Modeling and Simulation of Carbon Nanotubes Networks: Toward a Multiscale Approach

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (11 download)

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Book Synopsis Modeling and Simulation of Carbon Nanotubes Networks: Toward a Multiscale Approach by : Simone Colasanti

Download or read book Modeling and Simulation of Carbon Nanotubes Networks: Toward a Multiscale Approach written by Simone Colasanti and published by . This book was released on 2016 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Recent Developments in Modeling and Applications of Carbon Nanotubes

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ISBN 13 : 9788178954295
Total Pages : 201 pages
Book Rating : 4.9/5 (542 download)

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Book Synopsis Recent Developments in Modeling and Applications of Carbon Nanotubes by : Q. Wang

Download or read book Recent Developments in Modeling and Applications of Carbon Nanotubes written by Q. Wang and published by . This book was released on 2009-01-01 with total page 201 pages. Available in PDF, EPUB and Kindle. Book excerpt: Carbon nanotubes are macromolecules of carbon in a periodic hexagonal arrangement with a cylindrical shell shape. Carbon nanotubes have been subjected to extensive research, with subsequent predictions of extremely high strength and exceptional electronic and thermal properties. They also hold substantial promise as fibers in composites and other devices for the development of superconductive devices for micro-electro-mechanical and nano-electro-mechanical system applications. It is expected that the material has great potential in biological, medical, energy storage, sensor, and other applications. It has been broadly recognized that atomic modeling of carbon nanotube is a powerful tool for analysis of carbon nanotube. Due to massive computations involved, the atomic modeling is limited to systems with a small number of molecules and atoms. On the other hand, attempts at applying continuum mechanics models to better investigate the analysis of carbon nanotube with large sizes have been initiated. However, continuum models are unable to adequately capture the atomic structures of carbon nanotube, and the applicability of the models needs to be justified. Recently, developments of multiscale methods have been proposed to the analysis of carbon nanotube. This book is dedicated to the publication of recent developments in modeling of carbon nanotube via atomic modeling, continuum modeling and multiscale methods for predictions of mechanical, electronic, and thermal properties of carbon nanotube. A wide range of fundamentally theoretical, computational topics on modeling and applications of carbon nanotube will be covered in the book. In addition, applications of carbon nanotubes as nano-devices in atomic and molecular transportations and bistable devices in switching or memory elements in signal processing and communications are also reported. It is with great pleasure that we present this book that covers a very wide and varied range of subject areas in modeling and applications of carbon nanotubes. The first chapter employs molecular dynamics simulations to show macroscopic flows of atomic and molecular hydrogen, helium, and a mixture of both gases both inside and outside a carbon nanotube. In particular, the simulations show a nanoseparation effect of the two gases. The new results in the chapter show the mass selectivity of the nanopumping effect can be used to develop a highly selective filter for various gases. The second chapter introduces a fine continuum model that is developed by virtue of the higher-order continuum theory. Moreover, a mesh-free computational framework is developed to implement the numerical simulation of single- walled carbon nanotubes. The rationality of the higher-order continuum model and the efficiency of mesh-free method are illustrated and discussed in the chapter. The study on the mechanics of buckled single-walled and multiwalled carbon nanotubes, carbon nanotube bundles and coupling effect between adjacent carbon nanotubes is reported in chapter three. Simple expressions of the buckle wavelength, amplitude and critical strain for buckling are given analytically, which show good agreement with experiments. Chapter 4 investigate the applicability of elastic shell model in analysis of graphene and carbon nanotubes. The author reports that the elasticity of graphene should be modeled as a shell composed of 2-dimensional (2D) isotropic materials with proper parameters rather than conventional 3D materials based on calculations by density functional theory. In addition, the elasticity of single-walled carbon nanotube with relative large radius can also be modeled as a shell composed of 2D isotropic materials, whereas the elasticity of single-walled carbon nanotubes with relative small radius should be modeled as a more complicated shell with seven elastic constants rather than the orthotropic thin shell. Mechanical integrity of carbon nanotubes is summarized in chapter 5. Young s modulus for the resistance to the infinitesimal deformation and ultimate strength to the finite deformation are tabled, which have been obtained by experiments, molecular dynamics simulations, and ab-initio calculations. Also the recent continuous modeling of carbon nanotubes is sorted out in tracing its advancement in the chapter. Chapter 6 presents an overview of studies on the wave propagation and the vibrational properties in carbon nanotubes by computational modeling and simulation. The models include the atomic-based continuum model, the Euler-beam model, the Timoshenko beam model, and the three-dimensional elastic shell model. Chapter seven reports the investigations of torsional buckling of both single-walled and double-walled carbon nanotubes. In the study of doubled-walled carbon nanotubes via molecular dynamics, a newly revealed buckling mode with one or three thin local rims on the outer tube is discovered while the inner tube shows a helically aligned buckling mode in three dimensions. The distinct buckling modes of the two tubes imply the inapplicability of continuum mechanics modeling in which it is postulated that the buckling modes of the constituent tubes have the same shape. The mechanical properties of single walled carbon nanotubes under both tensile and torsion are investigated using classical molecular dynamics simulations in chapter 8, based on reactive empirical bond-order potential. Based on the predicted mechanical properties, it is predicted that nanotubes may represent new candidates for novel porous, flexible and high strength and tough materials, e.g. ideal as scaffolds in the regenerative medicine. Bistable devices have been widely used as switching or memory elements in signal processing and communications. The bistablity is generally realized electrically or optically. Due to their small size and unique mechanical properties, carbon nanotubes have been proposed to form bistable devices mechanically. The chapter 9 reviews the recent advances of mechanical bistable devices of carbon nanotubes. In the final chapter, the authors have discussed a theoretical model based on kinetic concept of fracture of solids and molecular mechanics simulations for studying the time-dependent behavior of single-walled carbon nanotubes. The major advantage of this model is that the problem of real-time molecular level simulation is circumvented. Compared with recently published data on creep rupture of SWCNT ropes, it is seen that the predictions by the present model is quite reasonable, thus setting up a framework for modeling the time-dependent behavior of carbon nanotubes and their composites. We would like to extend our sincere thanks to the authors for their contributions, especially their precious time and efforts invested in the book. We also would like to thank Transworld Research Network Publishers for the opportunity to publish the book to address very important and challenging issues. The support and love from our families are deeply appreciated.

