Showing posts with label Biomedical Universities. Show all posts
Showing posts with label Biomedical Universities. Show all posts

Friday, 27 November 2009

University of Kuopio - Finland

The University of Kuopio is a research-intensive
university that focuses on health and environmental
sciences and welfare expertise. Its successful research
is based on centres of excellence of international
standing, research networks crossing faculty boundaries
and high-quality postgraduate education. These
aim at research breakthroughs and entrepreneurship
based on a high level of scientific expertise. On the
basis of international citations, the University of
Kuopio is one of the leading science universities in
Finland.

It also has centres of excellence in education, and
we are the first university in Finland to be awarded
a quality assurance audit certificate by the Finnish
Higher Education Evaluation Council FINHEEC.

The University of Kuopio is youthful, dynamic and
strongly oriented to international co-operation. It
belongs to several highly esteemed international research
and education networks and have made more
than 200 university partners in all continents for
active student, staff and research exchange.

The University of Kuopio welcomes international
students to a wide range of degree and non-degree
programmes at Master’s and Doctoral levels.
Research and internships opportunities are also
available. Students are offered free Finnish language
courses at various levels, a modern learning environment
with high-quality personal tutoring, and
flexible support services. The University campus is
situated in a uniquely beautiful landscape by the
large Kallavesi Lake where we also provide modern
accommodation and leisure facilities.

Degree programmes taught in English
Medical Physics and Engineering
• Molecular Medicine and Biotechnology
• Neurobiology

Facts and figures 2007
Total number of students: 5 969
International students: 335
• Degree students: 173
• Exchange students: 162
Number of graduates: 544
Website: www.uku.fi/english

The Tampere University of Technology TUT, Finland

The Tampere University of Technology TUT
conducts scientific research and provides academic
education in technology and architecture at Bachelor’s,
Master’s and Doctoral levels. The University
works in close collaboration with business life and
other areas of society, striving to produce the highest
standard of service throughout.

TUT has grown rapidly since its foundation in
1965 as an affiliate of the Helsinki University of
Technology. It gained full independence in 1972
and are now the second largest University of Technology
in Finland with a lively campus of 12 000
engineering and architecture students.

The leading research fields are signal processingbased
technologies, nanophotonics, biotechnology,
intelligent mobile machines and hydraulic systems.
TUT plays a pivotal role as an advocate of business
life, internationalisation, and well-being and
prosperity both in the Tampere region and western
Finland as a whole. The University is the fifth largest
employer in Tampere.

TUT founds its scientific work on strong basic
research and multidisciplinary applied research
for the needs of business. We offer companies
diverse research and product development services
that flexibly combine expertise in various fields of
technology and economics. It has more than a
thousand research projects in progress each year, all
involving wide company representation.

At present TUT co-operates with 250 universities,
190 of which are in EU countries. In 2007, we had
about 400 exchange undergraduates and 270 international
Master’s degree students. TUT has been
ranked one of Finland’s most international universities
and it holds a leading position in terms of the
number of visiting researchers.

Degree programmes taught in English
Master’s Degree Programme in Biomedical Engineering
Master’s Degree Programme in Science and Bioengineering

Facts and figures 2008
Founded: 1965 as an affiliate of Helsinki University of
Technology; autonomous university since 1972
Units in Tampere and Pori
Total number of students: 11 571
International students: 907
• Degree students: 299
• Exchange students: 437
• Postgraduate students: 171
Number of graduates:
• Master’s degrees: 882
• Licentiate’s degrees: 9
• Doctoral degrees: 64
Website: www.tut.fi/en and www.tut.fi/masters

