Welcome Message
Material Science 2018 Organizing Committee is
contented to welcome each of you to the International Conference on Materials Science and Engineering which is to be held during July 23-25, 2018 in Moscow,
Russia which incorporates provoke keynote presentations, Oral
presentations, Poster presentations, and Exhibitions.
Is it accurate to say that you are looking for an innovation,
where you can investigate the strategies and hypotheses of Materials
Science..??? Here is your stop… Material
Science 2018 will provide a wonderful forum for you to refresh your
knowledge base and decipher the advances in Materials
Science and Engineering. We will have three days of intensive discussions
from the distinguished scientists in the arena of Materials
Science. The conference would be uninspiring without nurturing close
friendship between the participants and conversation on a variety of topics
beyond Materials
Science. We hope to have many get-together hours and to have hot discussions on sciences.
The Conference will strive to provide you with the
opportunity to meet and interact with the leading scientists and researchers,
friends and colleagues as well as sponsors and exhibitors. Also, Moscow is the
crowded visitor spot where you can give your family an awesome tourism
encounter.
We are regarded to invite all of you to trade and offer your
perspectives and experience on Materials Science and Engineering at this fruitful event.
We hope you will join us for a symphony of outstanding
science, and take a little extra time to enjoy the dazzling and unique beauty
of Moscow region.
About Conference
Organizing Committee is well pleased to report
its International Conference on Materials Science and Engineering which is to be held
during July 23-25, 2018 at Moscow, Russia. On this
extraordinary gathering, Organizing Committee welcomes members from everywhere
throughout the globe to participate in this yearly meeting.
Material Science 2018 aims at sharing new concepts and new advances
among the experts, industrialists and graduate students from the scientific
arena of Materials Science, Metals, Metallurgy, Biomaterials, Nanomaterials to share their current
developments and applications in different fields and enjoy intuitive talks and
specialized sessions at the occasion. The Conference will likewise have a space
for firms as well as foundations to show their products, services, innovations
and scientific results.
Scope and Importance
According to the Max Planck Institute of Materials
Research, Materials science plays a key role as one of the main pillars of
economic progress and social well-being in Europe and, indeed, the world as a
whole. The Scope of the conference is to gather all the Researchers, Business
Delegates and Scientists to approach and deliver all the attendees about the
latest scientific advancements on the respective sphere. This Materials Science Conference is the premier event focusing
on understanding individual and organizational behavior and decision-making
related to Materials Physics, Materials Chemistry, Materials
Science, metallurgy,
mining, biology, nanotechnology and academia.
The conference unites entrepreneurs and expertise to scaffold Materials science and Engineering to unveil noteworthy worldwide disclosures in Engineering. It gives an awesome stage to cover recent breakthroughs in Nanomaterials, Composites, Ceramics, Biomaterials, Quantum dot and other partnered areas of Materials Science. The theme of the gathering will focus on making an interpretation of Materials Science advances into Human Benefits and to address current trends in Materials for better future. Direct introductions, meet with present and potential researchers, make a sprinkle with new medication advancements, and get name acknowledgment at this 3-day occasion.
Benefits of Attending Material Science 2018
1. To learn about key issues in
the Materials Science industry as a whole (and your area of interest in
particular) as articulated by practitioners.
2. To meet people and
organizations addressing the same key issues in Materials Science.
3. To meet people with whom
you’ve established a relationship on social media.
4. To gain insight into
the experiences of others who face challenges similar to yours.
5. To learn about job,
internship, project and other work-based possibilities.
6. To initiate relationships with others that you can continue by social media and/or meetings in person.
Target Audience
Materials
Scientists and Research Professors, Physicists and Chemists, Junior, Senior
research fellows of Materials Science, Nanotechnology, Polymer Science, Biotechnology, Materials
Science Students, Directors of chemical companies, Materials Engineers, Members
of different Materials science associations.
Widely acclaimed speakers, the latest strategies,
improvements, and the freshest updates in Materials Science are signs of this conference.
