Archived news and event highlights from the Brown School of Engineering.
Monday, September 27, 2010
Rainwater for Humanity establishes project in Kerala, India
Tuesday, September 7, 2010
Brown Engineering committed to Social Entrepreneurship
Barrett Hazeltine's recent interview with the local Providence news highlights his long standing commitment to Brown and social entrepreneurship.
Josef Mittlemann was also recently recognized for his exemplary leadership in the field of social entrepreneurship education by Ashoka University. His syllabus for "Engineers of the Future" was selected from over 50 syllabi as a "best practice" for the field. Ashoka U organized a panel of reviewers (including funders, practitioners, thought leaders, professors and students) who highlight trends in social entrepreneurship teaching. We are proud of Josef Mittlemann's commitment to social entrepreneurship in a disciplinary context within engineering.
Josef Mittlemann was also recently recognized for his exemplary leadership in the field of social entrepreneurship education by Ashoka University. His syllabus for "Engineers of the Future" was selected from over 50 syllabi as a "best practice" for the field. Ashoka U organized a panel of reviewers (including funders, practitioners, thought leaders, professors and students) who highlight trends in social entrepreneurship teaching. We are proud of Josef Mittlemann's commitment to social entrepreneurship in a disciplinary context within engineering.
Monday, August 23, 2010
International Symposium on Low Power Electronics and Design awards Reda's group with best paper
Professor Sherief Reda's research group's paper titled Post-Silicon Power Characterization Using Thermal Infrared Emissions received the best paper award at the International Symposium on Low Power Electronics and Design (ISLPED). The paper is authored by Professor Reda, and Ph.D. students A. Nowroz and R. Cochran. This year ISLPED received 203 papers for evaluation. After the double-blind review process, 46 papers were accepted for full presentation. From the 46 papers, only 5 were nominated as best paper candidates, and finally only 2 papers were selected for the best paper awards. The competition was narrowed down between papers from Brown, Cornell, and RPI. The article is available at http://scale.engin.brown.edu/ pubs/islped10.pdf. The conference web page is http://www.islped.org
Thursday, August 19, 2010
CIMIT awards BrainGate research team member, W. Malik
Wasim Malik, PhD, a member of the BrainGate research team (led by Professors Leigh Hochberg and John Donoghue - see www.braingate2.org for details) has been awarded the Center for Integration of Medicine and Innovative Technology (CIMIT) Miles and Eleanor Shore Fellowship for 2011. This is considered a career development award to enable interdisciplinary contributions by an individual who represents the CIMIT values of academic excellence. Career development awards recognize individuals who seek careers focused on near term impact on patient care, and whose philosophy embraces innovation and multidisciplinary collaboration.
Dr. Malik will receive up to $50,000 to undertake research in the highly interdisciplinary field of neural prosthetics which encompasses neuroscience, clinical research, electrical engineering, mathematics, and statistics. He will focus on designing a new generation of brain-machine interfaces to restore function in patients with limb loss or paralysis. He intends to develop robust neural prosthetics with considerably simpler signal processing which will have a high potential for transition from the laboratory to the clinic. Dr. Malik’s mentor, Emery Brown, will supervise his training and research activities in neuromotor disability. To learn more about Dr. Malik's background, visit his website.
Dr. Malik will receive up to $50,000 to undertake research in the highly interdisciplinary field of neural prosthetics which encompasses neuroscience, clinical research, electrical engineering, mathematics, and statistics. He will focus on designing a new generation of brain-machine interfaces to restore function in patients with limb loss or paralysis. He intends to develop robust neural prosthetics with considerably simpler signal processing which will have a high potential for transition from the laboratory to the clinic. Dr. Malik’s mentor, Emery Brown, will supervise his training and research activities in neuromotor disability. To learn more about Dr. Malik's background, visit his website.
