Amanda Cangelosi

Amanda Cangelosi receives U's Early Career Teaching Award


Amanda Cangelosi, instructor (lecturer) in the Mathematics Department, has received the 2021 Early Career Teaching Award from the University of Utah. The award is given to outstanding young faculty members who have made significant contributions to teaching at the university. Specifically, the University Teaching Committee looks for a faculty member who has distinguished her or himself through the development of new and innovative teaching methods, effectiveness in the curriculum and classroom, as well as commitment to enhancing student learning.

“I’m honored to receive this award and recognition from the university,” said Cangelosi. “Since my work focuses on the preparation of future Utah K-12 teachers, which intersects with social justice goals in a foundational way, this award means that the U cares about dismantling systemic oppression. There is nothing more systemic than K-12 education, and thus no more impactful space to invest one’s energy.”

In her approach to teaching, Cangelosi believes it's important for children to have math teachers who are skillfully trained to break the unhealthy and dangerous cycle of students who make value judgments about their self-worth based upon their achievement (or lack of) in math. “Issues of mathematical status and power between students in a math classroom need to be recognized and attended to by teachers so children don’t label themselves as “stupid” or, equally-dangerously, as “smart” relative to each other,” she said.

To overcome social divisions and stratifications within the classroom, Cangelosi believes teachers need to focus on creating productive, collaborative, and student-centered learning activities, implementing culturally relevant lessons, using multiple approaches to teaching math, and embracing unconventional approaches. Implementing these strategies require teachers to engage in challenging identity work, understanding the history of education in the U.S., embracing heterogeneous classrooms, and engaging in anti-bias and anti-racist training within mathematical contexts.

In her own teaching, Cangelosi draws heavily from the mainstream math education literature. For example, several of her students were personally affected from watching and reflecting upon Danny Martin's Taking a Knee in Mathematics Education talk from the 2018 annual conference of the National Council of Teachers of Mathematics.

Cangelosi’s teaching contributions include the following:

  • She taught a math lab class at Bryant Middle School for the 2019-2020 academic year to deepen productive collaborations between the U and local schools, thereby creating a seamless practicum space for undergraduate Math Teaching majors, while providing long-term outreach to the local community.
  • Inspired by Utah State University’s teaching practicum, in 2011 she established the current innovative structure of the Math 4095 course—including funding (often out of her own pocket) for mentor teachers, which resulted in onsite, fully-contained classrooms at local schools for University of Utah teaching majors.
  • During the pandemic, she created a sustainable and equitable virtual after-school tutoring program that allowed local high school students to meet with math undergraduates for homework support.
  • She created sanitized manipulatives kits to be distributed to her students for use in online synchronous lectures and labs, to help maintain the integrity of her hands-on collaborative Math 2000/4010/4020 classes during the COVID-19 pandemic.
  • She helped develop course curricula for Math 2000, Math 1010, and Math 4090/4095, introducing and modifying resources from her previous work as a secondary math teacher at The Urban School of San Francisco, bringing what are now mainstream practices to the University of Utah.
  • She has made numerous community, school-district-level, and Utah State Board of Education (USBE) contributions, such as diverse teacher recruitment, committees, and professional development.

“I love approaching old concepts in new, nontraditional ways, because we so often confound our understanding of concepts with the arbitrary conventions that we use to communicate them,” she said. “This often challenges student perceptions of classroom status and power in productive ways, often flipping the previously conditioned dynamic on its head and inviting students to rewrite their mathematical identities in a positive light.”

Cangelosi received her Bachelor of Science degree in Mathematics Education, as well as a Master’s of Statistics degree from Utah State University. She also has a post-baccalaureate degree in mathematics from Smith College. She joined the U’s Math Department in 2011.

 

by Michele Swaner - first published @ math.utah.edu

Sloan Research Fellow

LUISA WHITTAKER-BROOKS AWARDED PRESTIGIOUS SLOAN AWARD


Assistant Professor of Chemistry Luisa Whittaker-Brooks is one of the recipients of the prestigious 2021 Sloan Research Fellowship, given to researchers “whose creativity, innovation, and research accomplishments make them stand out as the next generation of scientific leaders.”