Modeling of Carbon Nanotubes, Graphene and their Composites

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Publisher : Springer Science & Business Media
ISBN 13 : 3319012010
Total Pages : 341 pages
Book Rating : 4.3/5 (19 download)

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Book Synopsis Modeling of Carbon Nanotubes, Graphene and their Composites by : Konstantinos I. Tserpes

Download or read book Modeling of Carbon Nanotubes, Graphene and their Composites written by Konstantinos I. Tserpes and published by Springer Science & Business Media. This book was released on 2013-10-15 with total page 341 pages. Available in PDF, EPUB and Kindle. Book excerpt: A large part of the research currently being conducted in the fields of materials science and engineering mechanics is devoted to carbon nanotubes and their applications. In this process, modeling is a very attractive investigation tool due to the difficulties in manufacturing and testing of nanomaterials. Continuum modeling offers significant advantages over atomistic modeling. Furthermore, the lack of accuracy in continuum methods can be overtaken by incorporating input data either from experiments or atomistic methods. This book reviews the recent progress in continuum modeling of carbon nanotubes and their composites. The advantages and disadvantages of continuum methods over atomistic methods are comprehensively discussed. Numerical models, mainly based on the finite element method, as well as analytical models are presented in a comparative way starting from the simulation of isolated pristine and defected nanotubes and proceeding to nanotube-based composites. The ability of continuum methods to bridge different scales is emphasized. Recommendations for future research are given by focusing on what still continuum methods have to learn from the nano-scale. The scope of the book is to provide current knowledge aiming to support researchers entering the scientific area of carbon nanotubes to choose the appropriate modeling tool for accomplishing their study and place their efforts to further improve continuum methods.

Multiscale Molecular Modeling and Simulation of Carbon Nanotubes

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ISBN 13 :
Total Pages : 183 pages
Book Rating : 4.:/5 (96 download)

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Book Synopsis Multiscale Molecular Modeling and Simulation of Carbon Nanotubes by : Su Hoe Yeak

Download or read book Multiscale Molecular Modeling and Simulation of Carbon Nanotubes written by Su Hoe Yeak and published by . This book was released on 2007 with total page 183 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Mechanical Behaviors of Carbon Nanotubes

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Publisher : William Andrew
ISBN 13 : 0323431763
Total Pages : 463 pages
Book Rating : 4.3/5 (234 download)

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Book Synopsis Mechanical Behaviors of Carbon Nanotubes by : K.M. Liew