Tuesday, August 17, 2010
A. Richard Newton Graduate Scholarship awarded to Cochran and Nowroz
Pictured left to right: Cochran, DAC Official, Reda, and Nowroz
2010 Recipients
Students: Ryan J. Cochran, Abdullah N. Nowroz - Brown Univ., Providence, RI
Project: Adaptive Hot Spot Cooling for Many-Core Processors
Advisor: Sherief Reda – Brown Univ., Providence, RI
Biography information:
Ryan J. Cochran first came to Brown University from West Chester, PA as an undergraduate student in engineering, and graduated with Honors in the spring of 2008 in Electrical Engineering. He returned to Brown as a M.Sc. student in the fall of 2008, but has since decided to continue his studies as a Ph.D. student in Electrical Engineering at Brown. Ryan's principal research areas include thermal modeling, management, and tool development for current and future nano-scale integrated circuit technologies. Since 2009, Ryan has 4 refereed conference papers in his research area, including a best paper nomination in ISLPED 2010.
Abdullah Nazma Nowroz was born in Newcastle Upon Tyne, United Kingdom and grew up in Bangladesh. She graduated Summa Cum Laude in Electrical Engineering from Boston University in 2006. In 2007, she decided to come back to academia after working in Bangladesh for one year and completed her Masters in Electrical Engineering VLSI from University of Southern California. At present, she is working in the SCALE lab, where she works on designing many innovative techniques towards effective management of temperature, power, and performance of many-core processors. Projects include devising thermal sensor allocation techniques and signal reconstruction techniques that fully characterize the thermal status of the processor using limited number of measurements from the thermal sensors. Her research also includes techniques that provide detailed post-silicon power characterization using thermal emissions from the backside of silicon die using state-of-the-art infrared camera.
Friday, August 6, 2010
Taylor selected for Veterans Affairs Pre-doctoral Fellowship
Erik Taylor (Biomedical Engineering Graduate Student) was select for the 2010-2011 Veterans Affairs Pre-doctoral Fellowship based on his research to develop anti-bacterial implants for injured soldiers. His clinical mentor is Roy Aaron, Director of the VA Center for Restorative and Regenerative Medicine, and Professor Thomas Webster is his research/academic advisor.
A profile of Erik Taylor:
Growing up roaming the Texan prairies instilled in Erik an ambition to study humanity’s ability to not only co-exist with nature, but to flourish in accordance with Earth’s natural attributes. While one would be hard-pressed to find cattle navigating the roads of a contemporary American metropolis, micro-biotic life flourishes on subways, in apartment complexes, and even in the most allegedly sterile of environments - the modern hospital. Erik's research is geared towards designing treatments for antibiotic resistant biofilms on medical devices. He uses nanotechnology to create novel interfaces promoting the natural elimination of biofilm.
Erik received his Bachelor of Science from the Department of Biomedical Engineering at the University of Texas at Austin. His senior design project was “An arthroscopic tool for the delivery of a thermo-sensitive hydrogel into damaged knee cartilage.” Erik’s research excellence wrought him an Office of the Vice President Undergraduate Research Fellowship for his work with Reese Endowed Professor Miguel Jose Yacaman in the Department of Chemical Engineering.
Erik is currently a graduate student working towards his Ph.D. in Biomedical Engineering at Brown University. He is advised by the Graduate Director of the Center for Biomedical Engineering, Associate Professor Thomas J. Webster. Through Prof. Webster’s guidance and expertise, Erik is working on his thesis entitled “Superparamagnetic Iron Oxide Nanoparticles (SPION) for the Treatment of Implant Infection.” The Society for Biomaterials recently bestowed upon Erik the Student Travel Achievement Recognition (STAR) graduate student award one of its most prestigious graduate student honors for his exemplary work in nanotechnology. He was also a National Science Foundation Graduate K-12 teaching fellow for two years (the maximum duration allowed for the fellowship program) where he taught science to grades 3-6 at Martin Luther King Jr. Elementary School in Providence, Rhode Island.
A profile of Erik Taylor:
Growing up roaming the Texan prairies instilled in Erik an ambition to study humanity’s ability to not only co-exist with nature, but to flourish in accordance with Earth’s natural attributes. While one would be hard-pressed to find cattle navigating the roads of a contemporary American metropolis, micro-biotic life flourishes on subways, in apartment complexes, and even in the most allegedly sterile of environments - the modern hospital. Erik's research is geared towards designing treatments for antibiotic resistant biofilms on medical devices. He uses nanotechnology to create novel interfaces promoting the natural elimination of biofilm.