Sessions/Tracks
Session on: Material
Science and Engineering
Materials
Science and Engineering,
involves the discovery and design of new materials, with an accentuation on
solids. Materials
Science is an interdisciplinary field concerned with the understanding
and utilization of the properties of matter. Materials researchers
consider the associations between the hidden structure of a material, its
properties, its handling techniques and its execution in applications. All
new and altered materials
are often at the core of product innovation in highly diverse applications. The
global market is projected to reach $6,000 million by 2020 and lodge a CAGR of
10.2% between 2015 and 2020 in terms of worth. The Europe market is estimated
to be growth at a steady rate due to economic redeem in the region along with
the expanding concern for the building insulation and energy savings.
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Materials, Minerals and Mining (IOM3) , Materials Research Society (MRS), Society for the Advancement of
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Engineering (SAMPE), American Society for Testing and
Materials (ASTM
International), American Society of Mechanical Engineers (ASME)
Session on: Biomaterials
Tissue engineering, a subset of biomaterials is rapidly expanding as a
treatment for a wide range of medical conditions. Biomaterials, an emerging field focuses on the development of materials to replace or augment human
tissues. Within tissue engineering, the process of electro spinning, a
potential manufacturing technique by providing the right balance of speed, cost
and biocompatibility for the replacement of nearly all the human organs.
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Society for Biomaterials (SFB), Society of Biomaterials and Artificial organs, Canadian Biomaterials Society, Tissue and Cell Engineering Society, Materials Research Society (MRS), The United Kingdom Society for Biomaterials (UKSB), European Society of biomaterials
Session on: Permanent
Magnets, Superconductors &Thermoelectric Materials
New generation of permanent magnets (AlNiCo, Samarium Cobalt and
Neodymium Iron Boron) has improved the performances of magnetic systems,
engines, pumps, bearings, picks ups, alternators (for turbines) and has allowed
newer, more compact and high speed electric engines. With the help of permanent
magnets we can data, move robots and can also sense sound.
Superconductors will allow the electrical current to flow without any loss of
energy (Though, in practice, an ideal superconductor is very hard to produce)
and this type of current is super current. It should be cooled below certain
threshold temperature; the material dramatically loses all
electrical resistance. The goal of having levitating trains and cars, logistic
systems and even sports, relies on the use of room temperature superconductors.
Thermo electric category of materials can alternatively be used to
refrigerate. Their presence allows cooling without moving parts with high
reliability. The efficiency of thermoelectric cooling modules (called Peltier
modules) is low and an increase could change the world of refrigeration of cars
(air conditioning systems), homes, freezers, coolers and chillers.
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Related Societies
Minerals Metals & Materials Society, The (TMS), Society for the Advancement of
Material and
Process Engineering (SAMPE), International Metallographic
Society (IMS), Electronic Device Failure Analysis Society (EDFAS), American Society for Engineering
Education (ASEE)
Session on: Energy
materials & Devices
Current research on energy has focused on a variety of novel
energy devices, energy grid systems, and nanomaterials with new designs, structures,
and unique properties. The frontier energy research has produced such materials as nanocomposites for
super capacitors and advanced electrochemical energy storage devices. Novel
pulsed power capacitors is used for reducing the rate and rapid cycling demand
on the batteries of hybrid/electric vehicles, and flexible, highly conductive,
but low loss thin films for solar energy cells.
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York, USA
Related Societies
Materials Research Society (MRS), Heat Treating Society (HTS), ASTM International (formerly American Society for Testing and
Materials), ASM International (ASM), American Institute of Chemical
Engineers (AIChE)
Session on: Electronic,
Optical & Photonic Materials
The Photonic and Electronic Materials gives an expansive exhibit of
research activities in semiconductor materials development, physical properties, and electronic and optoelectronic
gadgets. . Blue lasers for semiconductor lighting and optical laser
storage represent significant activities in the Solid State Lighting and
Energy Electronics Center. Recently, a research accentuation in Si and non-Si-based
micro electro mechanical frameworks has emerged.
