Brown Engineering

  • Subscribe to our RSS feed.
  • Twitter
  • StumbleUpon
  • Reddit
  • Facebook
  • Digg

Monday, 28 November 2011

Fifth Annual SWE Extreme Gingerbread House Competition

Posted on 11:36 by Unknown
The Brown University Society for Women Engineers will be sponsoring its fifth annual "Extreme Gingerbread House Competition" on Friday, December 2, from 5:00 - 7:00 in the lobby of the Barus and Holley building on 184 Hope Street.

Twenty-two teams of 3-5 students and professors will be allowed to pre-register for the competition. Any additional teams that express interest will be placed on a waitlist in the event that a team does not arrive. If the team has not arrived within five minutes of the beginning of the event, their spot will be given to a team on the waitlist or a team that has shown up at the event without registering.

Each team will be supplied with two boxes of graham crackers, two Ziploc bags of royal icing, and a tray on which to construct their house. Additionally, all teams will be provided with an empty sandwich size Ziploc bag for taking the communal supplies. Foods such as candy canes, M&Ms, teddy grahams, shredded coconut, etc., will be kept on a central table. At the start of the one hour time slot of building, one member of each team will be allowed to take the empty Ziploc bag to the communal table and fill the bag with whatever supplies they feel are most valuable for their team’s house. All food items will be provided by SWE at the event; teams are NOT allowed to bring any of their own food.

The teams will have one hour to construct their houses out of the provided food. Houses should be designed to follow the criteria listed below:
- The house must fit on the provided tray and not cover the drilled-in holes.
- House dimensions must exceed 6”x6”x6”.
- The house must be hollow.
- The maximum wall thickness is 1”.
- The house must be glued/pasted to the tray; the house may not slide around the tray.
- The house should be designed to withstand earthquakes.

Teams are allowed to bring any tools that they think will be helpful such as knives, drills, etc. Teams are responsible for bringing the necessary power connections/extension cords. If you plan on using tools, please ensure you know how to use them safely and plan on bring the necessary personal protective equipment, such as safety glasses. No chemicals can be used during the manufacturing of the house; the house and all its contents must remain edible at all times.

After exactly one hour, the teams will be forced to stop construction on their houses. The houses will initially be judged before a panel of three faculty judges on (1) Attractiveness of the House [1-10 points] (2) Novel use of Building Materials [1-5 points] (3) Use of Available Space (ie decorations other than the house) [1-5 points]. Additionally, judges will have the option to select one “wildcard” house after viewing all the completed houses. Judges will award a bonus of three points to the house if they feel that one house was exceptional in a way that was not represented in the other scores; this is optional and at the judges discretion. The sum of these components will be used as the team’s aesthetic score.

The second portion of judging will be on the ability of the house to withstand a simulated earthquake. The tray will be attached to a shake table and cycled through a regimen moving from a low frequency to a high frequency. After every 15 seconds, the frequency will increase. Time will start when the shake table is turned on, and will be stopped when part of the house falls off the main structure; this includes decorations attached to the house, but not “environmental decorations” that are simply on the tray. The final call on whether a house has "failed" will be at the judges' discretion. Houses will not be judged until tables and floors are clean.

After all the houses have been tested, the maximum amount of time on the shake table to make a gingerbread house break will be used to calculate the scores, as shown below:

          GroupTime
----------------------- x 50 = Total
Maximum Group Time

Total group scores will be calculated by combining the aesthetic score (out of 25 points) and the stability score (out of 50 points) for a total score out of 75 points. The team with the most points will be considered the winner. The team with the second highest number of points will be given second place and so forth. The top three teams will be awarded a prize.