Wednesday, 25 November 2009

List of USA Universities having Biomedical Engineering

The Catholic University Of America
University Of Alabama - Birmingham
Stanford University
University Of California - Davis
University Of California - Irvine
University Of California - Los Angeles
California State University, Northridge
University Of Connecticut
Florida International University, Miami
University Of Florida
Mercer University
University Of Iowa
Illinois Institute Of Technology
Northwestern University, Evanston
Indiana University - Purdue University Indianapolis
Purdue University
Rose-hulman Institute Of Technology
Louisiana Tech University
Tulane University LA
Massachusetts Institute Of Technology
University Of Massachusetts Medical School
Boston University
Worcester Polytechnic Institute
Johns Hopkins University
University Of Michigan - Ann Arbor
Mayo Graduate School, Rochester
Washington University In St. Louis
University Of North Carolina - Chapel Hill
Duke University
Dartmouth College, Hanover
New Jersey Institute Of Technology
Rutgers, The State University Of New Jersey, New Brunswick C
University Of Medicine & Dentistry Of New Jersey
Rensselaer Polytechnic Institute
Suny (the State University Of New York), Stony Brook
Columbia University
Cornell University, Ithaca
The Ohio State University
University Of Akron
Case Western Reserve University
Cleveland State University
Thomas Jefferson University
Carnegie Mellon University
Brown University
University Of MemphisUniversity Of Tennessee--health Science Center
Vanderbilt University
Texas Am University, College Station
University Of Texas - Arlington
University Of Texas - Austin
University Of Texas Medical Branch
University Of Texas Southwestern Medical Center
University Of VirginiaVirginia Commonwealth University
Marquette University
Milwaukee School Of Engineering

Sunday, 1 November 2009

Goldsmiths International Postgraduate Scholarship - UK

There are up to 10 scholarships available to prospective international students studying for a full-time taught Master’s programme . The scholarship provides a £5,000 fee waiver and is tenable for one year only.

To be eligible to apply you must have applied for a place on a full-time postgraduate taught degree, have an international fee liability and are self-financing to some extent. You will also need to demonstrate academic excellence and / or significant achievement in your chosen field of study.

Please note that current students are not eligible to apply for this scholarship.
 
How to apply

Click here to see the research degrees. 

You will need to complete an International Postgraduate Scholarship application form , and return it to:

Bursaries & Scholarships Officer
Student Support RHB 124
Goldsmith, University of London
New Cross
London SE14 6NW

Please note that your application form for a scholarship is processed separately from your application form for admission. You must therefore ensure that you provide COPIES of all relevant transcripts and certificates with the application.

Deadline
Applications must reach us by 1 April 2010.

Selection criteria
All applications will be assessed on academic merit only – financial circumstances will not be taken into account.

Further Information
If you have any queries regarding these scholarships, please contact the Bursaries & Scholarships Officer via email to bursary-sship@gold.ac.uk.

Thursday, 3 September 2009

Universities in Switzerland


  • ETH Zurich (Swiss Federal Institute of Technology Zurich) (Zürich)

  • EPFL (Swiss Federal Institute of Technology Lausanne) (Lausanne)

Wednesday, 25 March 2009

MASTER DEGREE ENTRANCE EXAMS IN VIT UNIVERSITY, VELLORE

VIT MASERTS' ENTRANCE EXAM (VITMEE)- 2009
VIT UNIVERSITY, VELLORE, TAMILNADU.

Date of exam : 7th June 2009

To see the advertisement of the entrance exam, click here.

MTECH COURSES

I.) School of Mechanical and Building Sciences

i.) Automotive Engineering
ii.) Computer Aided Design /Computer Aided Manufacturing
iii.) Energy and Environmental Engineering
iv.) Mechatronics
v.) Structural Engineering

II.) SCHOOL OF ELECTRICAL SCIENCES(SES)

i.) Automotive Electronics
ii.) Communication Engineering
iii.) Nano Technology
iv.) Power Electronics and Drives
v.) Sensor System Technology
vi.) VLSI Design

III.) SCHOOL OF COMPUTING SCIENCES (SCS)

i.) Computer Science and Engineering
ii.) Information Technology (Networking)
iii.) MCA

IV.) SCHOOL OFBIOTECHNOLOGY, CHEMICAL AND BIO-MEDICAL ENGINEERING(SBCBE)

i.) Biotechnology
ii.) Biomedical Engineering

To check the eligibility criteria for the courses, click here.

PLACES WHERE APPLICATION FORMS AVAILABLE

i.) To get the entrance exam application forms in various post offices, Click here. (Application form cost is Rs 900)

(or)

ii.) BY POST : (Take DD of Rs 900 in favour of "VIT UNIVERSITY" payable at vellore)

Admissions Officer,
VIT UNiversity,
Vellore - 632 014,
Tamilnadu, India.
Phone : +91-416-420 7070
Fax : +91-416-224 5544
email : admission@vit.ac.in

(or)

Chennai Administrative Office,
New No. 6,(Old No. W-73),
Second Street,
Anna Nagar,(Opp.towers club),
Chennai- 600 040.
Phone : 044-4201 6555,6548 0555
Fax :044 - 2622 2555



DATES

Dates of Issue of Application forms : April 13 to May 20, 2009

Last date for the receipt of completed application form : May 20, 2009

Date of entrance exam : June 07, 2009

Declaration of results : June 12,2009


INTEGRATED PHD (Bio-Medical, Biotechnology, Civil, Mechanical, Computer Science, and Electrical & Electronics)

To know about the details of integrated phd for btech/be students, Click here.

