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  <NewsItem contentIssues="true" id="127742" important="false" status="posted" url="https://dev.my.umbc.edu/groups/cbee/posts/127742">
  <Title>Undergraduate Summer Internship : ExxonMobil</Title>
  <Tagline>Catherine Wraback, '23 chemical engineering</Tagline>
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    <![CDATA[
    <div class="html-content"><div><div>Catherine Wraback, '23 chemical engineering - traditional track</div><div><strong><br></strong></div><h4><strong>Internship Location: </strong></h4><div>ExxonMobil, Houston, TX</div></div><div><br></div><h4><span>What is the focus of your research/internship?</span></h4><div><div>This summer, I worked in the Gas-Phase Polyethylene Process Technology group at ExxonMobil in Houston, TX. My main project focus was on running the pilot plant units to test next generation catalyst systems to form new grades of polyethylene with different material properties. I compared design, operation, and maintenance of key reactor vent line systems across gas-phase polyethylene sites globally to investigate plugging and fouling. I used the gathered information to redesign vent line systems and developed "Tier 2 Best Practice" guidance for contracted design firms for future projects.</div><div><br></div><h4>What advice do you have for students who are interested in getting involved in research or an internship?</h4><div>Network! Talk to people about where they have worked and what they have done. Talk about what you are interested in doing. Even if it is just students in the department who are a year or two older than you, they still have those connections!</div><div><br></div><h4>Are you a member of any clubs/campus organizations?</h4><div>AIChE (President), Tau Beta Pi, SWE, Women's Ultimate Frisbee</div><div><br></div><h4>What are your goals after graduation?</h4><div>Pursue a career in process design with a core focus on building sustainable processes!</div><div><br></div><h4>Learn more about Catherine Wraback:</h4><p><a href="https://www.linkedin.com/in/catherine-wraback/" rel="nofollow external" class="bo">https://www.linkedin.com/in/catherine-wraback/ </a></p></div><div><br></div><div>Photo Credit: <em>Catherine Wraback</em> </div><div><br></div><div><br></div>
    
    <hr>
    Did you participate in a summer research opportunity or a summer internship? <a href="https://docs.google.com/forms/d/e/1FAIpQLSc1SBhJfav0fwTrnhYXWzj7aDq4TpP65b3hzC6L1FQjjO9Ijg/viewform" rel="nofollow external" class="bo">Tell us more about it</a></div>
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  <Summary>Catherine Wraback, '23 chemical engineering - traditional track     Internship Location:   ExxonMobil, Houston, TX      What is the focus of your research/internship?   This summer, I worked in...</Summary>
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  <PostedAt>Mon, 19 Sep 2022 14:23:07 -0400</PostedAt>
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  <NewsItem contentIssues="true" id="127736" important="false" status="posted" url="https://dev.my.umbc.edu/groups/cbee/posts/127736">
  <Title>CBEE students &amp; faculty highlighted: USM LSAMP annual report</Title>
  <Tagline>2020 - 2021 Year in Review</Tagline>
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    <![CDATA[
    <div class="html-content"><p>The <a href="https://lsamp.umbc.edu/files/2022/06/UMBC-LSAMP-Year-in-review-20-21-compressed.pdf" rel="nofollow external" class="bo">UMBC LSAMP 2020-2021 Annual Report</a> <span>highlights involvement in the UMBC LOUIS STOKES </span>ALLIANCE FOR MINORITY PARTICIPATION (LSAMP) program. LSAMP participants have access to individualized advising, campus workshops, funded research experiences, and national and international conferences to strengthen their STEM identity and promote entry into top graduate programs. </p><div>We want to specifically celebreate the achievements of those persuing their bachelors of science in chemical engineering and the departmental faculty supporting their efforts. </div><div><br></div><p><br></p><p>"...sometimes you feel as if you're not making much progress but then you come to understand that your data can be helpful to others. My PI has taught me that my role in the research