Erik received his Bachelor of Science from the Department of Biomedical Engineering at the University of Texas at Austin. His senior design project was “An arthroscopic tool for the delivery of a thermo-sensitive hydrogel into damaged knee cartilage.” Erik’s research excellence wrought him an Office of the Vice President Undergraduate Research Fellowship for his work with Reese Endowed Professor Miguel Jose Yacaman in the Department of Chemical Engineering.
Erik is currently a graduate student working towards his Ph.D. in Biomedical Engineering at Brown University. He is advised by the Graduate Director of the Center for Biomedical Engineering, Associate Professor Thomas J. Webster. Through Prof. Webster’s guidance and expertise, Erik is working on his thesis entitled “Superparamagnetic Iron Oxide Nanoparticles (SPION) for the Treatment of Implant Infection.” The Society for Biomaterials recently bestowed upon Erik the Student Travel Achievement Recognition (STAR) graduate student award one of its most prestigious graduate student honors for his exemplary work in nanotechnology. He was also a National Science Foundation Graduate K-12 teaching fellow for two years (the maximum duration allowed for the fellowship program) where he taught science to grades 3-6 at Martin Luther King Jr. Elementary School in Providence, Rhode Island.
Tuesday, August 3, 2010
Yang earns First Place Award from Sigma Xi Northeast Regional Conference
Lei Yang (Ph.D. candidate co-supervised by Professors Brian Sheldon and Thomas Webster) received the First Place Undergraduate and Graduate Student Poster Award at the Sigma Xi Northeast Regional Conference in New Haven, CT for his contribution: "The Role of Substrate Topography in Mediating Osteoblast Functions: Experiments and Modeling."
Here is a short interview with Lei Yang:
How does participating in conferences such as Sigma Xi impact your Brown Engineering experience?
(Lei) Sigma Xi is one of the oldest and most famed scientific societies, attending this conference is not only a honor but also a great opportunity to meet the top students and researchers in the New England region. It's also a good opportunity to showcase the cutting-edge research led by Brown Engineering faculty and students.
What is the impact of your research?
(Lei) It was the best poster presentation during a conference that I have ever attended so far, because I obtained so many new ideas and comments related to my project. The conference was very well organized, and each participant had many chances to talk to most of the professors and students. I received a lot useful comments on the methodology and techniques I used for my study, and surprisingly, many of them were from the people outside of my research field. So I think I also benefited from the multi-disciplinary atmosphere of the conference.
What degree are you seeking and when will you graduate? What do you hope to do with your degree?
(Lei) I am seeking PhD in Engineering and will graduate in May 2011. I want to become faculty in Materials Science after my PhD.
Here is a short interview with Lei Yang:
How does participating in conferences such as Sigma Xi impact your Brown Engineering experience?
(Lei) Sigma Xi is one of the oldest and most famed scientific societies, attending this conference is not only a honor but also a great opportunity to meet the top students and researchers in the New England region. It's also a good opportunity to showcase the cutting-edge research led by Brown Engineering faculty and students.
What is the impact of your research?
(Lei) It was the best poster presentation during a conference that I have ever attended so far, because I obtained so many new ideas and comments related to my project. The conference was very well organized, and each participant had many chances to talk to most of the professors and students. I received a lot useful comments on the methodology and techniques I used for my study, and surprisingly, many of them were from the people outside of my research field. So I think I also benefited from the multi-disciplinary atmosphere of the conference.
What degree are you seeking and when will you graduate? What do you hope to do with your degree?
(Lei) I am seeking PhD in Engineering and will graduate in May 2011. I want to become faculty in Materials Science after my PhD.
Wednesday, July 21, 2010
Video: Dr. Thomas Webster - Orthopedic Biofilms
Professor Thomas Webster appeared in a documentary film on implant infection called "Getting Back on Their Feet II" by Richard Longland which was just released.
The film was produced by the Arthroplasty Patient Foundation (Richard Longland, the founder) and explores biofilms and their contribution to medical device failures and related chronic health issues.