Sunday, 22 March 2009

BIOMEDICAL ENGINEERING RESEARCH LAB IN INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE(ITRI) - TAIWAN

Biomedical technology is one of the most promising areas of research in the 21st century. ITRI plans to apply its world-class engineering capabilities for biomedical research and technology development. By integrating its expertise in electronics, information, micromachining and material technologies with biological and medical sciences, ITRI is uniquely positioned to conduct multi-disciplinary biomedical research.

To master global trends in advanced biotechnology and pharmaceuticals, the ITRI is striving for leveraging its world-class engineering capabilities for biomedical research and technology development. ITRI established the Biomedical Engineering Center (BMEC) on July 1st, 1999 to conduct multidisciplinary biotechnologies and forward-looking projects. On January 1st, 2006, BMEC was renamed to be the Biomedical Engineering Research Laboratories (BEL) to better perform exploratory R&D and unearth new applications in innovative life science.

Research and Development

The Biomedical Engineering Research Laboratories (BEL) at ITRI is involved in three major focusing areas: Novel Therapeutics, Molecular Diagnostics, and Regenerative Medicine. Key research projects include molecular scaffold-based pharmaceuticals, IP-based herbal medicine, novel drug delivery system, microarray platforms and applications, nucleic acid-based diagnostics, proteomics-based biomarker development, enabling technology for cell therapy, and embryonic stem cell research.

BEL is actively in collaboration with medical centers, biotech industry as well as other institutions locally and globally. Clinical studies are currently being conducted in collaboration with universities and hospitals such as the National Taiwan University Hospital and the Veterans General Hospital in Taipei. Several joint research programs with international institutes in the United States, Canada, Australia, and other regions are also in progress.

If you are interested in any collaboration opportunities, please contact Dr. Jenny Chen (jenny.chen@itri.org.tw).

Wednesday, 4 March 2009

MSc / PhD -BIOMEDICAL ENGINEERING IN UNIVERSITY OF ALBERTA, CANADA





Website Address : www.bme.med.ualberta.ca

Email Address : bmegrad@ualberta.ca

Why the University of Alberta?

• direct collaboration with Faculty of Engineering professors and medical staff in the Faculty of Medicine
• degrees can be awarded jointly together with another department
• cutting-edge research, research intensive degrees
• world-class laboratories and facilities

Areas of Research

• In-vivo Magnetic Resonance Spectroscopy
• Magnetic Resonance Imaging
• Regenerative Medicine and Nanomedicine
• Spinal Cord Injury

MSc (Thesis)

Duration : 2 Years
Entry : Fall (Sept), Winter (Jan),Spring (May) & Summer (July)

PhD
Duration : 5 Years
Entry : Fall (Sept), Winter (Jan),Spring (May) & Summer (July)


Minimum Admission Requirement

GPA• 3.3 GPA on a 4.0 scale on the most recent two years of full-time study (or equivalent)

English Language Proficiency

Applicants with degrees/qualifications in a language other than English may need to demonstrate English Language Proficiency through one of the following exam scores:

• TOEFL: minimum score of 600 (paper-based) or a total score of 95 with a score of at least 20 on each of the individual skill areas (internet-based)
• MELAB: minimum score of 91
• IELTS: minimum overall band score of 7.5, with at least 6 on each band
• CAEL: overall minimum score of 70, with at least 70 on each subtest

Department Application Deadline

Fall (Sept) : July 1

Winter (Jan): Nov 1

Spring (May): March 1

Summer (July): May 1

Tuition and Fees

• approximately $4,500 CAD per year (full-time Canadian/Permanent Resident)
• approximately $8,000 CAD per year (full-time International student)
• thesis-based students should also budget approximately $1,000 CAD for thesis preparation costs

Funding
The University of Alberta does not guarantee funding and funding levels may vary. Please contact the department for details.