The awards are open to scholars in eight scientific and technical fields: chemistry, computational and evolutionary molecular biology, computer science, Earth system science, economics, mathematics, neuroscience and physics. Candidates must be nominated by their fellow scientists, and winners are selected by independent panels of senior scholars on the basis of a candidate’s research accomplishments, creativity and potential to become a leader in his or her field. More than 1000 researchers are nominated each year for 128 fellowship slots. Winners receive a two-year, $75,000 fellowship which can be spent to advance the fellow’s research.

Whittaker-Brooks, a 2007 Fulbright fellow, earned her doctorate from the State University of New York at Buffalo before a L’Oreal USA for Women in Science Postdoctoral fellowship at Princeton University. Among other awards, Whittaker-Brooks has received a Department of Energy Early Career Award, a Cottrell Research Scholarship, a Marion Milligan Mason Award for Women in the Chemical Sciences and was named one of C&EN’s Talented 12 in 2018.

“I was very excited as this award is a testament to all the great work that my students have accomplished throughout these years,” Whittaker-Brooks said. “I am happy to see that their endless creativity and research work ethics are highly recognized in the field.”

Her research studies the properties and fabrication processes of nanomaterials for potential applications in solar energy conversion, thermoelectrics, batteries and electronics. She and her research group are also testing hybrid concepts to simultaneously integrate multiple functions, such as a nanosystem that scavenges its own energy.

The Fellowship is funded by the Alfred P. Sloan Foundation, a not-for-profit dedicated to improving the welfare of all through the advancement of scientific knowledge. Founded in 1934 by industrialist Alfred P. Sloan Jr., the foundation disburses about $80 million in grants each year in four areas: for research in science, technology, engineering, mathematics and economics; initiatives to increase the quality and diversity of scientific institutions and the science workforce; projects to develop or leverage technology to empower research and efforts to enhance and deepen public engagement with science and scientists.

Since the first fellowships were awarded in 1955, 44 faculty from University of Utah have received a Sloan Research Fellowship.

 

first published @ chem.utah.edu

Cottrell Scholar

Gail Zasowski Named a Cottrell Scholar


Dr. Gail Zasowski, assistant professor of the Department of Physics & Astronomy, has been named a 2021 Cottrell Scholar. The Cottrell Scholar program, run by the Research Corporation for Science Advancement, honors early-career faculty members for the quality and innovation of not only their research programs but also their educational activities and their academic leadership. Each year, scholars are selected from a pool of candidates based on their research, education, leadership accomplishments, and proposed future work, as evaluated by panels of external experts.

"I'm honored to be on this list of amazing researchers,” said Zasowski. “This award will allow my group and me to try out a lot of very cool ideas, and I'm excited to be part of the really unique Cottrell Scholar community!"

Jordan Gerton, director of the Center for Science and Mathematics Education at the U and associate professor in the Physics Department, is a 2007 Cottrell Scholar. He was the keynote speaker at last year’s online annual Cottrell Scholar Conference, where he urged the “vibrant collaborative community of Cottrell Scholars to embrace their role as agents of change at their institutions.”

Zasowski, who joined the university in 2017, is an astronomer whose research focuses on understanding how galaxies produce and redistribute the heavy elements that shape the Universe and enable life in it. The 99.5% of Earth’s mass that is not made of hydrogen was actually forged in generations of stars over billions of years. This same “stardust” is responsible for most of what we observe in the Universe: from super-clusters of galaxies to stars and planets in our own galaxy. In order to understand the evolution of the Universe, we have to understand just how it has been enriched in the heavier elements (like carbon, nitrogen, and oxygen) by the stars and gas that reside inside galaxies.