The film was produced by the Arthroplasty Patient Foundation (Richard Longland, the founder) and explores biofilms and their contribution to medical device failures and related chronic health issues.
Tuesday, June 29, 2010
Prof. Sheldon and Webster appear in cover story
Brian Sheldon, Thomas Webster, and Lei Yang appeared as the cover story for the American Ceramic Society Bulletin. It is entitled " Nanophase Ceramics for Improved Drug Delivery: Current Opportunities and Challenges."After more than a decade of research and development, nanotechnology has reshaped the traditional thinking (or lack thereof) of using ceramics for drug delivery. Although drug delivery has been a polymer- dominated field, the blossoming of nanotechnology means that ceramic materials are now showing much promise for numerous drug delivery applications.
Typically, nanotechnology is defined as the use of materials and systems whose structures and components exhibit novel and significantly changed properties when control is gained at the nanoscale (specifically, <100 nm or <10–7 m).1 For ceramics, this means fabricating ceramics whose grain or particle
sizes are within the range of 1 nm to 100 nm).
Nanophase ceramics already have been widely used in a broad spectrum of biomedical applications, and now drug delivery is one of the fastest emerging and developing arenas for nanoceramics, drawing increasing attention over the past few years.
Read more of the story at this link:
http://ceramics.org/wp-content/uploads/2010/03/03_10_cover-story.pdf
Thursday, June 3, 2010
Commencement 2010 Photos
We enjoyed the opportunity to celebrate the Commencement and Reunion 2010 with returning Engineering Alumni at our reception on Friday afternoon. Rod Clifton shared news that just hours earlier the Corporation had approved the School of Engineering (Effective July 1, 2010). We also had an opportunity to share a sneak peak of the Glutton for Punishment production of our Edible Car Competition last fall.
More photos available here - http://www.flickr.com/photos/brownengin/sets/72157624065916187/
The 2010 Program in Innovation Management and Entrepreneurship graduates celebrated with the faculty and their families at the Saturday morning brunch.
More photos available here - http://www.flickr.com/photos/brownengin/sets/72157624190276882/
Then we had the opportunity to welcome a new Brown Engineering Alumni Medalist (BEAM), Ares Rosakis, PhD to our distinguished list of graduates.
Pictured above (left to right): Rod Clifton, Ares Rosakis, Ben Freund, and Wei Yang
More photos available here - http://www.flickr.com/photos/brownengin/sets/72157624065910123/
The weekend was capped off as we distributed 87 engineering diplomas at our undergraduate ceremony.
More photos available here - http://www.flickr.com/photos/brownengin/sets/72157624190247360/
Friday, May 28, 2010
Brown University establishes School of Engineering
Brown University has transformed its Division of Engineering into the Brown School of Engineering.
PROVIDENCE, R.I. [Brown University] - The Corporation of Brown University has approved transformation of the University's Division of Engineering into the Brown School of Engineering, effective July 1. The Corporation took that action at its spring business meeting Friday, May 28, 2010. The University's faculty had voted its approval of the proposal on April 6.
"Today's monumental scientific and societal challenges depend greatly upon engineering know-how for advances in biology, medicine, clean energy and nanotechnology," Brown President Ruth J. Simmons said. "The Corporation's approval of a School of Engineering underscores our commitment to maintain and enhance the engineering curriculum and research activities that attract the brightest students and the highest caliber faculty."
Many recent studies, including a 2008 report from the National Academy of Sciences, note that a comprehensive and coordinated effort is urgently needed to bolster the nation's competitiveness and pre-eminence in the physical sciences. A school of engineering will support the University's continued recruitment of outstanding faculty and students and its strategy of building on existing strengths in energy and the environment, biomedical engineering, nanotechnology, photonics, solid mechanics, and the mechanical behavior of materials.
Developing engineering as a school has been a work in progress for more than a decade. The idea received strong support from President Simmons, whose Plan for Academic Enrichment has expanded research and faculty across the University. A team of engineering faculty led by Rodney Clifton, the Rush C. Hawkins University Professor of Engineering and interim dean of engineering, presented a School of Engineering proposal to the Provost's office in December 2008. Clifton will continue as interim dean until a founding dean is named.