Download or read book Mechanical Behaviors of Carbon Nanotubes written by K.M. Liew and published by William Andrew. This book was released on 2016-12-25 with total page 463 pages. Available in PDF, EPUB and Kindle. Book excerpt: Mechanical Behaviors of Carbon Nanotubes: Theoretical and Numerical Approaches presents various theoretical and numerical studies on mechanical behaviors of carbon nanotubes. The main theoretical aspects included in the book contain classical molecular dynamics simulation, atomistic-continuum theory, atomic finite element method, continuum plate, nonlocal continuum plate, and shell models. Detailed coverage is also given to structural and elastic properties, trace of large deformation, buckling and post-buckling behaviors, fracture, vibration characteristics, wave propagation, and the most promising engineering applications. This book not only illustrates the theoretical and numerical methods for analyzing the mechanical behavior of carbon nanotubes, but also contains computational results from experiments that have already taken place. Covers various theoretical and numerical studies, giving readers a greater understanding of the mechanical behavior of carbon nanotubes Includes multiscale methods that provide the advantages of atomistic and continuum approaches, helping readers solve complex, large-system engineering problems Allows engineers to create more efficient carbon nanotube structures and devices

Mathematics Applied to Engineering in Action

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Publisher : CRC Press
ISBN 13 : 1000089835
Total Pages : 244 pages
Book Rating : 4.0/5 ( download)

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Book Synopsis Mathematics Applied to Engineering in Action by : Nazmul Islam

Download or read book Mathematics Applied to Engineering in Action written by Nazmul Islam and published by CRC Press. This book was released on 2021-03-21 with total page 244 pages. Available in PDF, EPUB and Kindle. Book excerpt: Mathematics Applied to Engineering in Action: Advanced Theories, Methods, and Models focuses on material relevant to solving the kinds of mathematical problems regularly confronted by engineers. This new volume explains how an engineer should properly define the physical and mathematical problem statements, choose the computational approach, and solve the problem by a proven reliable approach. It presents the theoretical background necessary for solving problems, including definitions, rules, formulas, and theorems on the particular theme. The book aims to apply advanced mathematics using real-world problems to illustrate mathematical ideas. This approach emphasizes the relevance of mathematics to engineering problems, helps to motivate the reader, and gives examples of mathematical concepts in a context familiar to the research students. The volume is intended for professors and instructors, scientific researchers, students, and industry professionals. It will help readers to choose the most appropriate mathematical modeling method to solve engineering problems.

Multiscale Methods and Application to the Mechanics of Carbon Nanotubes

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ISBN 13 :
Total Pages : 394 pages
Book Rating : 4.:/5 (927 download)

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Book Synopsis Multiscale Methods and Application to the Mechanics of Carbon Nanotubes by : Wenwei Jiang

Download or read book Multiscale Methods and Application to the Mechanics of Carbon Nanotubes written by Wenwei Jiang and published by . This book was released on 2015 with total page 394 pages. Available in PDF, EPUB and Kindle. Book excerpt: This dissertation presents a study on the multiscale simulation methods and their application in the mechanical analysis of carbon nanotubes (CNTs). More specifically, four parts of work are presented in four chapters. In the first chapter, a class of Generalized Matching/Forcing Boundary Conditions (GMBCs/GFBCs) is established for the coupled atomistic/continuum simulation of lattice dynamics. This work is an extension of the Matching Boundary Conditions (MBC) originally proposed by Tang et al. Using the combination of Fourier Transform Technique and generalization of MBC/FBC for arbitrary wave numbers, a more efficient GMBC/GFBC implementation is developed. In the second chapter, a study on the cross-linking formations between single-walled CNTs (SWCNTs) by thermal welding treatment through MD simulation is presented. The objective is to investigate the possible enhancement in the mechanical strength of carbon nanotubes bundle with thermal welding treatment. It is shown that, with the thermal welding treatment, the mechanical strength of carbon nanotubes bundle increases significantly compared with the one in pristine CNT bundles. In the third chapter, a coarse-grained (CGMD) model is established for CNT. Unlike the force field in atomistic model that employs the many-body potential, the force field of coarse-grained model are established for group of atoms. Due to this important feature, the coarse-grained model can be implemented on the large scale model that is much more expensive for the full atomistic model to simulate. In the fourth chapter, a novel approach named virtual atom cluster (VAC) rod model is proposed since the computational cost can still be high for CGMD in studying the mechanics of CNT yarns with dimensions that are at least at the micron meter range. In this approach, the Virtual Atom Cluster (VAC) model and the CGMD model are integrated to enable multiscale simulation of CNTs at length scales compatible with the experimental observation. Based on the work presented, it is concluded in chapter 5 that the multiscale methodologies established for CNTs are robust and efficient. In addition, perspectives on future applications of the multiscale methods are briefly outlined.