"My research," said Zasowski, "takes advantage of our unique position within our own Milky Way galaxy to use the chemistry and ages of its stars, and of galaxies whose stars and gas share a similar history, to study galaxy evolution on scales that are too small to resolve throughout most of the Universe." Using a wide range of datasets, she and her group explore how and when the Milky Way's own stars enriched its interstellar gas, and how to best use the Milky Way to understand other similar galaxies.

Dr. Zasowski also serves as the spokesperson for the Sloan Digital Sky Survey's (SDSS) current generation, where she works to ensure a smooth, transparent, and inclusive functioning of the massive international collaboration of astronomers and engineers. Within the Physics Department, she is currently Chair of the Ombuds Committee and is looking forward to working with students, staff, and faculty on a student-mentoring initiative.

 

by Michele Swaner - first published @ physics.utah.edu

Carsten Rott

Carsten Rott


Professor Carsten Rott, who will join the Department of Physics & Astronomy in early 2021, has been appointed to the Jack W. Keuffel Memorial Chair, effective January 1, 2021. Rott will hold the chair through December 2025.

“It’s such a great honor to be appointed, and I’m looking forward to my arrival at the U to begin my work,” he said.

The Jack W. Keuffel Memorial Chair in Physics & Astronomy was established to honor and continue the work the late Jack W. Keuffel, a professor and pioneer in cosmic ray research at the U from 1960-1974.

More About Rott
For as long as he can remember, Rott has been fascinated by the night sky, the stars, and the planets. As a child growing up in Germany, he could see the Orion nebula, the Andromeda galaxy, and star clusters. He wondered what these objects were and what else was in the night sky waiting to be discovered.

He combined his love of astronomy with learning computer programing and was fascinated by the ability to write computer programs to model biological systems, fluid dynamics, and astrophysics. By comparing the outcomes of his simulations, he could check to see if his intuition was correct or if he got the physics right, which was invaluable in training his logical thinking skills. “As a high school student, I spent many months trying to understand why my simulations of rotating galaxies would not maintain spiral arm structures or why my models of stars weren’t stable,” he said. Struggling with such questions made him want to understand the underlying phenomena.

Rott studied physics as an undergraduate at the Universität Hannover and went on to receive a Ph.D. from Purdue University in 2004. “Becoming a physicist has at times been a challenge, but it has broadened my horizons so much, and I’m extremely happy I decided to pursue a career in science,” he said.

High-Energy Neutrinos
His research is on understanding the origins of high energy neutrinos, which are tiny, subatomic particles similar to electrons, but with no electrical charge and a very tiny mass. Neutrinos are abundant in the universe but difficult to detect because they rarely interact with matter. These particles originate from distant regions of the universe and can arrive on the Earth more or less unhindered, providing scientists with information about distant galaxies. High-energy neutrinos are associated with extreme cosmic events, such as exploding stars, gamma ray bursts, outflows from supermassive black holes, and neutron stars, and studying them is regarded as a key to identifying and understanding cosmic phenomena.

“One of my main research focuses is to look for signatures of dark matter with high-energy neutrinos. By studying them, we can explore energy scales far beyond the reach of particle accelerators on Earth,” he said.

While most of his work is considered pure research and doesn’t have immediate applications, Rott did figure out a new way to use neutrino oscillations to study the Earth’s interior composition. He spent several months at the Earthquake Research Institute at the University of Tokyo to collaborate with researchers on the topic, and he hopes this new method can help scientists better understand and predict earthquakes.

IceCube Neutrino Telescope
Rott has been a member of the IceCube Neutrino Telescope since the start of the construction of the detector in 2005. IceCube is the world’s largest neutrino detector designed to observe the cosmos from deep within the South Pole ice. The telescope uses an array of more than 5,000 optical sensor modules to detect Cherenkov light, which occurs when neutrinos interact in the ultra-pure Antarctic ice. When a neutrino interaction occurs, a faint light flash is produced, allowing them to be detected.