When registering, each team will be asked to pay a registration fee of $6.00 to enter the event.
Read More
Posted in | No comments

Nanowrinkles, nanofolds yield strange hidden channels

Posted on 10:28 by Unknown
Wrinkles and folds, common in nature, do something unusual at the nanoscale. Researchers at Brown University and in Korea have discovered that wrinkles on super-thin films have hidden long waves. The team also found that folds in the film produce nanochannels, like thousands of tiny subsurface pipes. The research could lead to advances in medicine,  electronics and energy. Results appear in Proceedings of the Royal Society A.
PROVIDENCE, R.I. [Brown University] — Wrinkles and folds are ubiquitous. They occur in furrowed brows, planetary topology, the surface of the human brain, even the bottom of a gecko’s foot. In many cases, they are nature’s ingenious way of packing more surface area into a limited space. Scientists, mimicking nature, have long sought to manipulate surfaces to create wrinkles and folds to make smaller, more flexible electronic devices, fluid-carrying nanochannels or even printable cell phones and computers.

A subsurface system of nanopipesResearchers at Brown University and in Korea used focusedion beams to extract a cross-section of compressed goldnanofilm. When tips of regular, neighboring folds touched,nanopipes were created beneath the surface.Credit: Kim Lab/Brown University
But to attain those technology-bending feats, scientists must fully understand the profile and performance of wrinkles and folds at the nanoscale, dimensions 1/50,000th the thickness of a human hair. In a series of observations and experiments, engineers at Brown University and in Korea have discovered unusual properties in wrinkles and folds at the nanoscale. The researchers report that wrinkles created on super-thin films have hidden long waves that lengthen even when the film is compressed. The team also discovered that when folds are formed in such films, closed nanochannels appear below the surface, like thousands of super-tiny pipes.
“Wrinkles are everywhere in science,” said Kyung-Suk Kim, professor of engineering at Brown and corresponding author of the paper published in the journal Proceedings of the Royal Society A. “But they hold certain secrets. With this study, we have found mathematically how the wrinkle spacings of a thin sheet are determined on a largely deformed soft substrate and how the wrinkles evolve into regular folds.”
Wrinkles are made when a thin stiff sheet is buckled on a soft foundation or in a soft surrounding. They are precursors of regular folds: When the sheet is compressed enough, the wrinkles are so closely spaced that they form folds. The folds are interesting to manufacturers, because they can fit a large surface area of a sheet in a finite space.
Kim and his team laid gold nanogranular film sheets ranging from 20 to 80 nanometers thick on a rubbery substrate commonly used in the microelectronics industry. The researchers compressed the film, creating wrinkles and examined their properties. As in previous studies, they saw primary wrinkles with short periodicities, the distance between individual wrinkles’ peaks or valleys. But Kim and his colleagues discovered a second type of wrinkle, with a much longer periodicity than the primary wrinkles — like a hidden long wave. As the researchers compressed the gold nanogranular film, the primary wrinkles’ periodicity decreased, as expected. But the periodicity between the hidden long waves, which the group labeled secondary wrinkles, lengthened.
“We thought that was strange,” Kim said.
It got even stranger when the group formed folds in the gold nanogranular sheets. On the surface, everything appeared normal. The folds were created as the peaks of neighboring wrinkles got so close that they touched. But the research team calculated that those folds, if elongated, did not match the length of the film before it had been compressed. A piece of the original film surface was not accounted for, “as if it had been buried,” Kim said.
Indeed, it had been, as nano-size closed channels. Previous researchers, using atomic force microscopy that scans the film’s surface, had been unable to see the buried channels. Kim's group turned to focused ion beams to extract a cross-section of the film. There, below the surface, were rows of closed channels, about 50 to a few 100 nanometers in diameter. “They were hidden,” Kim said. “We were the first ones to cut (the film) and see that there are channels underneath.”
The enclosed nano channels are important because they could be used to funnel liquids, from drugs on patches to treat diseases or infections, to clean water and energy harvesting, like a microscopic hydraulic pump.
Contributing authors include Jeong-Yun Sun and Kyu Hwan Oh from Seoul National University; Myoung-Woon Moon from the Korea Institute of Science and Technology; and Shuman Xia, a researcher at Brown and now at the Georgia Institute of Technology. The National Science Foundation, the Korea Institute of Science and Technology, the Ministry of Knowledge Economy of Korea, and the Ministry of Education, Science, and Technology of Korea supported the research.
Read More
Posted in Kim, nano | No comments