These materials are of pivotal significance to
our general public due to their regularly expanding use in the microelectronic,
opto-electronic gadgets and magnetic materials that empower items, for
example, PCs, hard drives, cell phones. Leading edge investigate on materials
incorporate photovoltaic and nanophotonic thin films for solar powered cells,
natural semiconductors for adaptable hardware and
opto-electronic gadgets, complex oxide materials for cutting edge magneto
electronic gadgets, and magnetic materials for spintronic gadgets.
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16-17, 2018, Atlanta, USA; International Conference on Nanoscience and Technology, May 21-22, 2018, New
York, USA
Related Societies
Electronic Device Failure Analysis
Society (EDFAS), International Society for Optical
Engineering (SPIE), Heat Treating Society (HTS), International Metallographic
Society (IMS), Institute of Materials, Minerals and Mining (IOM3)
Session on: Nanotechnology
in Materials Science
Nanomaterials comprise of microstructural
highlights (grains, domains, stages, precipitates and so forth.) that range in
measure from 1 – 100 nm. At this scale, numerous materials exhibit properties that contrast from their bulk sized analogs. The
capacity to tune the material properties by controlling the size permits nanomaterials to have applications in a wide
scope of fields including optics, magnetic gadgets, catalysis,
microelectronics, pharmaceutics, storage technologies and energy
conversion.
Nanomaterials make the materials science based approach
to nanotechnology, leveraging advances in materials metrology and synthesis which have been developed in support
of microfabrication research.
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16-17, 2018, Atlanta, USA; International Conference on Nanoscience and Technology, May 21-22, 2018, New
York, USA
Related Societies
Intelligent Testing Strategies for
Engineered Nanomaterials (ITS-NANO), National Institute for Nanotechnology, Russian Nanotechnology Corporation, American National Standards Institute Nanotechnology Panel (ANSI-NSP), Materials Research Society, Graphene Stakeholders Association
Session on: Materials
Chemistry and Materials Physics
Materials Chemistry involves the characterization, processing and
molecular level understanding of substances and also the use of chemistry for
the design and synthesis of materials with potentially useful physical
characteristics. Materials Chemistry is one of a kind in giving the
scholarly establishment to create, design, and see new types of issue, let it
be natural, inorganic, or cross breed materials. From nanomaterials and sub-atomic gadgets to polymers and broadened solids, chemistry is making a universe of new
materials as sensors, catalysts sub-atomic transporters, molecular filters,
artificial scaffolds and light-discharging or electron-directing ensembles,
with the potential for wide scientific and societal effect.
Physical properties of materials can be described by Materials Physics. It is a synthesis of physical sciences such as solid
mechanics, chemistry, solid state physics, and materials science
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Related Societies
American Physical Society (APS), American Chemical Society (ACS), ASM International (ASM), ASTM International (formerly American Society
for Testing and Materials), American Institute of Chemical
Engineers (AIChE), International Metallographic Society (IMS)
Session on: Ceramics, Composite
materials & Glass
Bonding in ceramics and glasses uses covalent and ionic-covalent types with SiO2
(silica or sand) as a fundamental building block Engineering ceramics are known
for their stability and stiffness under high temperatures, compression and
electrical stress. Chemical vapor deposition can place a film of a ceramic on
another material. The wear resistance of tools is
derived from cemented carbides with the metal phase of cobalt and nickel
typically added to modify properties. Scratch resistant Corning Gorilla Glass
is a well-known example of the application of materials science to drastically improve the properties of common
components.
Composites are structured materials comprised of two or more
macroscopic phases. Applications range from structural elements such as
steel-reinforced concrete, to the thermal insulating tiles which play a key and
integral role in NASA's Space Shuttle thermal protection system which is used
to protect the surface of the shuttle from the heat of re-entry into the
Earth's atmosphere.
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Material and Process
Engineering (SAMPE)
Session on: Corrosion & Corrosion
Protection
Corrosion is the environmental
degradation of materials, and it is a major area of research
in materials science and engineering. High
temperature and corrosion resistant alloys are mixtures of various metals, including stainless, nickel, cobalt, iron, copper, chrome.