Canadian / Permanent Resident
• $18,000 for MSc (teaching and/or research assistantship)
• $19,000 for PhD (teaching and/or research assistantship)

International Student
• same as Canadian



RESEARCH AREAS

Members of the Department of Biomedical Engineering are active in the following research areas:

Biomaterials & Tissue Engineering
Biomechanics
Cryobiology
Dental
Functional Electrical Stimulation (FES)
Lasers in Medicine
Magnetic Resonance Imaging/Spectroscopy
Mathematical Modeling
Medical Imaging (non MRI/S)
Medical Physics
Microelectrical Mechanical Systems (MEMS)
Nanotechnology
Rehabilitation Engineering

Biomaterials & Tissue Engineering
Tissue engineering is the use of a combination of cells, engineering and materials methods, and suitable biochemical and physio-chemical factors to improve or replace biological functions. While most definitions of tissue engineering cover a broad range of applications, in practice the term is closely associated with applications that repair or replace portions of or whole tissues (i.e. bone, cartilage, blood vessels, bladder). Often, the tissues involved require certain mechanical and structural properties for proper function

Biomechanics
Biomechanics is the research and analysis of the mechanics of living organisms or the application and derivation of engineering principles to and from biological systems. The study of biomechanics ranges from the inner workings of a cell to the movement and development of limbs, the vasculature, and the bones. As we develop a greater understanding of the physiological behavior of living tissues, researchers are able to advance the field of tissue engineering, as well as develop improved treatments for a wide array of pathologies.

Cryobiology
Cryobiology is the branch of biology that studies the effects of low temperatures on organisms, most often for the purpose of achieving cryopreservation. In practice, this field comprises the study of any biological material or system (e.g. proteins, cells, tissues, organs, organisms) subjected to any temperature below normal ranging from moderately hypothermic conditions to cryogenic temperatures. Cryobiologists study the cold-adaptation, preservation of organs under hypothermic conditions for transplantation, lyophilization (freeze-drying) of pharmaceuticals and cryosurgery.

Dental
Dental engineering is the application of biomechanics, biomaterials, tissue engineering, nanotechnology, and advances in diagnostic and therapeutic techniques to improve reconstruction, remodeling, and repair of the oral and craniofacial tissues damaged as a result of disease or injury. Research depends upon advances in biology, chemistry, engineering, material science, nanotechnology, and computer science to develop tissue constructs that mimic the structure and function of native oral and craniofacial tissues.

Functional Electrical Stimulation (FES)
Functional electrical stimulation is the application of electrical impulses to cause paralyzed muscles to contract and function in a coordinated manner. Its aim is to restore function in people with disabilities resulting from spinal cord injury, head injury, stroke and other neurological disorders by electrical stimulation of the muscles, nerves, or spinal cord. Restoration allows individuals to stand, restore hand grasp function, bowel and bladder function, and may be combined with the use of neuroprostheses.

Lasers in Medicine
Lasers are used in both diagnostic and therapeutic medicine. While much of their initial applications involved surgery to ablate diseased tissue or to stem bleeding, they were also used for cosmetic purposes. Lasers are now used in areas as diverse as photodynamic therapy, endoscopic imaging, coronary artery treatment, cell surgery, vision correction, and optical tomography.

Magnetic Resonance Imaging/Spectroscopy
Magnetic resonance imaging is a methodology that uses a strong magnetic field together with radio-frequency pulses to produce computer-generated images of the body's internal tissues and organs in living subjects. Images result from specific nuclei in the imaged tissues that contain a magnetic moment, providing sufficient concentrations of the nuclei are present. It is possible using magnetic resonance spectroscopy to gather information related to molecules in the body that contain specific nuclei, for example, 13C or 31 P.

Mathematical Modeling
A mathematical model is a conceptual, most often computer-based, representation of a system designed to predict outcomes or aspects of the system. In biomedicine, models can be as diverse as those designed to the understanding of systems of neurons as they interact with one another to the flow of patients and information though a hospital. Modeling can be used to study how microtubules assemble, cancer cells propagate, the structure of proteins and how they function, and problems involving epidemiology.