The IceCube Neutrino Observatory at NSF's Amundsen-Scott South Pole Station Credit: Mike Lucibella, Antarctic Sun

Approximately 300 physicists from 53 institutions in 12 countries are part of the IceCube Collaboration, which tries to solve some of the most fundamental questions of our time, such as the origin of cosmic rays, nature of dark matter, and the properties of neutrinos. The science spectrum covered by the IceCube Neutrino Observatory is very broad, ranging from cosmic ray physics, particle physics, and geophysics to astroparticle physics.

The team of scientists has already achieved some amazing scientific breakthroughs with this telescope. For example, they discovered a diffuse astrophysical neutrino flux in 2014 and recently achieved the first step in identifying the sources of astrophysical neutrinos associated with a highly luminous blazar, which was discovered in 2018. A blazar is an active galaxy that contains a supermassive black hole at its center, with an outflow jet pointed in the direction of the Earth. Over the next years, the team looks forward to making more discoveries by observing the universe in fundamentally new ways.

Life in Korea
Before joining the U, Rott was invited to Korea to begin a tenure-track faculty position at Sungkyunkwan University (SKKU). He took the opportunity to build an astroparticle physics program at one of the major research hubs in Asia. “I was excited to be part of a university that had the vision and determination to become a world-leading university, and I was able to build one of the largest astroparticle physics efforts in Asia, while accomplishing many of my research objectives,” he said.

He enjoys Korean culture and life in Korea, which is very practical and straightforward. “In Korea, people like to get things done fast,” he said. “It’s great to get rapid feedback, for example, on a proposal. You know quickly if your proposal is funded or not.” Being based in Korea has allowed him to collaborate more closely on other projects, including the COSINE-100 dark matter experiment in Korea and the JSNS2 sterile neutrino search and Hyper-Kamiokande neutrino program in Japan. He plans to spearhead initiatives to establish stronger ties between the University of Utah and leading universities in Asia and Korea.

Future Research
Currently, the IceCube team is in the middle of preparing an upgrade to the IceCube Neutrino Telescope. This new telescope will be installed within two years in Antarctica. For the IceCube upgrade, Professor Rott’s team has designed a more accurate camera-based calibration system for the Antarctic ice. Improved calibration will be applied to data collected over the past decade, improving the angular and spatial resolution of detected astrophysical neutrino events.

“The origin of high-energy neutrinos and any new phenomena associated with their production remains one of the biggest challenges of our time,” Rott said. “I’m extremely excited about correlating observations of high-energy neutrinos with other cosmic messengers. To establish any correlation, it’s essential that we can accurately point back to where neutrinos originated on the sky.”

Rott further explains, “We hope that the IceCube upgrade will be just the first step towards a much larger facility for multi-messenger science at the South Pole that combines optical and radio neutrino detection with a cosmic ray air shower array.”

 

by Michele Swaner - Physics & Astronomy News

 

Mission Unstoppable

 

Mission Unstoppable


Watch chemistry professor and mixed martial artist, Dr. Janis Louie, on CBC television's Mission Unstoppable. Dr. Louie uses exercise to show how science solutions play an important role in our bodies.

Born and raised in San Francisco.– Dr. Louie earned degrees and honed her chemistry skills at University of California, Los Angeles (UCLA), Yale University, and the California Institute of Technology (CalTech) before settling in Salt Lake City and joining the faculty in the University of Utah Department of Chemistry. Her research is centered on the discovery, development, and utilization of transition metal catalyzed reactions to overcome obstacles in traditional synthetic approaches.  Dr Louie's honors include the Cope Scholar Award, the Camille-Dreyfus Teacher Scholar Award, and the inaugural AAAS If/Then Ambassadorship.

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Karl Schwede

Fellow of the American Mathematical Society

Professor Karl Schwede in the U’s Department of Mathematics has been named a member of the 2021 Class of Fellows of the American Mathematical Society (AMS). The Society recognizes members who have made outstanding contributions to the creation, exposition, advancement, communication and utilization of mathematics. Schwede joins 14 other professors in the department who were previously named fellows by the AMS.