lab is valuable and that routine observations can lead to progress in an experiment. "</p><p>- Excerpt From A Chemical Engineering Major '23 Research Reflection -</p><p><br></p><h4><span>FALL 2020 RESEARCH FELLOWSHIP FELLOWSHIP PROGRAM (Pg 32 )</span></h4><p>Name and Class | Major | Topic | Faculty Mentor | University</p><p><strong>Sahaadat Hammed-Owens ‘23</strong> | Chemical Engineering | Biomaterials &amp; Tissue Engineering | <strong>Dr. Jennie Leach</strong> | UMBC</p><h4><span>SUMMER 2021 RESEARCH FELLOWSHIP FELLOWSHIP PROGRAM (pg 34)</span></h4><div><div>Name and Class | Major | Topic | Faculty Mentor | University</div><div><ul><li><strong>Sahaadat Hammed-Owens ‘23 </strong>| Chemical Engineering | Biomaterials &amp; Tissue Engineering | <strong>Dr. Jennie Leach</strong> | UMBC</li><li><strong>Chiad Onyeje '24</strong> | Chemical Engineering | Nanoparticles | <strong>Dr. Erin Lavik </strong>| UMBC</li><li><strong>Grace Tugado '23</strong> | Chemical Engineering | Biomaterials &amp; Biochemistry | <strong>Dr. Jennie B. Leach </strong>| UMBC</li></ul></div></div><h4><span>CLASS OF 2021 GRADUATING FELLOWS AND POST-GRADUATION PLANS (pg 40)</span></h4><div><div><ul><li><strong>Hana El-Erian Flores</strong>, Chemical Engineering, PhD, MIT</li><li><strong>Howard Nicholson III</strong>, Chemical Engineering, PhD, Columbia</li><li><strong>Halle Welch</strong>, Chemical Engineering, PhD, Cornell</li></ul></div></div><div><br></div></div>
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  <Summary>The UMBC LSAMP 2020-2021 Annual Report highlights involvement in the UMBC LOUIS STOKES ALLIANCE FOR MINORITY PARTICIPATION (LSAMP) program. LSAMP participants have access to individualized...</Summary>
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  <PostedAt>Mon, 19 Sep 2022 13:54:46 -0400</PostedAt>
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  <NewsItem contentIssues="true" id="127156" important="false" status="posted" url="https://dev.my.umbc.edu/groups/cbee/posts/127156">
    <Title>Undergraduate Summer Research: Vanderbilt University</Title>
    <Tagline>Chiad Onyeje, '24 chemical engineering</Tagline>
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      <![CDATA[
          <div class="html-content"><div><strong>Chiad Onyeje, '24 c</strong><strong>hemical engineering</strong></div><div><br></div><div><strong>Internship experience</strong></div>Over the summer, Chiad delved into an Undergraduate Research Internship combining Biomedical Engineering and Nanoscale Science at the Vanderbilt Institution of Nanoscale Science and Engineering (VINSE) program. Chiad learned about cell culturing techniques, microparticle formulation strategies, research project design &amp; communication, and microfluidic device development along with the various tools and techniques often required in the growing field. The microfluidic devices fabricated were made to both refine and optimize the production of antioxidant microparticles by flowing separate aqueous and organic phases together, all studied in the Duvall Lab where Chiad worked. The Engineering Marvels have the potential to reduce internal inflammation and a plethora of differing degenerative diseases as a further cascading effect if taken to the public one day.<div><div><br></div><div><strong>What advice would you give to students interested in internships?</strong></div><div>"Always step out of your comfort zones when looking for and being a part of the internship. I debated for a while about where to do my internship and ultimately decided on Vanderbilt because of how different the atmosphere would be, along with the differences between Baltimore and Nashville. Furthermore, every internship opportunity is a chance to explore a new side to yourself: tack on a goal or skill you'd want to learn alongside the experience that you wouldn't/couldn't do otherwise. Advice like this is what makes the experience far more impactful and way more fondly remembered!" </div><div><br></div><div><strong>What are your plans after graduation?</strong></div><div>"Moving up to graduate school to pursue a Masters and eventually a Ph.D! Aiming to inspire change in the greater Chem. E. field there on"</div><div><br></div><div>Way to go Chiad! Keep up the great work and continue to positively impact the world!