Friday, 18 November 2011

Qunyang Li ScM ’07 PhD ’08 and Jin Qian ScM ’09 PhD ’10 Recognized by Chinese Government

Posted on 10:33 by Unknown

Dr. Qunyang Li and Dr. Jin Qian, who received their Ph.D. degrees in Engineering (Solid Mechanics) in 2008 and 2010, respectively, from Brown University have been selected among 143 Young Scholars (younger than 40 in Science and Engineering) of 2011 by the Chinese government. Their selection is part of the "Thousand Young Talents Program" of the Chinese government, in which only 25 engineers were selected from all areas of engineering. The program was created by the Chinese government and aims to attract the best global young researchers to work in China. According to the program, each selected awardee will be awarded 500,000 RMB of living subsidies and up to 3,000,000 RMB for scientific research funding.

Qunyang Li
Li also received his master’s degree (2007, Applied Math) from Brown University and had been a post doctoral fellow at the University of Pennsylvania since 2008 until he was appointed as an associate professor at Tsinghua University this summer. Li received his bachelor’s degree and a master’s degree from Tsinghua University. During his time at Brown, Li won numerous awards, including the prestigious William N. Findlay Award in 2006 and the Outstanding Thesis Award in 2008.

Jin Qian
Qian had been a post doctoral fellow at Georgia Institute of Technology since September 2009 until he was appointed as an associate professor at Zhejiang University a month ago. Qian received his bachelor’s degree from Beijing University and a master’s degree from Institute of Mechanics of Chinese Academy of Sciences in addition to a master’s degree from Brown (Applied Math).
Read More
Posted in | No comments

Wednesday, 9 November 2011

Erik Taylor Wins BMES Graduate Student Award

Posted on 13:10 by Unknown
At the annual meeting of the Biomedical Engineering Society, Brown University graduate student Erik Taylor won the Graduate Student Extended Abstract Award for outstanding research. His submission, “Superparamagnetic Iron Oxide Nanoparticles Could Be Better than Antibiotics at Reducing Biofilm Produced by Staphylococcus Aureus” was considered by the committee strong enough to be only one of ten such awards presented.

This award consists of a certificate, a stipend of $500, and complimentary registration for the 2011 BMES Annual Meeting. The certificate was presented at the awards ceremony at the BMES Business Meeting on Thursday, October 13, 2011, in Hartford, Conn. The award has been presented each year since 1992 in recognition of outstanding biomedical engineering research.

Taylor, who was selected for a Fulbright Fellowship, will be leaving for India next semester to work on biofilm research and anti-infection strategies at IIT-Bombay in Mumbai for nine months. He will be working with Dr. Rinti Banerjee from IIT-Bombay through the Indo-U.S. Center for Biomaterials for Healthcare, co-directed by professors Bikram Basu and Thomas Webster.


Read More
Posted in award, bme, bmes, taylor, webster | No comments

Brown University and University of Rhode Island Team Wins $6.17 Million DOE EPSCoR grant

Posted on 10:43 by Unknown
Brown University and University of Rhode Island researchers led by principal investigator Pradeep R. Guduru, James R. Rice Associate Professor of Engineering at Brown, have won a three-year, $6.17 million grant from the Department of Energy (DOE) Experimental Program to Stimulate Competitive Research (EPSCoR). The project, “Fundamental Investigations of Mechanical and Chemical Degradation Mechanisms in Lithium Ion Battery Materials” will also involve Brown professors Allan Bower and Vivek Shenoy from the School of Engineering and Li-Qiong Wang from the Department of Chemistry; and Professors Brett Lucht, William Euler and Arijit Bose from the University of Rhode Island.
Electron microscopy images of the phase boundary between crystalline
silicon and amorphous lithiated silicon, revealing its atomic structure.
The sharp jumps in stress, composition and atomic structure across the
phase boundary play an important role in determining the mechanical
damage that results in silicon crystals during the initial charge cycle.