“It’s an honor to be named as a fellow of the American Mathematical Society, and I’m grateful for the recognition of my peers in the profession,” said Schwede.

Schwede received his undergraduate degree in mathematics from Whitman College and a Ph.D. in mathematics from the University of Washington. Math was originally third on his list of interests in college, but as he took more advanced math courses, his focus changed to mathematics.

Schwede does basic research in mathematics, studying algebra, geometry and particularly singularities. Much of his work is in the setting of modular arithmetic (also known as clock arithmetic), the same setting as much of our modern communication systems. For example, 5 hours after 10 is 3 or 5+10 = 3. “In this area, I have primarily studied singularities of geometric shapes by algebraic means,” said Schwede. Recently, he has begun working in mixed characteristic, which connects the positive characteristic of clock arithmetic with classical (5+10 = 15) geometric worlds.

He joined the U’s Math Department in 2014 as an associate professor and became a professor in 2018. Last spring, Schwede received a Simons Fellows Award in Mathematics from the Simons Foundation.

 

by Michelle Swaner, originally published in @theU

Christoph Boehme

Christoph Boehme

Dean Peter Trapa announced that Professor Christoph Boehme has accepted an offer to serve as chair of the Department of Physics & Astronomy, effective July 1, 2020.

"Professor Boehme is deeply knowledgable and committed to the research and educational missions of the department, and has served with distinction as interim chair this year," Trapa said. "Christoph has my full and unwavering confidence and support, as well as that of SVPAA Dan Reed, in leading the department forward."

Previously, Boehme served as associate chair of the department from 2010-2015. His research is focused on the exploration of spin-dependent electronic processes in condensed matter. The goal of his work is to develop sensitive coherent spin motion detection schemes for small spin ensembles that are needed for quantum computing and general materials research.

A child of the 1970s, Christoph was born and raised in Oppenau, a small town in southwest Germany, 30 miles east of the French city of Strasbourg. After obtaining an undergraduate degree in electrical engineering, and committing to 15 months of civil services caring for disabled people (chosen to avoid the military draft), he moved to Heidelberg, Germany in 1994 to study physics at the University of Heidelberg.

In 1997 Boehme won a Fulbright Student Scholarship which brought him to the United States for the first time, where he studied at North Carolina State University and met his wife Kristie. In 2000 Christoph and Kristie moved to Berlin, Germany where they lived for 5 years while he worked for the Hahn-Meitner Institut, a national laboratory. He finished his dissertation work as a graduate student of the University of Marburg in 2002 and spent an additional three years working as a postdoctoral researcher.

Christoph moved to Utah in 2006 to join the Department of Physics & Astronomy as an Assistant Professor. He was promoted into the rank of Associate Professor and awarded tenure in 2010, and promoted to the rank of Professor in 2013. Boehme received the U’s Distinguished Scholarly and Creative Research Award in 2018 for his contributions and scientific breakthroughs in electron spin physics and for his leadership in the field of spintronics.

 

Tino Nyawelo

Finding Refuge in Education

 

by Lisa Potter

On a balmy morning in May, 10 newly graduated high schoolers and their families filed into the Sorenson Arts & Education Complex on the University of Utah campus, greeting one another with excited chatter. The parents beamed with pride—many of their sons and daughters were the first in the family to attend college. Tino Nyawelo, assistant professor in the Department of Physics & Astronomy, smiled at the crowd, thinking of his own journey to the university against overwhelming odds. He cleared his throat and quickly won over the room.

Nyawelo was addressing the 2018 cohort of the Refugees Exploring the Foundations of Undergraduate Education In Science (REFUGES) Bridge Program. Based in the Center for Science and Math Education (CSME) at the U, the program aims to encourage underrepresented students to pursue science, technology, engineering, and math (STEM) education at the university level. The seven-week bridge gives freshmen the opportunity to earn credits toward their degree and provides the funding for their tuition, meals, and housing.

