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Periodical
ChemEngineering.
Author:
ISSN: 23057084 Year: 2017 Publisher: Basel : MDPI AG,


Periodical
Advances in materials science and engineering.
Author:
ISSN: 16878434 16878442 Year: 2008 Publisher: New York, NY : Hindawi Pub. Corp.

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Periodical
Materials engineering = : Materiálové inžinierstvo.
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ISSN: 13350803 13386174 Year: 1994 Publisher: Žilina : Faculty of Mechanical Engineering, University of Žilina

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Thermoreversible networks. 130 : viscoelastic properties and structure of gels
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ISBN: 3540618570 354070731X Year: 1997 Publisher: Berlin : Springer,

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This review shows that the measurement of viscoelastic properties is a powerful tool in the study of thermoreversible gels. Although many conclusions may be drawn about network development and its structure, it is also shown that the use of additional techniques (e.g. small angle S-ray and neutron scattering techniques and optical rotation) and the combination with thermodynamics and network models, widens the insight in the crosslinking process and the gel structure temendously. A general Introduction is followed by eight Chapters concerning synthetic polymers (PVC, PVAL, PMMA, PS, PAN, PE, ABA blockcopolymers and LCP's) and four Chapters concerning biopolymers (gelatin, agarose, carrageenans and gellan gum).

Dislocations in solids
Authors: ---
ISBN: 0444852697 0444864903 0444823700 0444509666 9786611038854 1281038857 0080530451 9786611311582 1281311588 0080535313 9780444823700 9780444864901 Year: 1979 Publisher: Amsterdam ; New York : North-Holland Pub. Co.,

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Dislocations are lines of irregularity in the structure of a solid analogous to the bumps in a badly laid carpet. Like these bumps, they can be easily moved, and they provide the most important mechanism by which the solid can be deformed. They also have a strong influence on crystal growth and on the electronic properties of semiconductors.


Periodical
Annual review of materials research
Author:
ISSN: 15317331 15454118 Year: 2001 Publisher: Palo Alto, Calif. Annual Reviews

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Annual Reviews is proud to publish authoritative, analytic reviews in 37 focused disciplines within the Biomedical, Life, Physical, and Social Sciences. Annual Reviews publications are among the most highly cited in scientific literature. Annual Reviews offers publications in print and online to individuals, institutions, and consortia throughout the world.

Handbook of microscopy for nanotechnology
Authors: ---
ISBN: 1402080034 9786610625352 1615833757 128062535X 1402080069 Year: 2005 Publisher: Boston : Kluwer Academic Publishers,

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Nanostructured materials take on an enormously rich variety of properties and promise exciting new advances in micromechanical, electronic, and magnetic devices as well as in molecular fabrications. The structure-composition-processing-property relationships for these sub 100 nm-sized materials can only be understood by employing an array of modern microscopy and microanalysis tools. Handbook of Microscopy for Nanotechnology aims to provide an overview of the basics and applications of various microscopy techniques for nanotechnology. This handbook highlights various key microcopic techniques and their applications in this fast-growing field. Topics to be covered include the following: scanning near field optical microscopy, confocal optical microscopy, atomic force microscopy, magnetic force microscopy, scanning turning microscopy, high-resolution scanning electron microscopy, orientational imaging microscopy, high-resolution transmission electron microscopy, scanning transmission electron microscopy, environmental transmission electron microscopy, quantitative electron diffraction, Lorentz microscopy, electron holography, 3-D transmission electron microscopy, high-spatial resolution quantitative microanalysis, electron-energy-loss spectroscopy and spectral imaging, focused ion beam, secondary ion microscopy, and field ion microscopy.


Periodical
Nature materials
Author:
ISSN: 14761122 14764660 Year: 2002 Publisher: London

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Nature Materials is a multidisciplinary journal aimed at bringing together cutting-edge research across the entire spectrum of materials science and technology. Nature Materials covers all applied and fundamental aspects of the synthesis/processing, structure/composition, properties and performance of materials. Nature Materials provides a forum for the development of a common identity among materials scientists while encouraging researchers to cross established subdisciplinary lines. To achieve this, Nature Materials takes an interdisciplinary, integrated and balanced approach to all areas of materials research while fostering the exchange of ideas between scientists involved in different communities.

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