{"623035":{"#nid":"623035","#data":{"type":"news","title":"Grover Takes On Leadership Role","body":[{"value":"\u003Cp\u003EAs the new associate chair for graduate studies in Georgia Tech\u0026rsquo;s School of Chemical \u0026amp; Biomolecular Engineering (ChBE), \u003Ca href=\u0022http:\/\/www.chbe.gatech.edu\/people\/martha-grover\u0022\u003EMartha Grover\u003C\/a\u003E\u0026nbsp;is focused on creating an even more inclusive community, exploring issues relevant to women, underrepresented minorities, and international students.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFor example, she is working with her predecessor as associate chair, J. Carson Meredith, to co-lead the new\u0026nbsp;\u003Ca href=\u0022http:\/\/www.chbe.gatech.edu\/gt-equal\u0022\u003EGT-EQUAL\u003C\/a\u003E (Graduate Training for Equality in Underrepresented Academic Leadership) Program. ChBE is one of two institutions selected nationwide to be inaugural sites for the American Chemical Society\u0026rsquo;s Bridge Program, which aims to increase the number of underrepresented minority students who receive doctoral degrees in chemical sciences.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThe GT-EQUAL Bridge Site will enroll at least two Bridge Fellows annually who will receive extensive support, mentoring, and training to prepare for success in a Ph.D. program.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;We are a leader in educating students from underrepresented groups,\u0026rdquo; says Grover, who also is a researcher in the Petit Institute for Bioengineering and Bioscience at Georgia Tech. \u0026ldquo;But the numbers are too small, and we are committed to doing more. The infrastructure and financial support provided by ACS Bridge will catalyze this new program.\u0026quot;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhile more than a quarter of ChBE grad students are women, conversations Grover had in spring 2019 led her to understand that creating more opportunities for interaction (like networking and social events) could help alleviate any isolation female students might feel after completing their initial core courses and concentrating their focus within their research labs. The same could hold true for international students, Grover adds.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EWhen she joined the faculty of ChBE in 2002 after earning her Ph.D. at the California Institute of Technology, there was one other woman professor in the school. Now there are 12 women out of 40 core faculty members. \u0026ldquo;Reaching that number really changes the social dynamics for the better,\u0026rdquo; she says. \u0026ldquo;It\u0026rsquo;s very clear that we\u0026rsquo;re all very different people. None of us has to feel like we have to represent all women in everything we do.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EFormer ChBE Chair Ronald Rousseau recruited Grover, who credits his leadership in strengthening ChBE\u0026rsquo;s ongoing commitment to recruiting more women faculty members.\u003C\/p\u003E\r\n\r\n\u003Ch3\u003E\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Ch3\u003E\u003Cstrong\u003ECollaborative Research\u003C\/strong\u003E\u003C\/h3\u003E\r\n\r\n\u003Cp\u003ERousseau remains a regular research collaborator with Grover. Working with ChBE Professor Andreas Bommarius, they have started a three-year, federally-funded project to harness new manufacturing technologies and methods in an effort to improve the availability of certain antibiotics.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThey won a $2 million award from the U.S. Food and Drug Administration (FDA) to find ways to apply continuous manufacturing methods to widely-used beta-lactam antibiotics. Instead of the traditional reliance on batch manufacturing for medicine production, Grover and her collaborators will develop a process to continuously synthesize, crystalize, and isolate the antibiotics cephalexin and amoxicillin, eliminating uncertainty and variation from batch to batch.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EControlling the crystallization process is one of Grover\u0026rsquo;s major research areas, and she has worked with Rousseau for a number of years to apply it to the treatment of nuclear waste stored at the decommissioned Hanford Site in the State of Washington.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThey seek to improve nuclear waste separations with sensors to monitor the process of crystalizing non-nuclear salts so that they can be disposed of at lower-level safety sites. \u0026ldquo;There is 155 million gallons of liquid waste from the World War II and Cold War eras that poses serious environmental risks from leaking,\u0026rdquo; Grover explains.\u003C\/p\u003E\r\n\r\n\u003Ch3\u003E\u0026nbsp;\u003C\/h3\u003E\r\n\r\n\u003Ch3\u003E\u003Cstrong\u003EOrigins of Life\u003C\/strong\u003E\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EAfter she attained tenure, her research moved in an unexpected direction when Nicholas Hud, a professor of chemistry and biochemistry at Tech and associate director of the Petit Institute, contacted her to collaborate on a question fundamental to Earth: How did life begin here?