Many of the undergraduates are recruited from the REFUGES Afterschool Program, which has provided tutoring, STEM workshops, and college prep and financial aid classes to more than 200 underrepresented students in Salt Lake City. Nyawelo and community partners founded REFUGES to address the challenges faced by refugee youth, minorities, women, and economically disadvantaged students in Utah schools.

Nyawelo, whose family fled violence at the outbreak of the Sudanese civil war, drew on his own experiences to help build REFUGES from the ground up. He fell in love with physics as a high school student in South Sudan, then left the unrest in his country to pursue graduate studies in Europe. When Nyawelo joined the U faculty, he wanted to pay it forward.

Tino Nyawelo

“I see myself in those kids who are brought here as refugees, maybe haven’t had schooling in the camps, and have no English. It’s such a big transition,” explains Nyawelo, director of REFUGES and of diversity & recruitment for CSME. “I’m so passionate about this because I got a lot of help with my education along the way. Mentors and outreach programs in Sudan linked me to my PhD and post-doc studies, and I didn’t pay a penny for my education. Now, I want to give back.”

Bridging the Gap

During the summer bridge program, the students live in the dorms, go on excursions, and tour research labs together to build a strong sense of community. Through the Department of Mathematics and the U’s LEAP learning community, they take two courses that count toward general education credits. During the academic year, bridge students continue LEAP and engage in internship and research experiences. The small class sizes and supportive instructors and administrators help ease the transition.

“A freshman in college has so many things to keep track of, from general education requirements to registration deadlines, financial aid, etc. It can be pretty overwhelming,” says Allyson Rocks, academic coordinator for CSME, who runs logistics for the summer bridge. “The bridge program is a good way to get used to college life instead of getting it all dumped in one semester.”

Both the REFUGES summer bridge and after-school programs have been part of the CSME since 2013. The partnership was a perfect fit; one of the center’s core missions is to increase access to U STEM programming, says Jordan Gerton, director of the CSME. Yet REFUGES is unique in that it sets nontraditional students up for success as undergraduates long before they begin college applications.

“When students aren’t getting a lot of support at home—their family is working, doesn’t know English very well, doesn’t know the school system—they’re much more likely to fall behind, even if they have talent and determination,” says Gerton. “We can’t change the school system, so REFUGES went outside of school to provide that support to keep them moving forward.”

The summer bridge is funded by the Barbara L. Tanner Second Charitable Support Trust, and the CSME and the College of Science support the salaries of the REFUGES staff. The program’s tutors are mainly paid by grants, including from the Department of Workforce Services and the Sudanese Community in Utah. They also receive contributions from individual donors.

Being part of the U helps the students access an amazing team of undergraduate tutors, many of whom went through the REFUGES program themselves. “We hire those students because they look like the REFUGES students. In my experience, I was always unique in my field of theoretical physics. Most of the time, I was the only black person. That’s hard,” says Nyawelo. “Seeing someone who looks like them gives them confidence. They say, ‘If you made it to the U, and you came, like us, as a refugee, then we can make it, too.’ ”

The After-School Program

Like many bridge participants, Jolly Karungi, a member of the 2017 bridge cohort, has had REFUGES in her life for years. Karungi began the after-school program in 2015, a year after moving to Utah following time in a refugee camp in Uganda. Originally from the Democratic Republic of Congo, Karungi, her aunt, and her siblings lived in the camp for three years, then moved to Kampala, Uganda, for another three years before being resettled in Utah.

“When I came here, I didn’t speak any English. I didn’t understand what was going on,” she explains. “I had to catch up. This program helped me a lot.”

The after-school program provides homework tutoring three times per week and includes hands-on STEM workshops for grades 7 through 12. High schoolers take ACT prep courses and financial aid workshops. The program has become a family affair; Karungi’s three younger siblings are participating, and their older brother, Fiston Mwesige, couldn’t be prouder. “They have been through many, many things in the refugee camps. So, when they came here to a completely different system, they needed some guidance to find their way,” says Mwesige. “Now, they spend most of their time thinking about the future, what they can do, how they can help the community, and how they can make the world a better place.”