Structural metals (aluminum and steel) exist
only due to a thin protective oxide on their surface. Powerful new
tools, such as x-ray and neutron reflectivity are used to monitor the
degradation and formation of protective films.
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York, USA
Related Societies
NACE International, The Corrosion Society, Society for the Advancement of
Material and
Process Engineering (SAMPE), American Chemical Society (ACS), ASTM International (formerly American Society for Testing and
Materials), International Metallographic
Society (IMS)
Session on: Polymer
Technology & Surface Engineering
A high sub-atomic weight polymer can be 10,000-100,000
monomers in length! Polymer chains interpenetrate each other when broken down in dissolvable.
Polymers like molecularly imprinted hydrogels are utilized to channel viral
infections out of our blood. Materials like polynorborene could be utilized as
a part of athletic shoes to retain vitality amid running or bouncing,
forestalling stun to the foot or leg. They are chemical compounds which are
made up of a large number of identical components linked together like chains
and are the raw materials (the resins) used to make plastics and rubber. Polymer Technology has carved a place in the
fields of electronics and electrical materials, automobile industry, textiles,
aerospace industry and so on.
If the surface cannot adequately withstand the external
forces or environment an engineering component usually fails to which it is
subjected. Surface material can increase performance, control surface properties and reduce
costs independently of the substrate, offering enormous potential.
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Session on: Fiber
Materials and Textile fabrics
Natural fibers are those produced by plants,
animals, and geological processes and it develop or occur in the fiber shape.
Semi-synthetic fibers are made from raw materials with naturally long-chain
polymer structure and are only modified and partially degraded by chemical
processes, in contrast to completely synthetic fibers such as polyamide or
polyester. Synthetic fibers are entirely from synthetic materials such as petrochemicals.
The CNT based fibers are of interest not only as
reinforcements with extremely high specific strength and modulus and in
structural materials, but also due to their enhanced
multi-functionality for use in paper, textiles, and other areas.
Textile fabric, a cloth that has been knitted,
woven, tufted, knotted, or bonded together using natural or synthetic threads,
yarns, and other materials.
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Related Societies
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Memory & Superelastic
Technologies (SMST), Institute of Materials, Minerals and Mining (IOM3), American Chemical Society (ACS), Minerals Metals & Materials Society, (TMS)
Session on: Materials
theory, Computation and Design
Advances in computing power and software offers the potential
to synthesize, design, characterize and test materials in a virtual setting. These
capabilities enable accelerated development and optimization of new materials across the wide range of
applications. Computational methods could drastically reduce that
time, and allow tailoring materials properties.
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Engineering (SAMPE), ASTM International (formerly American Society for Testing and
Materials), American Society for Engineering
Education (ASEE)
Session on: Metallurgy and Mining
Metallurgy is one of the areas in materials science and designing which contemplates the
physical and chemical conduct of metallic components, their intermetallic
mixes, and their blends. It is the innovation of metals, the path in which the science is
connected to the generation of metals, and the designing of metal segments for
the utilization in products for customers and manufacturers. Metallurgy is
recognized from the art of metalworking.
Mining is the procedure of extraction
of significant minerals or other land materials from the earth. Mining in a
more extensive territory incorporates extraction of any non-sustainable
resources, for example, flammable gas, oil, or even water. Present day mining
process includes prospecting for mineral bodies, extraction of the
coveted materials, profit potential analysis of
proposed mine and at last recovery of the land after the mine is closed.
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Related Societies
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Society (IMS), Institute of Materials, Minerals and Mining (IOM3), Minerals Metals
& Materials Society (TMS), Society of Plastics Engineers (SPE), Society for the Advancement of Material and Process Engineering (SAMPE)
Session on: Graphene and Semiconductors
Graphene is the strongest material and
it is a form of carbon consists of a single layer of carbon atoms arranged in a
hexagonal lattice. It is the basic structural element of allotropes of carbon,
such as graphite, charcoal, carbon nanotubes and fullerenes. It also
efficiently conducts heat and electricity
Semiconductor is a material in which the electrical conductivity value falls between that of a
conductor, such as copper, and an insulator, such as glass. Quantum
dots are very small semiconductor particles, only several nanometers in
size, so small that their optical and electronic properties differ from those
of larger particles.