Medical Imaging (non MRI/S)
Medical imaging refers to the techniques and processes used to create images of the human body for clinical purposes like medical procedures seeking to reveal, diagnose or examine disease or medical science including the study of normal anatomy and function. Images can result from tissue characteristics as diverse anatomical density or electrical impedance, to reflection of sound waves or uptake of radio-labeled pharmaceuticals.

Medical Physics
Medical physics, in its broadest sense, is the application of physics to medicine. While not confined to, much of medical physics relates to the diagnostic and therapeutic use of ionizing radiation in the treatment and management of cancer. A related area, biophysics, uses the concepts and tools of physical chemistry and molecular physics to define and analyze the structures, energetics, dynamics, and interactions of biological molecules.

Microelectrical Mechanical Systems (MEMS)
Microelectrical mechanical systems are devices fabricated using techniques generally used in microelectronics, often to integrate mechanical or hydraulic functions with electrical functions. They are generally built on microchips and measure in micrometres. MEMS can be external to or implanted in the body and can measure and analyze properties such as blood pressure, motion, and force, can pump and control fluids, and can serve as chemical and biological analyzers in the form of lab-on-a chips.

Nanotechnology
Nanotechnology is a field of applied science and technology covering a broad range of topics. The main unifying theme is the control of matter on a scale smaller than 1 micrometer, normally between 1-100 nanometers, as well as the fabrication of devices on this same scale. It is a highly multidisciplinary field, drawing from fields such as colloidal science, device physics and supramolecular chemistry.

Rehabilitation Engineering
Rehabilitation engineering is the systematic application of engineering sciences to develop technological solutions to problems confronted by individuals with disabilities. Functional areas addressed through rehabilitation engineering may include mobility, communications, hearing, vision, cognition. Rehabilitation engineers may design things like hearing aids, prosthetic limbs or wheelchairs.

RESEARCH FACILITIES

In Vivo NMR Centre

The goal of the In Vivo NMR Centre's research program is to enhance the power of in vivo nuclear magnetic resonance in diagnostic medicine. Their research program is heavily weighted towards functional applications which will ultimately provide new tools for the diagnostic clinician.



Rehabilitation Engineering

The goal of the Rehabilitation Engineering laboratory is to develop rehabilitation interventions for improving and restoring lost function after spinal cord injury, head trauma or stroke.

Spinal Cord Injury & Neuroprostheses

The goal of the Spinal Cord Injury & Neuroprostheses lab is to restore motor function following spinal cord injury based upon extensive physical training of the patient.

How to Apply ? Click here.

For information, Click here.

To download Graduate Studies Brochure, Click here.

For finding Graduate program, click here.

To know about Campus, click here.

About Research in UA, Click here.

To know about Faculty, click here.

To find a program, Click here.

About admission requirements, Click here.

For applying for studies, Click here.

For Tutition fees, click here.

For cost of living in Canada, Click here.

For funding the studies, click here.

For Housing Facilities, Click here

Friday, 27 February 2009

GRADUATE STUDIES & RESEARCH IN NANYANG TECHNOLOGICAL UNIVERSITY (SINGAPORE)

NANYANG TECHNOLOGICAL UNIVERSITY (NTU) is well-positioned to provide quality manpower training through graduate education for the nation and the region of singapore. NTU provides graduate students with the opportunity to explore challenging academic and career options and develop as a leader and scholar. With its excellent track record in engineering research and a thriving research environment, graduate students have the opportunity to learn from distinguished academics and work on a wide variety of high impact research projects alongside leading research specialists.


The University offers a comprehensive range of graduate programmes leading to the award of the degrees of Master and Doctor of Philosophy as well as Graduate Diplomas. Graduate degree programmes are by either research or coursework and dissertation.



Research programmes

Candidates reading for a higher degree by research pursue independent but supervised research on an approved topic based on which a thesis must be submitted for examination. Candidates are also required to do at least three to six courses. Selection of courses is made after consultation with the research supervisor.

Research candidates work closely and keep in regular contact with their supervisor on their research project. Supervisors will submit regular reports on the progress of each candidate under their supervision.

In addition to being examined on the thesis, a candidate for the degree of Doctor of Philosophy must pass an oral examination on the subject matter of his thesis and related matters. For non-PhD candidates, the oral examination may be prescribed at the discretion of the Board of Examiners.

