Examples of using Materials engineering in English and their translations into Hebrew
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Colloquial
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Ecclesiastic
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Computer
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Programming
Materials engineering.
Advanced Materials Engineering.
Materials engineering and finite element modelling.
Advanced Materials Engineering.
The Technion Faculty of Science and Materials Engineering.
People also translate
The Materials Engineering Research Center.
Failure analysis and Materials engineering.
I decided to study Materials Engineering and Physics because of the variety, interest and challenge.
The Faculty of Science and Materials Engineering.
The Israel Materials Engineering Conference.
Quantum Physics for Advanced Materials Engineering".
The great importance of materials engineering lies in the development of new processes and materials required for advanced industries.
The Department of Science Materials Engineering.
The second phase of the studies includes compulsory courses that provide the student with a scientific foundationin all professional fields of Chemistry and Materials Engineering.
Chemical and Materials Engineering.
Materials engineering deals with understanding the properties and behavior of various materials used to produce products and systems in all areas of contemporary technology.
Maryse Leclair(born 1966), materials engineering student.
The history of the Department of Materials Science and Engineering could be traced back to the former Department of Electrochemistry followed by the Department of Mining& Metallurgy,the Department of Metallurgy& Materials Engineering, and the Department of Materials Engineering. .
Scientific and engineering research takes place in the framework of the Materials Engineering Research Center, and covers a wide range of important and advanced subjects.
Also home to Wright-Patterson Air Force Base, the region is known for its strengths in information technology, aerospace research and development,advanced materials engineering, and health and human services.
But only recently have advances in electronics, materials engineering and imaging technology opened the door to the almost non-invasive therapeutic and diagnostic techniques of tomorrow.
In December 2009, TAU organized, forthe first time, the Israel Materials Engineering Conference(IMEC-14).
The Mechanical& Materials Engineering(MME) Department at Florida International University(FIU) offers a curriculum which is designed to give our students a thorough understanding of the basic laws of science and to stimulate and develop creative thinking, a professional attitude, economic judgment and environmental consciousness.
The nano-engineering program aims to produce undergraduates who are knowledgeable in chemical,electrical and materials engineering which are the fundamental building blocks of nanotechnology.
Our broad portfoliogives us the unique ability to integrate multiple materials engineering technologies along with onboard metrology to create new films and structures that were not possible until now.
Due to the special character of the research in the department,several central laboratories of the Materials Engineering Research Center are used in a large proportion of the research activities.
Prof. Pokroy earned three degrees at the Technion Faculty of Science and Materials Engineering, and returned to the Technion in 2009 after a post-doc at Harvard(under the guidance of Prof. Joanna Aizenberg) and Bell Labs.
While the future is never certain, one thing is clear-there has never been a more exciting time to be a materials engineering company helping make possible tomorrow's curved, bendable and foldable displays.
The major aims to prepare students with a solid background of therequired fundamental knowledge in engineering mechanics, materials engineering, mechanical product design, mechatronics, dynamics and controls, and thermal fluidics, so that they can serve and contribute to a broad range of mechanical engineering industries.-.
These fields are computational design, allowing us to design complex forms with simple code; additive manufacturing,letting us produce parts by adding material rather than carving it out; materials engineering, which lets us design the behavior of materials in high resolution; and synthetic biology, enabling us to design new biological functionality by editing DNA.