“This award represents a truly interdisciplinary research effort that brings together solid mechanics, chemistry and materials science,” said Guduru. “The research effort presents an opportunity for Brown and URI researchers to contribute to a technological area of national importance and forge strong collaborations with national labs and industry.”

“This new award contributes to the growing portfolio of engineering research at Brown in the energy and nanoscience fields,” said Dean Larry Larson. “These new fields are changing the way we live in thousands of different ways. Congratulations to all the faculty, post-docs, staff and students involved in these successful efforts.”

Electron microscopy images of the phase boundary between crystalline
silicon and amorphous lithiated silicon, revealing its atomic structure.
The sharp jumps in stress, composition and atomic structure across the
phase boundary play an important role in determining the mechanical
damage that results in silicon crystals during the initial charge cycle.



Despite the rapid advances in lithium ion battery (LIB) technology in recent years, major obstacles remain for vehicular applications of LIBs. It is widely recognized that further critical breakthroughs in the science and technology of lithium ion battery materials are necessary to develop the next generation of low-cost, long-life, higher energy density batteries for extended range electric vehicles.

The objective of the reserach funded under the DOE EPSCoR grant is to establish a comprehensive research program at Brown University and University of Rhode Island to develop fundamental and quantitative understanding of degradation mechanisms that limit the performance and cycle life of LIBs; and use the insights gained to help develop materials and architectures with significantly improved performance.

The research program encompasses critical challenges in the three major battery components: anodes, electrolytes and cathodes. Mechanical and chemical degradation of electrodes associated with large volume changes during charging and discharging is a critical factor that limits their capacity and lifetime. However, the degradation mechanisms are not well-understood quantitatively, which is a critical obstacle in developing the next generation of LIBs. The research team will address the fundamental issues of mechanical behavior & performance, controlling electrochemical side-reactions, formation and stability of solid-electrolyte interphase (SEI) layers. Through a combined experimental and computational approach, the team plans to develop the necessary quantitative understanding, which can help make battery materials design a well-controlled, principle-based process with predictable outcomes, in contrast to the largely trial and error based empirical approach being followed currently. The PIs will work with collaborators in national laboratories and battery industry in addressing the relevant problems of highest impact for developing the next generation of higher energy density battery systems.

Read More
Posted in bower, DOE, EPSCOR, guduru, LIB, lithium ion battery, shenoy | No comments

Thursday, 3 November 2011

Brown University Wins $6.25 Million MURI grant from Army Research Office

Posted on 12:26 by Unknown

Brown and Cal State Northridge are teaming up on a $6.25 million Multi-University Research Initiative (MURI) grant from the Army Research Office (ARO) to study “Stress Controlled Catalysis via Engineering Nanostructures”. The five-year project will be led by principal investigator Bill Curtin, with collaborators Pradeep Guduru and Sharvan Kumar in the School of Engineering, Shouheng Sun in Chemistry and Engineering, and Gang Lu in Physics at Cal State Northridge. Four graduate students and six postdocs will join the faculty in executing the research.

Professor Bill Curtin '81
“This new award contributes to the growing portfolio of engineering research at Brown in the energy and nanosciences fields,” said Dean Larry Larson. “These new fields are changing the way we live in thousands of different ways. Congratulations to all the faculty, post-docs, staff and students involved in these successful efforts.”

The goal of the research is to demonstrate that macroscopic applied mechanical loading can be used to actively control and tune catalytic reactions through the use of innovative nanoscale material systems.


The challenge lies in obtaining stresses in the catalytic metal materials that are large enough to significantly influence the rates of selected chemical reactions in an overall catalytic process.

Associate Professor Pradeep Guduru
Professor Sharvan Kumar
Brown researchers will accomplish this by creating ultra-strong nanostructured materials in novel geometries where the mechanical load can be controlled and varied, also serving to isolate strain as the only experimental variable.