The years of hard work have already paid off—Karungi recently received a full-ride scholarship to the U from the Alumni Association, and she loved living on campus with her friends over the summer. REFUGES offers more than purely academic support. “People are not just helping you with math and science problems, they’re also helping you with your personal problems,” says Karungi, who is beginning her sophomore year this fall. “It’s the best thing about it. They really care about everyone.”

The REFUGES Afterschool Program helps nontraditional students at two locations: the U campus and the Salt Lake Center for Science Education. This year, all 10 REFUGES high school seniors from the U site were admitted to the U, and seven were offered full-ride scholarships to the U or Westminster College. In all, the group was also offered more than $98,000 in FAFSA scholarships. From the Salt Lake Center for Science Education, 17 seniors were accepted to the U, and the 25 students who completed FAFSA received more than $200,000 in scholarships.

Building Refuges

In 2016, more than 65 million people were forced to flee their homes worldwide, according to the United Nations Refugee Agency. Of those, nearly 22 million were considered refugees. Approximately 60,000 refugees live in Utah, the vast majority of whom live in Salt Lake County, according to the U’s Kem C. Gardner Policy Institute.

To Nyawelo, the numbers are more than just statistics—many of his friends have resettled in Utah, as well as his wife and her family. While pursing graduate studies in Europe, he flew to Salt Lake City frequently, moving officially in 2007 to join the U faculty.

“I knew a lot of refugees in Utah. Some of them were my classmates in South Sudan. I was lucky—I got a scholarship, I went to university. Some of them decided to leave because of a lot of unrest, and they ended up here in Utah. I felt like I was home,” says Nyawelo.

In 2009, he and other members of the refugee community began noticing high rates of school dropouts. After visiting homes, hosting town hall meetings, and organizing a youth summit, a pattern emerged; many refugee youth come to Utah after being in camps for years with little English and intermittent formal schooling. When they arrive here, the school system places them in a grade based on their age, leaving many feeling left behind.

The partners came up with the REFUGES program to help. After winning a grant from the Refugee Services Office, the program expanded to help other communities experiencing similar problems, such as immigrant populations and economically disadvantaged students. There is nothing comparable to REFUGES, explains Gerton, because both Nyawelo and the Utah refugee community are one of a kind.

“This would not be at all possible without Tino…. He built this with his partners from scratch,” says Gerton. “He comes from one of the key refugee communities on Earth, South Sudan. He also happens to be a scientist who also happens to really want to help the community.”

—Lisa Potter is a science writer for University Marketing & Communications.

AMS Fellow

U Professor and Chair Named Fellow of American Mathematical Society

Davar Khoshnevisan, professor and Chair of the Department of Mathematics, has been named a member of the 2020 Class of Fellows of the American Mathematical Society (AMS). The Society recognizes members who have made outstanding contributions to the creation, exposition, advancement, communication, and utilization of mathematics.

“I believe my selection as a Fellow is the fourteenth induction within the Department of Mathematics at the U, so this is as much a statement about my work as it is about the terrific intellectual environment within the department. It is a big honor to be a part of our program at the U and to help advance our field. The American Mathematical Society plays a crucial role in the development of mathematics worldwide. I am proud that my colleagues and I contribute to this important endeavor.” - Davar Khoshnevisan

 

Khoshnevisan remembers being taught calculus by an uncle when he was very young. As part of the lesson, his uncle would weave in stories about mathematics and mathematicians—famous ones from the history of mathematics, as well as those his uncle had met in his own studies of the subject. “I knew then that mathematics would not be just a job but instead a lifelong pursuit of truth and discovery,” said Khoshnevisan. “I still try to aim for this in my research today.”