"We are grateful to the administration, the faculty and the Corporation for supporting our proposal," Clifton said. "By establishing a School, Brown has taken a big step toward raising its historic and renowned engineering program to a new level. This action ensures that Brown engineering will play a significant role in addressing the science and technology challenges that our society faces and will remain competitive nationally and internationally."
"The University community is grateful to Dean Clifton for shepherding the School of Engineering proposal to its successful vote today," Brown Provost David Kertzer said.
The School of Engineering expects to increase its share of external funding for research through faculty growth in areas of national importance and by expanding collaborative efforts with colleagues throughout the University.
"The federal funding agencies are increasingly interested in applied and translational research, the type of scientific investigation that helps solve societal problems," said Clyde Briant, vice president for research and professor of engineering. "Having a strong engineering school at Brown will undoubtedly help our faculty and students compete effectively for federal research dollars and contribute to solving challenging problems."
Engineering is the No. 1 area of academic interest expressed by members of the Class of 2014, who will matriculate this fall. The Division of Engineering currently has 437 undergraduate students and 178 graduate students, taught by 40 full-time, tenure-track faculty. Engineering is one of the most popular concentrations at Brown, with 140 students in the Class of 2013 pursuing it as a concentration.
Established in 1847, the undergraduate engineering program at the University is the oldest in the Ivy League and the third oldest civilian engineering program in the country, preceded only by Rensselaer Polytechnic Institute (1824) and Union College (1845). In 1916, the departments of civil, mechanical, and electrical engineering were merged into one Division of Engineering with a common core of basic engineering courses. This model has been preserved, ensuring that faculty and students engage in an integrated, interdisciplinary approach to engineering.
[Photos show students working on final semester projects including a solar cell and light powered car]
PROVIDENCE, R.I. [Brown University] - The Corporation of Brown University has approved transformation of the University's Division of Engineering into the Brown School of Engineering, effective July 1. The Corporation took that action at its spring business meeting Friday, May 28, 2010. The University's faculty had voted its approval of the proposal on April 6."Today's monumental scientific and societal challenges depend greatly upon engineering know-how for advances in biology, medicine, clean energy and nanotechnology," Brown President Ruth J. Simmons said. "The Corporation's approval of a School of Engineering underscores our commitment to maintain and enhance the engineering curriculum and research activities that attract the brightest students and the highest caliber faculty."
Many recent studies, including a 2008 report from the National Academy of Sciences, note that a comprehensive and coordinated effort is urgently needed to bolster the nation's competitiveness and pre-eminence in the physical sciences. A school of engineering will support the University's continued recruitment of outstanding faculty and students and its strategy of building on existing strengths in energy and the environment, biomedical engineering, nanotechnology, photonics, solid mechanics, and the mechanical behavior of materials.
Developing engineering as a school has been a work in progress for more than a decade. The idea received strong support from President Simmons, whose Plan for Academic Enrichment has expanded research and faculty across the University. A team of engineering faculty led by Rodney Clifton, the Rush C. Hawkins University Professor of Engineering and interim dean of engineering, presented a School of Engineering proposal to the Provost's office in December 2008. Clifton will continue as interim dean until a founding dean is named.
"We are grateful to the administration, the faculty and the Corporation for supporting our proposal," Clifton said. "By establishing a School, Brown has taken a big step toward raising its historic and renowned engineering program to a new level. This action ensures that Brown engineering will play a significant role in addressing the science and technology challenges that our society faces and will remain competitive nationally and internationally."
"The University community is grateful to Dean Clifton for shepherding the School of Engineering proposal to its successful vote today," Brown Provost David Kertzer said.
The School of Engineering expects to increase its share of external funding for research through faculty growth in areas of national importance and by expanding collaborative efforts with colleagues throughout the University.
"The federal funding agencies are increasingly interested in applied and translational research, the type of scientific investigation that helps solve societal problems," said Clyde Briant, vice president for research and professor of engineering. "Having a strong engineering school at Brown will undoubtedly help our faculty and students compete effectively for federal research dollars and contribute to solving challenging problems."