</div></div><div><br></div><div>Here is the link to view <span>Vanderbilt Institution of Nanoscale Science and Engineering (VINSE) program </span>Linkedin post on Chiad: <a href="https://www.linkedin.com/posts/vinse_meet-ournational-science-foundation-nsf-activity-6952982243678052352-OsCv?utm_source=share&amp;utm_medium=member_desktoputm_source=linkedin_share&amp;utm_medium=android_app" rel="nofollow external" class="bo">LinkedinPost</a></div><div><br></div><div>If you are a prospective student and interested in applying to the <span>Vanderbilt Institution of Nanoscale Science and Engineering (VINSE) program</span> send an email to <a href="mailto:vinse@vanderbilt.edu">vinse@vanderbilt.edu</a>.</div><div><br></div><div>Photo Credit: <span><em>Vanderbilt Institution of Nanoscale Science and Engineering</em> </span></div><div><span><br></span></div><div><span><br></span></div><div><hr>Did you participate in a summer research opportunity or a summer internship? <a href="https://docs.google.com/forms/d/e/1FAIpQLSc1SBhJfav0fwTrnhYXWzj7aDq4TpP65b3hzC6L1FQjjO9Ijg/viewform" rel="nofollow external" class="bo">Tell us more about it</a></div></div>
      ]]>
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    <Summary>Chiad Onyeje, '24 chemical engineering     Internship experience Over the summer, Chiad delved into an Undergraduate Research Internship combining Biomedical Engineering and Nanoscale Science at...</Summary>
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  <NewsItem contentIssues="true" id="127004" important="false" status="posted" url="https://dev.my.umbc.edu/groups/cbee/posts/127004">
    <Title>Undergraduate Summer Internship : Ecolab, Nalco Water</Title>
    <Tagline>Mary Nolan, '23 chemical engineering</Tagline>
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      <![CDATA[
          <div class="html-content"><div><strong>Mary Nolan, '23 c</strong><strong>hemical engineering</strong></div><div><br></div><div><strong>Internship experience</strong></div>This summer, Mary interned full-time at Ecolab and worked as an Engineering Technical Sales intern for their water treatment company, Nalco Water. Mary learned about boilers, cooling towers, and wastewater systems, and about the chemicals and techniques used to treat them. Mary worked in their Food and Beverage Manufacturing division and had the opportunity to visit plants all over Central Pennsylvania testing and treating water.  Also, Mary created projects to save water, that once implemented, will save over 5 million gallons a year for just one site! <br><blockquote><blockquote><br></blockquote></blockquote><div><div><br></div><div><strong>What advice would you give to students interested in internships?</strong></div><div>"Take every opportunity to learn more about companies and internship programs. I found this internship through a recruiting event at a SWE conference and learning more about the company and getting to know the people working there allowed me to have this awesome experience" </div><div><br></div><div><strong>What are your plans after graduation?</strong></div><div>"To continue to work in the industry to save water and improve the environment"</div><div><br></div><div>Way to go Mary! Keep up the great work and continue to positively impact the world!</div></div><div><br></div><div>Photo Credit: <em>Nalco Water</em></div><div><em><br></em></div><div><em><br></em></div><div><hr>Did you participate in a summer research opportunity or a summer internship? <a href="https://docs.google.com/forms/d/e/1FAIpQLSc1SBhJfav0fwTrnhYXWzj7aDq4TpP65b3hzC6L1FQjjO9Ijg/viewform" rel="nofollow external" class="bo">Tell us more about it</a></div></div>
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    <Summary>Mary Nolan, '23 chemical engineering     Internship experience This summer, Mary interned full-time at Ecolab and worked as an Engineering Technical Sales intern for their water treatment company,...</Summary>
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    <PostedAt>Wed, 24 Aug 2022 13:02:36 -0400</PostedAt>
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  <NewsItem contentIssues="true" id="125946" important="false" status="posted" url="https://dev.my.umbc.edu/groups/cbee/posts/125946">