Coursework programmes

Candidates reading for a higher degree by coursework and dissertation follow a prescribed programme of study comprising several courses and undertake a project on which a dissertation will be written. For most programmes, the dissertation can also be replaced by a few equivalent courses. The course of study involves formal classes, lectures, tutorials, seminars, laboratory work and written examinations.

Classes are usually held in the evenings from 6.30 pm to 9.30 pm. Depending on whether the programme is conducted on a full-time or part-time basis, classes could range from once to five times per week.


Programmes at NIE


The National institute of Education offers the following programmes by research: Doctor of Philosophy, Master of Arts and Master of Science. It also offers Master of Arts, Master of Science and Master of Education programmes by coursework and dissertation.


Partnership programmes with other universities

The University prides itself on continued, worldwide collaborations with the best in industry and academia. Partnerships have been developed with more than 300 universities and institutions in over 45 countries worldwide, and strong ties have been established with industry in research collaborations.

The following graduate programmes are offered in collaboration with partner universities:

Singapore-MIT Alliance

The Singapore-MIT Alliance is an innovative engineering education and research collaboration among three of the top engineering research universities in the world: NTU, NUS and MIT. Founded in November, 1998 to promote global engineering education and research, the alliance brings together the resources of three premier academic institutions, while providing students with unlimited access to exceptional faculty expertise and superior research facilities.

Singapore-Stanford Partnership

The Singapore Stanford Partnership is a joint effort between NTU's School of Civil and Environmental Engineering and Standford's Department of Civil and Environmental Engineering to establish a Singapore-based premier graduate education and research programme in environmental engineering.

Partnership with Shanghai Jiaotong University

Shanghai Jiaotong University (SJTU), one of China 's foremost universities, officially inaugurated its SJTU Graduate School at NTU. Programmes offered: the SJTU-MBA programme and the NTU-SJTU Joint Executive MBA programme.

Dual Degree MSc (Micro Electro Mechanical Systems Engineering) with ESIEE

This dual degree programme offered by NTU and ESIEE taps European and Asian professional experiences to provide global enterprises and research institutes with world-class technologists in the field of MEMS Engineering.

Joint Degree in Master of Management in Hospitality at Cornell-Nanyang Institute of Hospitality Management

This premier Master of Management in Hospitality programme is offered and awarded by Cornell University 's renowned School of Hotel Administration and NTU's Nanyang Business School , an elite business school in Asia . The year-long programme is designed for the global industry yet focused on developing a wealth of expertise in Asian hospitality. Participants can expect a truly international experience spending six months in Singapore and the remaining six months in New York in the United States .



Joint MSc (Intergrated Circuit Design Programme) with Technische Universität München (Germany)

The international Master of Science programme in Integrated Circuit Design jointly offered by NTU and Technische Universitaet Muenchen will educate the next generation of engineers and leaders for the semiconductor industry. Contents of the programme range from analog, digital and mixed-circuit design to design methodology, automation, product manufacturing and testing. Integrated circuit design is also placed in a broader context, for example, by teaching fundamental concepts of signal processing, which are at the core of today's communications circuits. Non-technical but essential topics such as product marketing, international management, patent law and aspects of culture and globalisation are also covered.


Joint MSc (Microelectronics Programme) with Technische Universität München (Germany)

Since the first semiconductor manufacturing related plant was established in Singapore in the late 1960s, semiconductor manufacturing industry has grown significantly and has provided a strong boost to Singapore’s economy. The semiconductor industry presently employs over 37,000 people in Singapore, and accounts for tens billion Singapore dollars in output in the year 2006. We are expecting more wafer fabrication related companies to establish their wafer fabrication plants and research centres in Singapore in the future. To meet the foreseen demands, a highly specialized Master of Science programme in Microelectronics, which is jointly offered by Nanyang Technical University (NTU) and Technical University of Munich (TUM), provides an excellent platform to train engineers for the silicon wafer fabrication industry. The students first complete a series of coursework taught by both NTU and TUM professors and later may embark on an internship in the semiconductor industry and related research institutes.


Please visit http://www.ntu.edu.sg/gradstudies/Pages/Default.aspx for details of NTU's gradate programmes. Alternatively, you may request a copy of the Graduate bulletin from contact:


Graduate Studies Office
Nanyang Technological University
Student Services Centre, Level 3
42 Nanyang Avenue
Singapore 639815
Email: gradstudies@ntu.edu.sg

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