Conduction in Carbon Nanotube Networks

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Publisher : Springer
ISBN 13 : 331919965X
Total Pages : 178 pages
Book Rating : 4.3/5 (191 download)

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Book Synopsis Conduction in Carbon Nanotube Networks by : Robert A. Bell

Download or read book Conduction in Carbon Nanotube Networks written by Robert A. Bell and published by Springer. This book was released on 2015-06-13 with total page 178 pages. Available in PDF, EPUB and Kindle. Book excerpt: This thesis exploits the ability of the linear-scaling quantum mechanical code ONETEP to analyze systems containing many thousands of atoms. By implementing an electron transport capability to the code, it also investigates a range of phenomena associated with electrical conduction by nanotubes and, in particular, the process of transport electrons between tubes. Extensive work has been done on the conductivity of single carbon nanotubes. However, any realistic wire made of nanotubes will consist of a large number of tubes of finite length. The conductance of the resulting wire is expected to be limited by the process of transferring electrons from one tube to another.These quantum mechanical calculations on very large systems have revealed a number of incorrect claims made previously in the literature. Conduction processes that have never before been studied at this level of theory are also investigated.

Multiscale Modeling of Carbon Nanotube-based Nanocomposites Using Computational Mechanics Approach

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (12 download)

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Book Synopsis Multiscale Modeling of Carbon Nanotube-based Nanocomposites Using Computational Mechanics Approach by : Moosa Salim Moosa Al-Kharusi

Download or read book Multiscale Modeling of Carbon Nanotube-based Nanocomposites Using Computational Mechanics Approach written by Moosa Salim Moosa Al-Kharusi and published by . This book was released on 2016 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Handbook of Carbon Nanotubes

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Publisher : Springer Nature
ISBN 13 : 3030913465
Total Pages : 2099 pages
Book Rating : 4.0/5 (39 download)

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Book Synopsis Handbook of Carbon Nanotubes by : Jiji Abraham

Download or read book Handbook of Carbon Nanotubes written by Jiji Abraham and published by Springer Nature. This book was released on 2022-11-16 with total page 2099 pages. Available in PDF, EPUB and Kindle. Book excerpt: This Handbook covers the fundamentals of carbon nanotubes (CNT), their composites with different polymeric materials (both natural and synthetic) and their potential advanced applications. Three different parts dedicated to each of these aspects are provided, with chapters written by worldwide experts in the field. It provides in-depth information about this material serving as a reference book for a broad range of scientists, industrial practitioners, graduate and undergraduate students, and other professionals in the fields of polymer science and engineering, materials science, surface science, bioengineering and chemical engineering. Part 1 comprises 22 chapters covering early stages of the development of CNT, synthesis techniques, growth mechanism, the physics and chemistry of CNT, various innovative characterization techniques, the need of functionalization and different types of functionalization methods as well as the different properties of CNT. A full chapter is devoted to theory and simulation aspects. Moreover, it pursues a significant amount of work on life cycle analysis of CNT and toxicity aspects. Part 2 covers CNT-based polymer nanocomposites in approximately 23 chapters. It starts with a short introduction about polymer nanocomposites with special emphasis on CNT-based polymer nanocomposites, different manufacturing techniques as well as critical issues concerning CNT-based polymer nanocomposites. The text deeply reviews various classes of polymers like thermoset, elastomer, latex, amorphous thermoplastic, crystalline thermoplastic and polymer fibers used to prepare CNT based polymer composites. It provides detailed awareness about the characterization of polymer composites. The morphological, rheological, mechanical, viscoelastic, thermal, electrical, electromagnetic shielding properties are discussed in detail. A chapter dedicated to the simulation and multiscale modelling of polymer nanocomposites is an additional attraction of this part of the Handbook. Part 3 covers various potential applications of CNT in approximately 27 chapters. It focuses on individual applications of CNT including mechanical applications, energy conversion and storage applications, fuel cells and water splitting, solar cells and photovoltaics, sensing applications, nanofluidics, nanoelectronics and microelectronic devices, nano-optics, nanophotonics and nano-optoelectronics, non-linear optical applications, piezo electric applications, agriculture applications, biomedical applications, thermal materials, environmental remediation applications, anti-microbial and antibacterial properties and other miscellaneous applications and multi-functional applications of CNT based polymer nanocomposites. One chapter is fully focussed on carbon nanotube research developments: published papers and patents. Risks associated with carbon nanotubes and competitive analysis of carbon nanotubes with other carbon allotropes are also addressed in this Handbook.