  <Title>CBEE students sweep IFPAC 2022 student poster presentations</Title>
  <Body>
    <![CDATA[
    <div class="html-content"><p>IFPAC has been leading the way in Advanced Manufacturing Science for over 35 years. </p><p>There annual conference 'IFPAC 2022' focusong on Process Analytical Technology and Process Analysis &amp; Control was held June 12-15, 2022 in North Bethesda, MD and attended by more than 400 people. </p>
    <p><strong>Dr. Govind Rao, </strong><em>Center for Advanced Sensor Technology, and Department of Chemical, Biochemical and Environmental Engineering,</em> gave a keynote address at the Opening Plenary session on June 13 titled 'Disruptive Innovation in Healthcare: Towards a more Just, Equitable, Diverse and Inclusive World".</p><p>Many students presented their research during two poster sessions. UMBC graduate students mentored by CBEE faculty swept the placements for the best student poster presentations. </p>
    <p><strong>1st place: </strong></p><ul><li><strong> </strong><strong>Shayan Borhani</strong>, <em>Chemical and Biochemical Engineering, PhD</em> </li></ul>
    <p><strong>2nd place: </strong></p><ul><li><strong>Md Sadique Hasan</strong>, <em>Computer Science and Electrical Engineering, PhD </em></li></ul>
    <p><strong>3rd place winners: </strong></p>
    <ul><li><strong>Vida Rahmatnejad, </strong><em>Chemical and Biochemical Engineering, PhD</em> </li><li><strong>Vikash Kumar</strong>, <em>Chemical and Biochemical Engineering, PhD</em> </li></ul>
    
    <p><br></p><h3>Titles and Abstracts from the winning posters</h3>
    <h4>Shayan Borhani - 1st place</h4>
    <p><strong>Title: </strong>Manufacturing therapeutics at the point-of-care using cell-free systems</p>
    <p><strong>Abstract</strong></p>
    <p>Point-of-care (POC) technologies have brought medical diagnostics and treatments to patients who would otherwise go without medical care. Currently, POC technologies are mainly focused on medical diagnostics such as COVID-19 antigen test kits and little investment has been made to manufacture therapeutics at the POC. Additionally, COVID-19 has highlighted the genuine utility of POC technologies, by displaying the urgency of providing medicines in pandemic hot-spots. For this reason, a distributed manufacturing platform which seeks to produce therapeutics is essential to address future pandemic preparedness. Here, we report the utility of cell-free protein synthesis (CFPS) coupled with a POC manufacturing platform (BioMOD), capable of expression and purification of a variety of therapeutics ranging from monoclonal antibodies to insulin. Specifically, CFPS systems have emerged as an ideal methodology at the POC since they provide a rapid, scalable, and versatile platform for synthesizing a wide variety of proteins. Moreover, the capacity for CFPS components to be lyophilized and subsequently hydrated to synthesize novel proteins allows them to be readily stored and shipped to the POC for localized viral outbreaks or other medical needs. With recent advances in microfluidics, these products can then be rapidly purified in continuously automated purification processes, generating a final product within hours. To this end, we have selected the known broad-spectrum antiviral lectin, Griffithsin (GRFT), and recombinant human insulin as ideal candidates to pilot the BioMOD system.</p>
    <h4>Md Sadique Hasan - 2nd place</h4>
    <p><strong>Title: </strong>Rapid, ultrasensitive and high throughput method and instrumentation for bioburden detection</p>
    <p><strong>Abstract</strong></p>
    <p>A lengthy culturing procedure is often required to detect bioburden. To increase the rate of detection and decrease the limit of detection (LOD), a multichannel fluorometer has been developed using low-cost electronics and is suited for field applications with microfluidic cassettes. Multiple samples can be tested at the same time with LOD of as low as &lt;1 CFU/mL with 6 hours of incubation. This low-cost system detects and reports the fluorescence signal intensity of an indicator dye in the presence of bacterial contamination. The redox indicator dye resazurin is used which in the presence of viable cells is reduced to resorufin which has a particular emission wavelength and the fluorometer circuitry is configured to pick up the fluorescence emission. We validated the method using primary E. coli culture in comparison with a spectrophotometer which served as the gold standard. The assay was optimized and the impact of incubation and filtration steps on the assay sensitivity was also explored. Data analysis showed that multichannel fluorometers performed similarly to the conventional plate readers. This system is well suited to detect low-level bioburden in the laboratory, pharmaceutical, and field settings due to its portability, low cost, simplicity of operation, and specific assay sensitivity.</p>