Engineering is the No. 1 area of academic interest expressed by members of the Class of 2014, who will matriculate this fall. The Division of Engineering currently has 437 undergraduate students and 178 graduate students, taught by 40 full-time, tenure-track faculty. Engineering is one of the most popular concentrations at Brown, with 140 students in the Class of 2013 pursuing it as a concentration.
Established in 1847, the undergraduate engineering program at the University is the oldest in the Ivy League and the third oldest civilian engineering program in the country, preceded only by Rensselaer Polytechnic Institute (1824) and Union College (1845). In 1916, the departments of civil, mechanical, and electrical engineering were merged into one Division of Engineering with a common core of basic engineering courses. This model has been preserved, ensuring that faculty and students engage in an integrated, interdisciplinary approach to engineering.
[Photos show students working on final semester projects including a solar cell and light powered car]
Wednesday, May 19, 2010
Chemical Engineering undergraduate student Aminy Ostfeld honored with a Tau Beta Pi Scholarship
The Tau Beta Pi Fellowship Board announced the selection of 102 Scholars from 389 applicants for senior- year study in the 2010-11 academic year. Scholarships were awarded to members on the competitive bases of scholarship, campus leadership, and service, and promise of contributions to the engineering profession, with consideration given to economic need and academic commitment. We are pleased that Brown Chemical Engineering student, Aminy Ostfeld was honored with one of these scholarships.
Here is a biography statement written by Aminy:
Since I was young, I have been passionate about environmental sustainability, and I have hoped to devote my life's work to solving some of the many environmental problems plaguing our world today. After coming to college I realized I wanted to study renewable energy generation, and since knowledge of both chemistry and engineering principles is essential for research in this field, I decided to concentrate in chemical engineering. I have recently begun a research project to improve the efficiency of photovoltaic cells, a subject I find so fun and important that I plan to continue working on it for the foreseeable future. Through Brown's engineering program, I have already learned skills useful for this area of research. I'm sure these skills, and those I learn in the remainder of my Brown experience, will come in handy for graduate study and my career.
I am immensely grateful for the opportunity to study engineering at Brown and participate in Tau Beta Pi. Membership has helped me share my excitement about engineering and research with others, through outreach presentations at local high schools as well as interaction with other Brown engineering students. I believe the organization's support, including this scholarship, will help me realize my dream of becoming a successful engineer.
Here is a biography statement written by Aminy:
Since I was young, I have been passionate about environmental sustainability, and I have hoped to devote my life's work to solving some of the many environmental problems plaguing our world today. After coming to college I realized I wanted to study renewable energy generation, and since knowledge of both chemistry and engineering principles is essential for research in this field, I decided to concentrate in chemical engineering. I have recently begun a research project to improve the efficiency of photovoltaic cells, a subject I find so fun and important that I plan to continue working on it for the foreseeable future. Through Brown's engineering program, I have already learned skills useful for this area of research. I'm sure these skills, and those I learn in the remainder of my Brown experience, will come in handy for graduate study and my career.
I am immensely grateful for the opportunity to study engineering at Brown and participate in Tau Beta Pi. Membership has helped me share my excitement about engineering and research with others, through outreach presentations at local high schools as well as interaction with other Brown engineering students. I believe the organization's support, including this scholarship, will help me realize my dream of becoming a successful engineer.
Monday, May 17, 2010
FSAE car team places 38th in Michigan
The Formula SAE team recently returned from Michigan where they competed in the annual May race. FSAE is a student car design competition organized by the Society of Automotive Engineers. You are welcome to stop by the Barus and Holley patio to congratulate the team on their hard work on Wednesday, May 19, 2010 from 12 to 2pm.
This year's Formula SAE car team placement was:
Overall 38th
Design: T-15th
Presentation: 46th
Cost: 23rd
Endurance: 35th
Fuel Economy: 2nd
(Note: Did not compete in autocross, accel, and skid pad)
For more info visit:http://www.sae.org/students/fsae2010results.pdf
(Click the photo to the right to see more photos)
Thursday, May 13, 2010
Professor Nurmikko collaborates on $14.9 million DARPA grant
Researchers at Brown University and Stanford University have launched a $14.9 million project geared to developing new brain micro-implants that can both sense the brain’s electrical signals and deliver optogenetic lightpulses to neural tissue.