If the principle is demonstrated, then it may be possible to increase catalytic efficiencies by using time-varying stresses to actively control the reactions during operation, opening up the field of catalysis to an entirely new space of materials design.
Read More
Posted in curtin, guduru, kumar, muri, nano | No comments

Wednesday, 2 November 2011

Nanomaterials Studies Advance Cancer Research

Posted on 12:35 by Unknown
Graduate student Lijuan Zhang and associate professor Thomas Webster have conducted research with nanomaterials that may lead to a potential breakthrough in cancer research. Their recent research, "Decreased lung carcinoma cell functions on select polymer nanometer surface features" was published in Journal of Biomedical Materials Research A.  

Behind the purple doors of a sixth-floor Barus and Holley Lab, Thomas Webster, associate professor of engineering, works small but thinks big. His work with nanomaterials, tiny devices implanted into the human body, has led to a potential breakthrough in cancer research.

Webster, director of the University's NanomedicineLaboratory, has been studying and developing nanotech implants for the past 11 years. His team had created rough implants covered in tiny "nano-features"— microscopic bumps ­— to "mimic the natural roughness of healthy skin," he said. "Current orthopedic implants are flat and smooth, but healthy skin and bone have bumps."

Two years ago, graduate student Lijuan Zhang approached Webster with a radical idea — exploring how nano-features would interact with cancer cells.

"Being the adventurous person I am, I said, ‘Let's try it,'" Webster said. It was completely new territory for Webster, but he said he was excited to see what would happen.

Within a year of research, a blink of an eye in lab time, Zhang approached Webster with results they both found fascinating. The addition of 23nm nano-features to a petri dish with both cancerous and healthy cells caused a significantly lower density of cancer cells over time.

Webster said he was pleased and intrigued by the results, but he knew the tests needed to be run at least three more times to verify any findings.

Zhang ran another trial and again found a lower density of cancer cells, but she also found something new — the nano-features inhibited the synthesis of a protein that aids in tumor growth.

The tests had initially been conducted with lung cancer cells, but later tests used breast cancer and bone cancer cells. Both reacted in the same manner — the nano-features lowered the density of cancer cells and decreased the synthesis of the tumor growth protein.

The next step is finding real-world applications, Webster said. "In order for any of this research to be useful, we need a company. We need to transition from the lab bench to a real product."

Webster said he hopes to apply their discovery to animal models and eventually human trials. "If all goes well, a product could appear in five years," he said.

By Hannah Kerman/BDH
Read More
Posted in nano, webster, zhang | No comments
Newer Posts Older Posts Home
Subscribe to: Posts (Atom)

Popular Posts

  • Clyde Briant elected to the National Academy of Engineering
    Congratulations to Clyde Briant on his election to the National Academy of Engineering. Election to the National Academy of Engineering is ...
  • Nanoparticles eliminate bacterial infection on prosthetic
    Infected implants now have a foe. Brown University researchers have created a nanoparticle that can penetrate a bacterial-produced film on p...
  • Hydrodynamics of Microorganisms
    Professor Powers' article, Hydrodynamics of Swimming Mircoorganisms, was accepted this week in Reports on Progress in Physics. Preview t...
  • AIChE Prize Winners
    This year, in celebration of AIChE's centennial, the AIChE Annual Meeting featured special sessions that highlight chemical engineering...
  • RI Woman of the Year
    The Rhode Island Commission on Women (RICW) is pleased to announce the 2009 Women of the Year, Lynn Ewart-Paine, ’85 ’86 Sc.M. ’90 Ph.D., S...
  • Nanosatellite Launch Vehicle Conference
    In the over 25 years since small, low cost space began its transition from curiosity to the integral element of world-wide civil and militar...
  • NanoVis, Inc earns 2nd in Venture Idol
    NanoVis, Inc., a Brown start-up company, Gets 2nd Place in Venture Idol Competition NanoVis, Inc., a Brown start-up company was awarded 2nd ...
  • Superfund renewed to create a safer and healthier RI
    Brown's Superfund Research Program (SRP) brings together researchers from engineering, biology and medicine, geological sciences, and so...
  • IGEM Jamboree
    The 2008 Brown iGEM Teams worked on two projects--one a toxin detection & electrical reporting system using E. Coli bacteria and the se...
  • Wei Yang to lead China’s National Natural Sciences Foundation
    Wei Yang Ph.D.’85 Sc.D.’12 hon., an internationally celebrated engineer and materials science researcher, educator, and administrator, has ...