    <h4>Vida Rahmatnejad - 3rd place</h4>
    <p><strong>Title: </strong>Noninvasive Application of Dissolved Carbon Dioxide and Glucose Sensors in Cell Culture</p>
    <p><strong>Abstract</strong></p>
    <p>Abstract: High levels of CO2 are toxic to cell culture such that it acts as an inhibitory factor affecting cell metabolism. In addition, glucose is the most important supporting factor in rapid proliferation of cells since it is the main nutrient used by the cells. Despite the fact that CO2 and glucose play a major role in cell culture condition, small-scale cell culture studies in academia as well as in industry are currently conducted in single-use vessels which are not equipped with systems monitoring the aforementioned factors. As a result, findings from small-scale cell culture studies are not as useful from an analytical point of view. This fact makes these kinds of experiments less repeatable and reliable. The Center for Advanced Sensor Technology has developed sensors for dissolved carbon dioxide (DCO2) and glucose to monitor the cell culture environment. These sensors are suitable for various kinds of bioreactors because of their low profile. Currently, the CO2 sensor is integrated with the T flask (featuring a sampler mounted outside of the vessel). The evaluation of the noninvasive monitoring system for DCO2 shows promising results. In future work, standard cell culture flasks equipped with sensors for DCO2, and glucose will provide continuous monitoring. Application of these sensors will improve the understanding of the small-scale cell culture microenvironment and provide real-time information on the nutrients and metabolites. The analytical data from monitoring system will be used to interpret the effect of microenvironmental conditions on cell behavior.</p>
    <h4>Vikash Kumar - 3rd place</h4>
    <p><strong>Title: </strong>High yield flexi flask for next-generation integrative and sustainable bioprocessing</p>
    <p><strong>Abstract: </strong>Shake flasks cultivation is a routine technique for bioprocess development in both prokaryotic and higher-order eukaryotic cell cultures. The material cost and human capital in the shake flask studies are much less than their bioreactor counterparts. More than 90% of the cell culture activities in both industries and academia are performed in shake flasks. However, oxygen deficiency and carbon dioxide accumulation in high-density cultures have been persistent issues. Both hypoxic conditions and carbon dioxide accumulation have been associated with growth inhibition, metabolic changes, and poor recombinant yield. In this work, we have tried to address this issue by proposing a selectively permeable walled flask called Flexi flask. These flasks are made of a proprietary silicone-based membrane imprinted on a polycarbonate exoskeleton. The membrane is selectively permeable to both Oxygen and Carbon Dioxide. Oxygen permeation allows for an adequate supply of oxygen for the aerobic culture, and carbon dioxide permeation ensures less accumulation of carbon dioxide in the culture system. Mass transfer studies conducted with the Flexi flasks suggested a 100% improvement in KLa over a disposable polycarbonate shake flask. Increased KLa allowed for a 33% improvement in power consumption per unit volume. A 56% increment in cell mass with E. coli and over 40% increment with Pichia Pastoris was observed. Permeable membranes allowed for the non-invasive integration of dissolved oxygen and carbon dioxide sensing in the flasks. Further, silicone enables a degree of flexibility to the flask. Unlike polycarbonate, silicone is not toxic to aquatic or soil organisms, it is not hazardous, and while not biodegradable, it can be recycled after a lifetime of use. Apart from benefiting from a higher yield and low power cost in the Flexi flask, the physical and chemical attributes of these flasks are in line with the sustainable goals of the bioprocessing industry.</p><p><br></p><p><em>Photo credit: Dr. Govind Rao. Left to Right - Vikash Kumar, Dr. Govind Rao, Shayan Borhani, Dr. Antonio Moreira, Md Sadique Hasan, Vida Rahmatnejad, Joel Tyson</em></p></div>
