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Electronics materials science

J. W. Mayer and S. S. Lau, Electronic Materials Science For Integrated Circuits in Si and GoAs, MacmiUian, New York, 1990. [Pg.403]

Mayer, J. W., and Laii, S. S. (1990). Electronic Materials Science. New York Macmillan. [Pg.776]

A major contribution from chemistry and chemical engineering has been the development of materials with important military applications. Chemists and chemical engineers, working with experts from areas such as electronics, materials science, and physics, have contributed to such developments as new explosives and propellants, reactive armor (a complex material with an explosive layer that can reduce the penetration of an incoming projectile), and stealth materials that reduce the detectability of aircraft by radar. [Pg.173]

Ecotoxicological considerations and the effort to achieve an increasingly accurate description of the state of the environment challenge analytical chemists who need to determine increasingly lower concentrations of various analytes in samples that have complex and even non-homogenous matrices. The newly coined expression "analytics" emphasizes the interdisciplinary nature of available methods for obtaining information about material systems, with many methods that exceed the strict definition of analytical chemistry. Drawing on the disciplines of chemistry, physics, computer science, electronics, material science, and chemometrics, this book provides in depth information on the most important problems in analytics of samples from aquatic ecosystems. [Pg.491]

E. I. du Pont de Nemours Co. (DuPont), founded in 1802, develops and manufactures products in the biotechnology, electronics, materials science, synthetic fibers and safety and security sectors. DuPont operates in seven segments Agriculture and Nutrition (A N) Electronic and... [Pg.253]

Mayer, J.W., Lau, S.S. Electronic Materials Science. Macmillan, New York (1990)... [Pg.9]

C. Julien, G.-A. Nazri, Solid state batteries materials, design and optimization, in Electronic Materials Science and Technology Series (Ed. H. L. Tuller), Kluwer Academic Publisher, Norwell, 1994. [Pg.280]

R. van de Krol and M. Gratzel (eds.), Photoelectrochemical Hydrogen Production, Electronic Materials Science Technology 102, DOI 10.1007/978-l-4614-1380-6 l, Springer Science-l-Business Media, LLC 2012... [Pg.3]

Despite the already long history of the discovery of carbon narrotubes (CNT) [1], the interest in the problem of obtaining carbon nanostructures with desired eharacteris-tics unabated, constantly improving their synthesis. Unique physical arrd cherrrical properties of CNTs can be applied in variotrs fields of modem technology, electronics, materials science, chemistry and medicine [2]. One of the most irrrportant from the point of view of practical apphcations is the trarrsport property of CNTs. [Pg.2]

While the determination of i -potential on colloidal samples is quite frequent there are not much studies accomplished on flat samples. The data on i -potential of pol3cmer foils are important for physics and chemistry of surfaces, for electronics, material science, for packaging of food, even for biology and medicine [38], Survey of i -potentials for some pol3cmers are given in [31], There are summarized data obtained by many authors measured and by several techniques for PDMS, PC, PET, PMMA, PE, PS, PVC and PTFE along with the data for colloidal samples and for pol5rmer foils. [Pg.206]

The European Photochemistry Association (EPA) was founded in 1970 under the auspices of the Council of Europe. As quoted in Wikipedia, the objective of the Association is to promote the development of photochemistry in Europe and contacts among photochemists. The Association is concerned with various experimental and theoretical aspects of the interaction of light with molecular systems, ranging from basic knowledge and practical know-how in photochemistry to application in areas such as chemical synthesis, electronics, material science, nanotechnology, biology and medicine . [Pg.197]

P. Knauth, J. Schoonman, Nanostructured Materials Selected Synthesis Methods, Properties and Applications, Electronic Materials Science and Technology Series, MA Kluwer Academic Publishers, Boston, 2002. [Pg.138]

R. Ramesh (Ed.) Thin Film Ferroelectric Materials and Devices, Electronic Materials Science and Technology, Vol. 3 (Kluwer, Dordrecht 1997)... [Pg.937]

Mathematics physics electronics quantum mechanics mechanical engineering electronic engineering graphics electronic materials science. [Pg.1057]

Ramesh R (1997) Thin film ferroelectrie materials and devices. Kluwer, Series in Electronic Materials Science and Technology, Norwell, MA Redin RD, Marks GW, Antoniak CE (1963) Symmetry limitations to polarization of polycrystalline ferroeleetrics. J Appl Phys 34 600-610 Rogacheva NN (1994) The theory of shells and plates. CRC Press, Dordrecht Safari A (1994) Development of piezoeleetrie eomposites for transducers. J Phys III France 4 1129-1149... [Pg.182]

Tabib-Azar M (1997) Microactuators Electrical, magnetic, thermal, optical, mechanical, chemical and smart structures. Kluwer, Series in Electronic Materials Science and Technology, Norwell, MA... [Pg.183]

Uchino K (1997) Piezoelectric actuators and ultrasonic motors. Kluwer series in Electronic materials Science and technology, Norwell, MA Uchino K (2000) Eerroelectric devices. Marcel Dekker, New York, NY Valasek J (1921) Piezo-electric and allied phenomena in Rochelle Salt. Phys Rev 17 475 81 Waanders JW (1991) Piezoelectric ceramics, properties and applications. Philips Components, Academic, New York... [Pg.184]

Uchino, K. (1995) Piezoelectric Actuators and Ultrasonic Motors. Electronic Materials Science Technology (ed. H.L. Tuller), Kluwer Academic Publ., Deventer. ISBN 978-07923-98-11-0, 354 pp. [Pg.317]


See other pages where Electronics materials science is mentioned: [Pg.400]    [Pg.60]    [Pg.400]    [Pg.239]    [Pg.79]    [Pg.60]    [Pg.311]    [Pg.427]    [Pg.1]    [Pg.7]    [Pg.322]    [Pg.323]    [Pg.600]   
See also in sourсe #XX -- [ Pg.410 , Pg.413 ]




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