\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026ldquo;At the time, I wasn\u0026rsquo;t very aware of \u0026lsquo;origins of life\u0026rsquo; research, but it proved to be a natural fit,\u0026rdquo; Grover says. \u0026ldquo;Nick wanted to bring me on to help provide a mathematical approach to complement the experimental work his team was conducting.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn 2010, the team won funding from the National Science Foundation and National Aeronautics and Space Administration (NASA) to create the Center for Chemical Evolution at Georgia Tech. Five years later, the center received another $20 million grant to fund its work through 2020.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EThrough the center, a study co-authored by Grover found that the original recipe for gene soup may have been simple \u0026ndash; rain and common molecules subjected to cycles of warm sunshine and nighttime cooling along with one key ingredient: a thickener that could have helped gene-liked strands to copy themselves in drying puddles for the first time billions of years ago.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EOther researchers had performed related experiments in water without success, but Grover\u0026rsquo;s team overcame obstacles by adding an off-the-shelf viscous solvent (the thickener), according to results published in\u0026nbsp;\u003Cem\u003ENature Chemistry\u003C\/em\u003E. Her research continues to explore how precursors to the present genetic code first duplicated themselves before the existence of enzymes that are now crucial to that process.\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n\r\n\u003Ch3\u003E\u003Cstrong\u003EEducational Innovation\u003C\/strong\u003E\u003C\/h3\u003E\r\n\r\n\u003Cp\u003EGrover is as committed to innovation in the classroom as she is the research lab. In 2018, she won the David Himmelblau Award for Innovations in Computer-Based Chemical Engineering Education from the American Institute for Chemical Engineers (AIChE) for developing multiple online screencasts to help her students understand concepts in her Process Controls course. \u0026ldquo;Students love videos, and they can watch them in preparing for the exam,\u0026rdquo; Grover says.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn 2017, she published a paper in the\u0026nbsp;\u003Cem\u003EJournal of Chemical Education\u003C\/em\u003E\u0026nbsp;on the educational effectiveness of \u0026ldquo;Group Intelligence,\u0026rdquo; a collaboration with Out of Hand Theater that employed theatrical exercises and games to teach prebiotic chemistry concepts to high school students. In order to make abstract ideas in modern science accessible, Grover designed the series of increasingly complex interactive exercises to be analogous to molecular behaviors and interactions.\u003C\/p\u003E\r\n\r\n\u003Cp\u003EIn her new role as associate chair of graduate studies, she plans to emphasize the importance of writing skills for graduate student success. \u0026ldquo;We\u0026rsquo;re making it clear how essential it is to be able to communicate effectively about research for it to become known. Whatever the next step is in their careers, being a strong writer is very important.\u0026rdquo;\u003C\/p\u003E\r\n\r\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\r\n","summary":null,"format":"limited_html"}],"field_subtitle":[{"value":"Petit Institute researcher becomes associate chair for graduate studies in ChBE"}],"field_summary":[{"value":"\u003Cp\u003EPetit Institute researcher becomes associate chair for graduate studies in ChBE\u003C\/p\u003E\r\n","format":"limited_html"}],"field_summary_sentence":[{"value":"Petit Institute researcher becomes associate chair for graduate studies in ChBE"}],"uid":"28153","created_gmt":"2019-07-08 15:30:05","changed_gmt":"2019-07-08 18:48:56","author":"Jerry Grillo","boilerplate_text":"","field_publication":"","field_article_url":"","dateline":{"date":"2019-07-08T00:00:00-04:00","iso_date":"2019-07-08T00:00:00-04:00","tz":"America\/New_York"},"extras":[],"hg_media":{"613217":{"id":"613217","type":"image","title":"Martha Grover","body":null,"created":"1540400560","gmt_created":"2018-10-24 17:02:40","changed":"1540400560","gmt_changed":"2018-10-24 17:02:40","alt":"","file":{"fid":"233451","name":"Martha_Grover.jpg","image_path":"\/sites\/default\/files\/images\/Martha_Grover.jpg","image_full_path":"http:\/\/www.tlwarc.hg.gatech.edu\/\/sites\/default\/files\/images\/Martha_Grover.jpg","mime":"image\/jpeg","size":231622,"path_740":"http:\/\/www.tlwarc.hg.gatech.edu\/sites\/default\/files\/styles\/740xx_scale\/public\/images\/Martha_Grover.jpg?itok=2ttNr5sp"}}},"media_ids":["613217"],"groups":[{"id":"1292","name":"Parker H. Petit Institute for Bioengineering and Bioscience (IBB)"}],"categories":[],"keywords":[],"core_research_areas":[{"id":"39441","name":"Bioengineering and Bioscience"}],"news_room_topics":[],"event_categories":[],"invited_audience":[],"affiliations":[],"classification":[],"areas_of_expertise":[],"news_and_recent_appearances":[],"phone":[],"contact":[],"email":[],"slides":[],"orientation":[],"userdata":""}}}