]]>
  </Body>
  <Summary>IFPAC has been leading the way in Advanced Manufacturing Science for over 35 years.   There annual conference 'IFPAC 2022' focusong on Process Analytical Technology and Process Analysis &amp;...</Summary>
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  <PostedAt>Fri, 17 Jun 2022 19:42:30 -0400</PostedAt>
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  <NewsItem contentIssues="false" id="125887" important="false" status="posted" url="https://dev.my.umbc.edu/groups/cbee/posts/125887">
    <Title>In the News: Genetic Engineering &amp; Biotechnology News (GEN)</Title>
    <Tagline>Dr. Rao highlights benefits of point-of-care drug production</Tagline>
    <Body>
      <![CDATA[
          <div class="html-content"><div><p><em>excerpt from</em></p><h3>Point-of-Care Drug Production Would Aid Patients and Industry</h3><div><em>~By Gareth John Macdonald - March 1, 2022~</em></div></div><div><br></div><div>Making medicines at the bedside could help industry cut manufacturing costs and streamline supply chains. But turning point-of-care (POC) production into a reality means overcoming some major analytical and regulatory hurdles.</div><div><div><br></div><div>“POC bioprocessing is the next big thing,” says <strong>Govind Rao, PhD</strong>, director of the <a href="https://cast.umbc.edu/" rel="nofollow external" class="bo">center for advanced sensor technology</a> at the University of Maryland, Baltimore County, who looked at the potential benefits in a recent <a href="https://www.sciencedirect.com/science/article/abs/pii/S2211339822000120#" rel="nofollow external" class="bo">paper</a>.</div><div><br></div><div><div>For industry, the elimination of manufacturing facility-related investment and running costs is the obvious advantage, Rao says.</div><div><br></div><div>“The hardware costs for a POC system should be around that of a high-end laptop. If disposable cartridges could be used with all the necessary reagents lyophilized, then production costs could compare favorably with centralized manufacturing,” he explains. “After all, the technology is not that different from that used in ink-jet printers and pod-based coffee makers!”</div><div><br></div><div>But facility costs are not the only benefit, according to Rao, who cites the potential for just-in-time production, the elimination of costly cold chain distribution networks, and the ability to tailor manufacturing to specific patients as other examples.</div></div><div><br></div><div><div><em>[<a href="https://www.genengnews.com/topics/bioprocessing/point-of-care-drug-production-would-aid-patients-and-industry/" rel="nofollow external" class="bo">continue reading</a>]</em></div><div><em><br></em></div><div><em>full article: </em><a href="https://www.genengnews.com/topics/bioprocessing/point-of-care-drug-production-would-aid-patients-and-industry/" rel="nofollow external" class="bo">https://www.genengnews.com/topics/bioprocessing/point-of-care-drug-production-would-aid-patients-and-industry/</a></div></div></div></div>
      ]]>
    </Body>
    <Summary>excerpt from  Point-of-Care Drug Production Would Aid Patients and Industry  ~By Gareth John Macdonald - March 1, 2022~      Making medicines at the bedside could help industry cut manufacturing...</Summary>
    <Website>https://www.genengnews.com/topics/bioprocessing/point-of-care-drug-production-would-aid-patients-and-industry/</Website>
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  <NewsItem contentIssues="false" id="125812" important="false" status="posted" url="https://dev.my.umbc.edu/groups/cbee/posts/125812">
  <Title>Dr. Raikar designated 2022-2024 UMBC Innovation Fellow</Title>
  <Tagline>Hrabowski Fund for Innovation Award winner</Tagline>
  <Body>
    <![CDATA[