Categories

  • "Sirinrath Sirivisoot"
  • aaas
  • aaron
  • abet
  • accreditation
  • aceros
  • ACS
  • admission
  • admissions
  • advanced baby imaging lab
  • AIChE
  • AIChE ugrad award
  • AIMBE
  • almeida
  • alumni
  • Andrew Peterson
  • apoE4
  • archaeology
  • archambault
  • argyria
  • ARPA-E
  • article
  • artificial ovary
  • asme
  • associate dean
  • audax
  • audio
  • awar
  • award
  • axena
  • Aziz
  • Baek
  • bahar computer conference
  • banyan
  • bashevkin
  • bats
  • battery
  • beam
  • BEAR Day
  • bio
  • biodiesel
  • biofilm
  • biofuel
  • blume
  • bme
  • bmes
  • book
  • borton
  • bower
  • brain initiative
  • Brain Science
  • brain sensor
  • brain-computer interface
  • braingate
  • braingate2
  • breuer
  • breuer bats reuters
  • briant
  • brown institute of brain science
  • bull
  • bull risd car
  • business plan
  • calakli
  • calo
  • CAMR
  • car
  • carbon
  • career fair
  • Caswell
  • catena
  • cave
  • CfNN
  • chemical innovation program
  • China
  • civil engineering
  • coda
  • coe-sullivan
  • collaboration
  • commencement
  • competition
  • Computational Materials Science
  • concussion
  • cooper
  • cord-clamping
  • crisco
  • crisco risd
  • CRL
  • Curet
  • curtin
  • cyberkinetics
  • dang
  • dean
  • decker
  • deisley
  • deoni
  • desai
  • desktop delta-v
  • dingman
  • DOE
  • donoghue
  • donovan
  • Durmus
  • dworak
  • eastman conference
  • ejiofor
  • election
  • elevator pitch
  • emanuel
  • emotive
  • Empower
  • en4
  • energy-momentum spectroscopy
  • ENGN 1930G
  • entrepreneurship
  • Entreprenuership
  • EPSCOR
  • escuti
  • event
  • ewb
  • faculty
  • feature
  • fellowship
  • Felzenszwalb
  • fleeter
  • fluid dynamics
  • franck
  • freund
  • fsae
  • fulbright
  • gao
  • General Motors
  • GhostBot
  • gidmark
  • gingerbread
  • GM
  • GM/Brown
  • grad
  • graduate
  • grant
  • grantab
  • graphene
  • greis
  • guduru
  • guo
  • haberstroh
  • halpin
  • halpin prize
  • Hargus
  • hazeltine
  • heart
  • hibbitt
  • HnC
  • hochberg
  • huebscher
  • hurt
  • hurt cfl nyt
  • hydrokinetic
  • IE
  • IIT-Bombay
  • IMNI
  • implant
  • Indo-US
  • innovation
  • institute of medicine
  • international
  • internship
  • jackson
  • jadhav
  • jakubek
  • Jay
  • JCD Wind
  • jepsen
  • joukowsky
  • JPL
  • kane
  • kesari
  • keynote
  • Kim
  • klout
  • Kristie Chin
  • kulaots
  • Külaots
  • kumar
  • Kummer
  • lacrosse
  • larson
  • laser
  • laulicht
  • lavernia
  • Lazos
  • Lee
  • LEGO
  • LIB
  • light emission
  • liquid bone
  • lithium ion battery
  • Liu Finalist GEMS Award
  • lubricin
  • lysaght
  • magnet
  • malik
  • Mandre
  • maris
  • materials
  • Materials Research
  • mathiowitz
  • mba
  • mccalla
  • Mechanics
  • Megan Buczynski
  • mentor
  • mercury
  • metamaterials
  • metaphotonics
  • MGI
  • mittlemann
  • morgan
  • muri
  • NAE
  • nano
  • nanoparticles
  • nanopatch
  • nanoscience
  • nanoskin
  • nanotechnology
  • nanotubes
  • nanovis
  • NASA
  • Needleman
  • neuroengineering
  • Neurorestoration
  • Neuroscience
  • neurotechnology
  • NewMech
  • NewMech2012
  • nih
  • nsf
  • NSFC
  • nurmikko
  • nurse
  • open house
  • optical
  • osteoarthritis
  • overhead.fm
  • pacifici
  • padture
  • palmore
  • palmore hoffmankim nih
  • paper
  • patent
  • paxson
  • pecase
  • Peterson
  • petteruti
  • Phi Beta Kappa
  • photos graduation
  • powers
  • powers editor journal
  • president
  • prime
  • PRIME Omega-3
  • Privicare
  • PriWater
  • profiles
  • project
  • publication
  • publication leadership
  • qd vision
  • Raimondo
  • rainwater
  • ramesh
  • Ramos
  • rankings
  • reda
  • reed
  • Reggiannini
  • research
  • richardson
  • risd
  • Riviere
  • robot
  • robots
  • rome
  • rosakis
  • Rosenstein
  • Runa
  • salomon award
  • sarin
  • schutter
  • scripta materialia
  • selenium
  • SES
  • sharp
  • sheldon
  • shenoy
  • sigma xi
  • silver
  • Silverman
  • simeral
  • simulia
  • SMART
  • solar
  • Solar4Cents
  • space
  • Speramus
  • Spira
  • stac
  • startup
  • stem outreach
  • Stout
  • summer
  • superfund
  • suuberg
  • swe
  • sygiel
  • takamoto biogas
  • tau beta pi
  • taubin
  • taylor
  • team
  • timoshenko
  • tissue
  • tissue engineering
  • tran
  • tripathi
  • tsang
  • twitter
  • ugrad
  • VA
  • van de Walle
  • venture for america
  • video
  • Vlahovska
  • wadia
  • wang
  • warshay
  • watson
  • website
  • webster
  • webster nano
  • webster nurmikko bio conference
  • Wells
  • weng
  • wireless
  • workshop
  • yang
  • yin
  • zhang
  • zhang webster star award phd
  • zia
  • zia nsf award