The project, funded by a two-year Defense Advanced Research Projects Agency (DARPA) grant, is being led by Krishna Shenoy, a Stanford researcher, and Arto Nurmikko, a professor of electrical engineering and physics at Brown.
For more information visit the Providence Business News.
The project, funded by a two-year Defense Advanced Research Projects Agency (DARPA) grant, is being led by Krishna Shenoy, a Stanford researcher, and Arto Nurmikko, a professor of electrical engineering and physics at Brown.
For more information visit the Providence Business News.
Prof. Webster to participate in U.S. Biomaterials Research Delegation to China
Prof. Webster has been invited to be part of the U.S. Biomaterials Research Delegation to China in Octobet 2010. In conjuction with the People to People Citizen Ambassador Program (established by President Eisenhower in 1956), this U.S. delegation of well-established biomaterial researchers and educators will foster a one-on-one dialogue with China in the area of biomaterials research. China has rapidly increased its research efforts in the field of biomaterials and will continue to rise in importance as the field develops and expertise in China expands. The delegation will learn about academic programs leading biomaterials research efforts in China, meet with academic and intellectual leaders from the field and establish a clear understanding of the focus and trajectory of biomaterials research. Expected outcomes include a stronger collaboration between biomaterials research and education in the U.S. and China.
Monday, May 10, 2010
EWB promotes hunger awareness through OXFAM hourglass project
Engineers Without Borders recently completed the task of creating an hourglass as part of an OXFAM collaboration to promote hunger awareness. The hourglass drops marbles at a 3 second interval - the same rate that a child dies of hunger throughout the world. To learn more about this project, check out the EWB student team in action:
Thursday, May 6, 2010
Present and Past: Rhode Island Business Plan Competition winners from Brown
Brown students enrolled in Entrepreneurship & New Ventures ENGN1930x course consistently do well in the Rhode Island Business Plan Competition. This year Speramus, which developed its business plan in the course last semester, won the student track. The company is creating an online fundraising platform that uses a proprietary ranking system to match donors with individual support opportunities. In addition, Bakodo which developed its business plan in the course last year was runner up in the entrepreneur track. The company is focused on developing a highly-targeted, contextual barcode ad-serving network that aims to optimize return on investment for advertisers. For more information on this year's winners, visit here.
Last year's winner, Runa, who also developed their business plan in the Entrepreneurship and New Ventures course continues to make excellent progress. They have successfully raised funds from angel investors, successfully built out their vertically integrated supply chain in Ecuador, and begun selling their initial tea products in both loose leaf pouches and single serve bags. If you are interested in trying Runa, feel free to buy a cup at Blue State in Providence which now proudly serves it! You can read more at www.drinkruna.com
In addition the runner-up from last year, Eulie has also grown from the intial business plan they developed in the Entrepreneurship and New Ventures course. Both founders raised capital to work full-time on Eulie, developed and successfully tested a novel patent-pending fabric combination that is leak proof, and designed products that will be used to approach retail buyers later this year. You can read more at www.eulieintimates.com
Last year's winner, Runa, who also developed their business plan in the Entrepreneurship and New Ventures course continues to make excellent progress. They have successfully raised funds from angel investors, successfully built out their vertically integrated supply chain in Ecuador, and begun selling their initial tea products in both loose leaf pouches and single serve bags. If you are interested in trying Runa, feel free to buy a cup at Blue State in Providence which now proudly serves it! You can read more at www.drinkruna.com
In addition the runner-up from last year, Eulie has also grown from the intial business plan they developed in the Entrepreneurship and New Ventures course. Both founders raised capital to work full-time on Eulie, developed and successfully tested a novel patent-pending fabric combination that is leak proof, and designed products that will be used to approach retail buyers later this year. You can read more at www.eulieintimates.com
Labels:
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entrepreneurship,
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Monday, May 3, 2010
Richardson elected Honorary Fellow of the Royal College of Physicians
Professor Peter Richardson, has been elected an Honorary Fellow of the Royal College of Physicians, founded in London in 1518 with a Charter from King Henry VIII.
