atmospheric Sciences </strong>&mdash; Equipment and resources for the EAS 1600 courses, including Introduction to Environmental Science and Habitable Planet.</em></p>

<p><em><strong>Biological Sciences</strong> &mdash; Biological safety cabinets</em></p>

<p><em><strong>Neuroscience (Biological Sciences) </strong>&mdash; Microscopy in Neuroscience Undergraduate Laboratory&nbsp;</em></p>

<p><em><strong>Psychology </strong>&mdash; Psychology Research Methods, including instruments for&nbsp;&nbsp;eye tracking and skin galvanic response, which measure how the body responds to various emotional states.</em></p>

<p><em><strong>Biological Sciences</strong> &mdash; Green Lab-Living Building Ecology; more campus wildlife data gathering for conservation studies; proposed building of towers on Tech campus for tracking bird migration.&nbsp;</em></p>
]]></body>
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      <value><![CDATA[Learn about new Tech Fee-powered equipment and resources, and hear from Analytical Chemistry Lab instructors about how they’re using new instruments to advance their curriculum and the impact of these on students' career preparation.]]></value>
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      <value>2021-11-09T00:00:00-05:00</value>
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      <value><![CDATA[Learn about new Tech Fee-powered equipment and resources, and hear from Analytical Chemistry Lab instructors about how they’re using new instruments to advance their curriculum and the impact of these on students' career preparation.]]></value>
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      <value><![CDATA[<p>Equipment purchased with Tech Fees make a huge difference in putting sophisticated instrumentation into Georgia Tech&#39;s&nbsp;teaching labs, say College of Sciences administrators,&nbsp;giving undergraduates experiences that are beyond those typically found at other institutions of higher learning.</p>
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            <title><![CDATA[Jack Winn (left), Dhruti Triveti, and Julianna Mercado wait for measurements from specialized equipment in the Analytical Chemistry Lab in the Boggs Building. (Photo Renay San Miguel)]]></title>
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      <value><![CDATA[<p>Renay San Miguel<br />
Communications Officer II/Science Writer<br />
College of Sciences<br />
404-894-5209</p>

<p>&nbsp;</p>
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