Khoshnevisan originally trained to be a researcher in mathematical statistics and probability theory. During the past 10-15 years, his work has largely been in “stochastic analysis,” an area that lies on the intersection of probability theory and function theory. Science and math historians agree that probability theory was born, probably after the 8th century, as a way to study what we now called “cryptography.” Probability theory resurfaced again when mathematicians in the 16th and 17th centuries began analyzing "games of chance."

The mathematical foundations of probability evolved much later in the early decades of the 20th century, which led to an explosion of ideas and to the introduction of new areas of intellectual activity in which “chance” plays a central role. In turn, this has opened up challenging problems in mathematics and created an entirely new paradigm of “stochastic models” that lies at the heart of many science and engineering models today. During the past decade, Khoshnevisan’s work has revolved around developing mathematical ideas and techniques that aid the rigorous analysis of complex systems in science and engineering.

Khoshnevisan received a Ph.D. from University of California, Berkeley, in statistics in 1989. He joined the faculty at the Massachusetts Institute of Technology for a year and the University of Washington for three years before moving to Utah and the U in 1993 as an assistant professor in mathematics. He has been an honorary fellow at the University of Wisconsin-Madison, a visiting member of the Mathematics Research Institute at Berkeley, as well as the Kavli Institute of Theoretical Physics at the University of California, Santa Barbara. He was a Simons Visiting Professor at the Mathematical Research Institute of Oberwolfach in Germany and an invited professor at École Polytechnique Fédérale de Lausanne, the University of Paris, and the University of Lille. He is a 2015 Fellow of the Institute of Mathematical Statistics (IMS) and was an IMS Medallion Lecturer in 2018.

See the original story @ math.utah.edu

Dean Peter Trapa

University of Utah Senior Vice President for Academic Affairs Dan Reed announced that Peter Trapa has accepted an offer to serve as the next dean of the College of Science.

Trapa is currently chair of the university’s Department of Physics & Astronomy and previously served as the chair of the Department of Mathematics and special assistant to the dean of the College of Science. Trapa also was the inaugural presidential fellow in 2016-17 under former U President David Pershing. He was named a fellow of the American Mathematical Society in 2019.

“Trapa is regarded as an excellent and innovative administrator, a strong advocate for students, staff and faculty, and an outstanding scholar,” Reed said. “He is a great communicator who is able to develop consensus and cultivate a positive culture. His deep understanding of the university and the state will serve the College of Science well as it continues to rise among its peers.”

The College of Science consists of three departments—chemistry, mathematics and physics and astronomy—and the School of Biological Sciences. It also includes several interdisciplinary centers. It has annual research expenditures of approximately $40 million.

Following completion of the appointment approval process, Trapa will assume his position on July 1, 2019.

“I'm honored to be named the next dean of the College of Science,” Trapa said. “It's an exciting time for the college, and I look forward to working to advance its world-class research reputation and further propel its central educational mission both within the university and the state of Utah.”

Trapa joined the U’s Department of Mathematics in 2001; he was named chair of the department in 2011, serving in that position until 2017. He served as special assistant to Henry White, current dean of the College of Science, in 2017-2018.

He has served as chair of the Department of Physics and Astronomy since 2018, where he has overseen development of a model graduate program, reorganized departmental leadership and staff and implemented a strategy to recruit exceptional and diverse faculty.

Trapa also has played a key role in state-level discussions about math courses, requirements, assessments and the need for strong high school curriculums that prepare students for college course work. He served on the state’s Math Task Force, the Standards Review Steering Committee and as a director and member of the National Association of Math Circles, among others service work.

Trapa’s main research interest is representation theory, a kind of mathematical quantification of the symmetries that arise in physical theories. He has published extensively, and has contributed to solutions of the most outstanding problems in his discipline. Trapa is currently managing editor of the American Mathematical Society’s journal Representation Theory.

Trapa received undergraduate degrees in mathematics and integrated science from Northwestern University and a doctoral degree in mathematics from the Massachusetts Institute of Technology. He did postdoctoral work at Harvard University and the Institute for Advanced Study at Princeton before joining the U.