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Related Societies
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Material and
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Session on: Welding
Engineering
Welding is an unpredictable engineering discipline which includes the
parts of materials science, design, mechanical and electronic
frameworks, lasers, and robots. In this field welding engineers, utilize their
math abilities and materials science abilities to take care of issues,
comprehend the properties behind welds to guarantee that welded structures are
safe and an advantage to society. Welding engineers have ability in materials science, including steels, nonferrous
amalgams and polymeric materials, and in process innovation, including bend welding, lasers, protection
welding, brazing and fastening.
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York, USA
Related Societies
American Welding Society (AWS), American Society of Mechanical
Engineers (ASME), American Institute of Chemical Engineers (AIChE), International Professional Honor
Society for Materials Science and Engineering(Alpha Sigma Mu), Heat Treating Society (HTS), Association for Iron &
Steel Technology (AIST)
Session on Reuse and Recycling
of materials
Recycling is the most important component in the
reduction of modern waste materials and also the third component of
the Reduce, Reuse, and Recycle waste hierarchy. Recyclable materials include many kinds of glass, paper, and cardboard, metals, plastic, tires, textiles, and
electronics Recycling and reuse of materials sought to curb the pollution and
environmental hazard the unneeded materials posed when their operational
lifetime is over and how they can be put to ensure further benefits in an
environment friendly way and also in a more economical, technical and
functional way. Recycling and Reuse of materials such as plastics, glass,
textiles and electronics will pave the way for a friendly environment.
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Related Societies
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Session on: Emerging
Trends in Materials Science
There are many emerging technologies in Materials science to improve the quality of products and their
span. Aerogel, manufactured permeable
ultra-light materials which is gotten from a gel, in that
the fluid part of the gel has been supplanted with a gas. Silica aerogels can
be utilized as a part of imaging gadgets, optics, and light aides. Conductive
polymers are natural polymers that direct power. A fullerene is a particle of
carbon as an empty circle, ellipsoid, tube. Fullerenes are comparative in structure to graphite, which is made
out of stacked graphene sheets of connected hexagonal
rings.
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16-17, 2018, Atlanta, USA; International Conference on Nanoscience and Technology, May 21-22, 2018, New
York, USA
Related Societies
Society for the Advancement of Material and Process Engineering (SAMPE), American Institute of Chemical Engineers (AIChE), Institute of Materials, Minerals and Mining (IOM3), National Organization for the Professional Advancement of Black Chemists and Chemical Engineers (NOBCChE)
Market Analysis
Materials
and metals have wide application in enterprises like aviation, vehicle and so
on. It additionally discovers application in particular items like angling
bars, bike, sports hardware and so forth. Polymer designing comprises of
numerous parts of petrochemical industry and polymerization. Polymer designing
spreads numerous perspectives identified with synthetic building. Plastics are
additionally utilized as a part of the produce of Prosthetic gadgets and
surgical hardware.
Why to Attend
Material Science 2018?
Material Science 2018 provides a podium to globalize
the research by establishing a dialogue between industries and academic
organizations and knowledge transmission from research to industry. The
conference will be the leading forum for all recent advancements in Materials Science and Engineering field. It provides a unique platform
for networking with peers and learning from speakers who are experts in Materials Science, Mechanical Engineering, Materials Physics, Biomaterials, Nanotechnology, Mining , Metallurgy and Materials Chemistry.
Why Moscow, Russia?
Moscow is the capital and most populous city
of Russia. When it comes to Russia always Moscow remains the obvious first
choice for a representative office where many Materials
Science companies and representative offices of foreign and regional metals
companies are concentrated. Moscow is a major political, economic, cultural,
and scientific center of Russia and Eastern Europe, as well as the largest
city entirely on the European continent. And it is also the one of
the world’s largest city and 14th largest metro area, the 18th
largest agglomeration, the 15th largest urban area, and the 11th
largest by population within city limits worldwide.