“I am deeply honored,” he said, “William Harvey was not even born when the College was founded, but he was a leading light of the Royal College of Physicians and a devoted supporter of it, as have been many other famous contributors to the science and practice of medicine before and since. It is known I have been interested in some aspects of the circulation of blood in the conduct of research for four decades, and the College is very generous in inviting me into its ranks, a very rare honor indeed.”
Peter Richardson has been Professor of Engineering and Physiology at Brown University since 1983. He is also a Fellow of the Royal Society, and a Fellow of the City and Guilds of London Institute, as well as Life Fellow of the American Society of Mechanical Engineers, a Founding Fellow of the American Institute for Medical and Biological Engineering, an Inaugural Fellow of the Biomedical Engineering Society, and a Laureate in Medicine of the Ernst Jung Foundation (Germany).
With one of his doctoral students, Leigh Abts, and some colleagues Richardson helped found MicroPure, a Rhode Island company which started from technology developed for operating room use during cardiac surgery and spun it off into uses for microprocessor manufacture and secondary oil recovery; the company was sold later to a large process-industries company. “Technology transfer can work both ways between medicine and engineering,” Richardson notes.
“I am deeply honored,” he said, “William Harvey was not even born when the College was founded, but he was a leading light of the Royal College of Physicians and a devoted supporter of it, as have been many other famous contributors to the science and practice of medicine before and since. It is known I have been interested in some aspects of the circulation of blood in the conduct of research for four decades, and the College is very generous in inviting me into its ranks, a very rare honor indeed.”
Peter Richardson has been Professor of Engineering and Physiology at Brown University since 1983. He is also a Fellow of the Royal Society, and a Fellow of the City and Guilds of London Institute, as well as Life Fellow of the American Society of Mechanical Engineers, a Founding Fellow of the American Institute for Medical and Biological Engineering, an Inaugural Fellow of the Biomedical Engineering Society, and a Laureate in Medicine of the Ernst Jung Foundation (Germany).
With one of his doctoral students, Leigh Abts, and some colleagues Richardson helped found MicroPure, a Rhode Island company which started from technology developed for operating room use during cardiac surgery and spun it off into uses for microprocessor manufacture and secondary oil recovery; the company was sold later to a large process-industries company. “Technology transfer can work both ways between medicine and engineering,” Richardson notes.
Friday, April 30, 2010
Nurmikko elected to Finnish Academy of Science and Letters
Professor Arto Nurmikko was recently elected to the Finnish Academy of Science and Letters. The Finnish Academy of Science and Letters is the largest general scientific and academic society in Finland. It is a learned society covering the full range of academic disciplines which is devoted to the promotion of scientific and scholarly research and serves as a bond uniting researchers engaged in these activities at the highest level. It functions as a traditional learned society in the sense that its membership is limited and it selects its new members on their academic and scientific merits. For more information on the Academy: http://www.acadsci.fi/frontpage.htm
Wednesday, April 14, 2010
Science News highlights aerial gymnastics of fruit flies
Science News 12 April 2010
Fruit flies make abrupt turns
Postdoctoral research associate in engineering Attila Bergou is part of a research team that discovered that fruit flies’ aerial gymnastics are driven by wing joints that act like wind-up toys, letting the bugs whirl around almost automatically.
Learn more here:
http://www.sciencenews.org/view/generic/id/58108/title/Fruit_flies_turn_on_autopilot
Flies "swim" when they're flying from Science News on Vimeo.
Fruit flies make abrupt turns
Postdoctoral research associate in engineering Attila Bergou is part of a research team that discovered that fruit flies’ aerial gymnastics are driven by wing joints that act like wind-up toys, letting the bugs whirl around almost automatically.
Learn more here:
http://www.sciencenews.org/view/generic/id/58108/title/Fruit_flies_turn_on_autopilot
Flies "swim" when they're flying from Science News on Vimeo.
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