    <div class="html-content"><p><strong>Dr. Neha Raikar</strong>, Chemical, Biochemical and Environmental Engineering and Dr. Nilanjan Banerjee, Computer Science, and Electrical Engineering, received an Hrabowski Innovation Fund, Implementation and Research Award for July 2022 - June 2024. </p>
    <p>These "UMBC Innovation Fellows'' will work on the project entitled, "Feasibility of anonymous grading for reducing performance discrepancies across student demographics." They will study a method to reduce implicit bias in grading through the use of an anonymous grading system. Anonymous grading as hypothesized by the PIs will lead to a reduction of implicit bias during grading. It will promote student success and reduce the perception of biased grading amongst students. </p>
    <p>The goal is to better understand and create an environment where grading is fair and students, especially those from underrepresented groups, feel more comfortable and secure while taking courses. This will lead to a system with more equitable instruction and academic outcomes. </p><p><br></p><p>Learn more about the <strong>Hrabowski Fund for Innovation</strong> at <a href="https://calt.umbc.edu/academic-innovation-competition/" rel="nofollow external" class="bo">https://calt.umbc.edu/academic-innovation-competition/</a></p></div>
]]>
  </Body>
  <Summary>Dr. Neha Raikar, Chemical, Biochemical and Environmental Engineering and Dr. Nilanjan Banerjee, Computer Science, and Electrical Engineering, received an Hrabowski Innovation Fund, Implementation...</Summary>
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  <Sponsor>Chemical, Biochemical and Environmental Engineering</Sponsor>
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  <PostedAt>Wed, 08 Jun 2022 08:34:34 -0400</PostedAt>
  <EditAt>Wed, 10 May 2023 10:19:45 -0400</EditAt>
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  <NewsItem contentIssues="false" id="117191" important="false" status="posted" url="https://dev.my.umbc.edu/groups/cbee/posts/117191">
    <Title>POST DOC POSITION: nanoparticles for drug delivery</Title>
    <Tagline>PI: Dr. Lavik</Tagline>
    <Body>
      <![CDATA[
          <div class="html-content"><p>A DoD-funded postdoctoral position is available for a postdoctoral fellow to start immediately in the area of targeted nanoparticles for delivery of drugs in models of trauma. Experience with nanoparticle synthesis, characterization, and drug delivery studies is desirable. The Laviklab works as a team collaborating with each other to support the development of novel drug delivery systems, hemostatic nanoparticles, and high throughput tissue models. Our goal is to find colleagues who are interested in being part of a collaborative team.</p>
          <p>Review of applications will begin immediately and continue until the position is filled. Please email a cover letter highlighting your experience and career goals along with your cv to <a href="mailto:elavik@umbc.edu" rel="nofollow external" class="bo">elavik@umbc.edu</a>. Women and people from marginalized groups are especially encouraged to apply.</p><p><em><strong><br></strong></em></p><p><em><strong>~~ UMBC is an affirmative action/equal opportunity employer. ~~</strong></em></p></div>
      ]]>
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    <Summary>A DoD-funded postdoctoral position is available for a postdoctoral fellow to start immediately in the area of targeted nanoparticles for delivery of drugs in models of trauma. Experience with...</Summary>
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    <Tag>spring-2022</Tag>
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    <PostedAt>Thu, 24 Feb 2022 11:58:14 -0500</PostedAt>
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  <NewsItem contentIssues="true" id="117161" important="false" status="posted" url="https://dev.my.umbc.edu/groups/cbee/posts/117161">
  <Title>BEMORE - Undergraduate Research Opportunity - Summer 2022</Title>
  <Tagline>Submit applications by March 28, 2022.</Tagline>
  <Body>
    <![CDATA[