Russia has the most college-level or higher graduates in
terms of percentage of population in the world, at 54%. According to the 2018
QS World University Rankings, the highest ranking Russian educational
institution is Moscow State University which is rated 95th in the
world.
Essential enterprises in Moscow incorporate the compound,
metallurgy, sustenance, material, furniture, energy generation, programming
advancement and apparatus businesses. Some of Moscow’s most important
industries remain Engineering and Metalworking, which together employ a
significant share of the industrial workforce and top companies include companies
like United Wagon Company, Alumlit, Ferrodyne Ltd and Skatgr
Group Ltd.
Moscow has one of the biggest city economies in Europe and it
accounts more than one-fifth of Russia's gross residential product (GDP).
Hence, we are looking forth to an interesting technical
event, scientific program, business meeting and exhibition and we welcome you
to join us at Materials
Science Conference in Moscow, Russia
Market Growth of
Materials Science in the last and upcoming ten years
The global material market was valued at $149
million in 2015, and is expected to reach $1,387 million by 2022, growing at a
CAGR of 39.7% during the forecast period. Material
mediums are defined as macroscopic composites possessing a man-made,
three-dimensional, periodic cellular architecture designed to produce an
optimized combination, not available in nature, of two or more responses to a
specific excitation. The global market for Aluminum systems and metal powder
witnessed a rapid growth in 2013, and is projected to grow at a CAGR of 5.65%
and 3.80% from 2015 to 2020, to reach USD 147.13 Billion and USD 4,062.2
Million by 2020 respectively.
Major factors that drive the market growth are capital
investment from public and private sources and highly skilled researchers for
product commercialization. In addition, the unique engineered properties of material
mediums are not found in nature, making them inherently valuable. However,
inefficient research despite huge investment is expected to restrain the market
growth.
Market Analysis of
Structural Materials in Research areas:
Asphalt Materials (9%), Others Metals, Bio based, Mechanics (14%), Cementitious Materials (24%), Concrete (25%)

Biomaterials Market
The worldwide biomaterials
market size is assessed to reach $139 by 2022, developing at a CAGR of 11.8%
from 2016 to 2022. Metallic biomaterials fragment is relied upon to contribute
essentially to the worldwide market income until 2022. North America held the
main position in the worldwide market in 2015, and is relied upon to keep up
its lead all through the investigation time frame. Metallic biomaterial
section dominates the worldwide market, while polymeric
biomaterial portion is anticipated to develop quickly amid the conjecture
time frame.
Since the 1970s there has been an unprecedented expansion in
the number of advanced materials, novel production processes, and devices that
have entered many aspects of human life. These advanced materials, which form a
basis of the modern high technology, include: Steels and other metallic alloys,
Super-alloys, Polymers, Carbon materials, Optical, electronic and magnetic
materials, Superconductors, Technical ceramics, Composites, Biomaterials
Many of these have been successfully adapted by the market
and are now utilized in a range of industries and the urban living environment.
Examples are encountered daily in the areas of health, communication, consumer
goods and transportation.
Material Science 2018 welcomes
contributions from
·
Materials
Science and Engineering professionals, experts, and managers
·
Service,
supply, and consulting companies
·
Universities,
research centers, and institutes
·
Professional
societies and labour unions
·
Local,
national, and international governmental organizations
·
Non-governmental
organization
Major Advanced
Materials Science Associations around the Globe
·
American
Chemical Society (ACS)
·
American
Physical Society (APS)
·
The
Materials Information Society (ASM International)
·
Microscopy
Society of America (MSA)
·
The
Minerals, Metals & Materials Society (TMS)
·
Sigma
Xi: The Scientific Research Society
·
International
Society for Optical Engineering (SPIE)
·
The
American Ceramic Society (ACerS)
·
International
Association of Advanced Materials (IAAM)
Top Materials Science Universities
in Russia
·
Moscow
State University
·
St.
Petersburg State University
·
ITMO
University
·
Tomsk
State University
·
Moscow
Institute of Physics and Technology
·
Moscow
Technical University