Blog Archive

  • ▼  2013 (18)
    • ▼  April (1)
      • Nurmikko and Donoghue join U.S. BRAIN initiative
    • ►  March (5)
    • ►  February (4)
    • ►  January (8)
  • ►  2012 (76)
    • ►  December (5)
    • ►  November (8)
    • ►  October (9)
    • ►  September (5)
    • ►  August (6)
    • ►  July (6)
    • ►  June (5)
    • ►  May (4)
    • ►  April (8)
    • ►  March (11)
    • ►  February (6)
    • ►  January (3)
  • ►  2011 (95)
    • ►  December (7)
    • ►  November (9)
    • ►  October (8)
    • ►  September (11)
    • ►  August (8)
    • ►  July (4)
    • ►  June (3)
    • ►  May (10)
    • ►  April (7)
    • ►  March (10)
    • ►  February (10)
    • ►  January (8)
  • ►  2010 (55)
    • ►  December (13)
    • ►  November (8)
    • ►  October (3)
    • ►  September (2)
    • ►  August (5)
    • ►  July (1)
    • ►  June (2)
    • ►  May (8)
    • ►  April (5)
    • ►  March (2)
    • ►  February (4)
    • ►  January (2)
  • ►  2009 (46)
    • ►  December (7)
    • ►  November (2)
    • ►  October (4)
    • ►  September (4)
    • ►  August (2)
    • ►  July (5)
    • ►  June (4)
    • ►  May (6)
    • ►  April (5)
    • ►  March (1)
    • ►  February (4)
    • ►  January (2)
  • ►  2008 (15)
    • ►  December (1)
    • ►  November (4)
    • ►  October (1)
    • ►  September (1)
    • ►  August (2)
    • ►  July (3)
    • ►  June (2)
    • ►  April (1)
  • ►  2007 (1)
    • ►  February (1)
Powered by Blogger.

About Me

Unknown
View my complete profile