    <div class="html-content"><div>University of Maryland Baltimore County (UMBC)<br>NSF Research Experience for Undergraduates (REU) program<br><strong><a href="https://bemore.umbc.edu/" rel="nofollow external" class="bo">Biochemical, Environmental, and MOlecular Research in Engineering (BEMORE)</a></strong><br><br>We are now accepting applications for the BEMORE REU program at UMBC. For best consideration, please <strong>submit your applications by March 28, 2022</strong>.<br><br>BEMORE is a new REU program that will prepare students to address knowledge gaps, develop new technologies, and bring unique perspectives to complex problems in biochemical and environmental engineering and science.<br><br>Students that join the BEMORE REU Site will gain the interdisciplinary knowledge, skills, and training to address a variety of grand challenges, including <strong>antibiotic resistance, sustainable plastic replacements, smart polymers, urban air quality, bio-based sensors</strong>, and more. Additional details are available at <a href="https://bemore.umbc.edu/" rel="nofollow external" class="bo">https://bemore.umbc.edu/</a><br><br><strong>Program details:</strong><br>• June 1, 2022 to August 10, 2022<br>• $6000 stipend, travel allowance, and free on-campus housing<br>• Access to state-of-the-art laboratories<br>• Work with a team of two faculty members and other students<br>• Learn about current issues in biochemical and environmental engineering and science<br>• Enjoy field trips, group activities, and our awards banquet<br><br><strong>Eligibility:</strong><br>• All majors are welcome to apply<br>• Current student at a two- or four-year college or university<br>• US citizen or permanent resident</div><div><br></div>
    <div><strong><a href="https://bemore.umbc.edu/apply/" rel="nofollow external" class="bo">APPLY NOW</a></strong></div>
    <div>Questions can be sent to <a href="mailto:bemorereu@umbc.edu" rel="nofollow external" class="bo">bemorereu@umbc.edu</a></div></div>
]]>
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  <Summary>University of Maryland Baltimore County (UMBC) NSF Research Experience for Undergraduates (REU) program Biochemical, Environmental, and MOlecular Research in Engineering (BEMORE)  We are now...</Summary>
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  <NewsItem contentIssues="true" id="117158" important="false" status="posted" url="https://dev.my.umbc.edu/groups/cbee/posts/117158">
  <Title>CBEE represented at 3MT semi-final for 3 consecutive years</Title>
  <Tagline>Jayashree Yalamanchili, 2021 GEARS 3MT winner</Tagline>
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    <![CDATA[
    <div class="html-content"><div><strong>Jayashree Yalamanchili, </strong>PhD candidate, participated in the semi-final 3MT competition during the 2022 Annual Meeting of the Conference of Southern Graduate Schools in Raleigh, NC. Her talk was titled "The fate of transition metals in phosphate-based acellular assays used to determine Particulate Matter (PM) reactivity". Jayashree is advised by Dr. Christopher Hennigan and Dr. Brian Reed.  </div><div><div><br></div></div><div>Jayashree won the <a href="https://gears.umbc.edu/" rel="nofollow external" class="bo">GEARS 3MT</a> conducted at UMBC in May 2021. She is the <a href="https://my3.my.umbc.edu/groups/cbee/posts?tag=3mt" rel="nofollow external" class="bo">third doctoral student</a> in the department to win the GEARS 3MT and the fourth GEARS 3MT winner to be advised by a faculty member in CBEE. </div><div><br></div><div>3MT celebrates the exciting research conducted by Ph.D. students. Developed by The University of Queensland, the exercise cultivates students’ academic, presentation, and research communication skills. The competition supports their capacity to effectively explain their research in three minutes, in a language appropriate to a non-specialist audience.</div><div><br></div><div><div>We are exceedingly proud of Jayashree's success and that of CBEE students in past 3MT competitions!</div></div></div>
]]>
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  <Summary>Jayashree Yalamanchili, PhD candidate, participated in the semi-final 3MT competition during the 2022 Annual Meeting of the Conference of Southern Graduate Schools in Raleigh, NC. Her talk was...</Summary>
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  <PostedAt>Wed, 23 Feb 2022 09:16:15 -0500</PostedAt>
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