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|a Defects and diffusion in carbon nanotubes.
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|a [Zürich, Switzerland] :
|b [Trans Tech Publications],
|c [2014]
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|c ©[2014]
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|a 1 online resource (178 pages)
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|a text
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|a Defect and Diffusion Forum ;
|v Volume 356
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|a Includes abstracts of papers published in scientific literature.
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|a Online resource; title from PDF cover (ebrary, viewed August 22, 2014).
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|a Defects and Diffusion in Carbon Nanotubes; Table of Contents; Abstracts.
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|a Carbon nanotubes are one of the newest materials to be discovered, being barely 20 years old. They are also the most promising one, with one particular sample of multi-walled nanotube attaining a tensile strength of 63GPa, and with carbon nanotubes in general having a specific strength of up to 48000kNm/kg: effectively a direct exploitation of the covalent sp 2 bonding between carbon atoms. Plastic deformation begins at about 5% strain. The nanotubes can be produced in lengths of up to 550mm, and thicknesses as small as 4.3Å; making them perfect reinforcement fibres for composites. They also h.
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|a Includes bibliographical references and indexes.
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546 |
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|a English.
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|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
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|a Nanotubes.
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|a Carbon.
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|a Nanostructured materials.
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|a Nanotubes
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|a Carbon
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|a Nanostructures
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|a Nanotubes.
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|a Carbone.
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|a Nanomatériaux.
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|a Nanostructured materials
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|a Nanotubes
|2 fast
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|i Print version:
|t Defects and diffusion in carbon nanotubes.
|d [Zürich, Switzerland] : [Trans Tech Publications], c[2014]
|h 173 pages
|k Diffusion and defect data. Pt. A, Defect and diffusion forum ; Volume 356
|z 9783038352198
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830 |
|
0 |
|a Diffusion and defect data.
|n Pt. A,
|p Defect and diffusion forum ;
|v v. 356.
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856 |
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