Multiscale Simulation of the Mechanics of Carbon Nanotubes

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (517 download)

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Book Synopsis Multiscale Simulation of the Mechanics of Carbon Nanotubes by : Dong Qian

Download or read book Multiscale Simulation of the Mechanics of Carbon Nanotubes written by Dong Qian and published by . This book was released on 2002 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: The discovery of carbon nanotubes has trigged a significant amount of interest in the research community. This is very much due to its impressive physical properties, which were revealed from both theoretical prediction and experimental measurement. The properties such as high strength, high stiffness, low density and structural perfection could make them ideal for many mechanical applications. An up-to-date review on the mechanics of carbon nanotubes is provided. The focus is on mechanical properties, such as Young's modulus, tensile and compressive strength, and buckling criteria. Single scale computational approaches such as classical molecular dynamics and continuum models are outlined.

Multiscale Modeling with Carbon Nanotubes

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ISBN 13 :
Total Pages : 44 pages
Book Rating : 4.:/5 (727 download)

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Book Synopsis Multiscale Modeling with Carbon Nanotubes by :

Download or read book Multiscale Modeling with Carbon Nanotubes written by and published by . This book was released on 2006 with total page 44 pages. Available in PDF, EPUB and Kindle. Book excerpt: Technologically important nanomaterials come in all shapes and sizes. They can range from small molecules to complex composites and mixtures. Depending upon the spatial dimensions of the system and properties under investigation computer modeling of such materials can range from equilibrium and nonequilibrium Quantum Mechanics, to force-field-based Molecular Mechanics and kinetic Monte Carlo, to Mesoscale simulation of evolving morphology, to Finite-Element computation of physical properties. This brief review illustrates some of the above modeling techniques through a number of recent applications with carbon nanotubes: nano electromechanical sensors (NEMS), chemical sensors, metal-nanotube contacts, and polymer-nanotube composites.

Methods and Applications for Modeling and Simulation of Complex Systems

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Publisher : Springer Nature
ISBN 13 : 9819972434
Total Pages : 511 pages
Book Rating : 4.8/5 (199 download)

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Book Synopsis Methods and Applications for Modeling and Simulation of Complex Systems by : Fazilah Hassan

Download or read book Methods and Applications for Modeling and Simulation of Complex Systems written by Fazilah Hassan and published by Springer Nature. This book was released on 2023-10-12 with total page 511 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book constitutes the refereed proceedings of the 22nd Asia Simulation Conference on Methods and Applications for Modeling and Simulation of Complex Systems, AsiaSim 2023, held in Langkawi, Malaysia, during October 25–26, 2023. The 77 full papers included in this book were carefully reviewed and selected from 164 submissions. They were organized in topical sections as follows: Modelling and Simulation, Artificial intelligence, Industry 4.0, Digital Twins Modelling, Simulation and Gaming, Simulation for Engineering, Simulation for Sustainable Development, Simulation in Social Sciences.

Multiscale Modeling of Nanodevices Based on Carbon Nanotubes and Polymers

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ISBN 13 :
Total Pages : 175 pages
Book Rating : 4.:/5 (935 download)

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Book Synopsis Multiscale Modeling of Nanodevices Based on Carbon Nanotubes and Polymers by :

Download or read book Multiscale Modeling of Nanodevices Based on Carbon Nanotubes and Polymers written by and published by . This book was released on 2014 with total page 175 pages. Available in PDF, EPUB and Kindle. Book excerpt:

A Multiscale Methodology for Modeling Carbon Nanotube Mechanics with Discrete Element Method

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ISBN 13 :
Total Pages : 49 pages
Book Rating : 4.:/5 (654 download)

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Book Synopsis A Multiscale Methodology for Modeling Carbon Nanotube Mechanics with Discrete Element Method by : Tyler O. Anderson

Download or read book A Multiscale Methodology for Modeling Carbon Nanotube Mechanics with Discrete Element Method written by Tyler O. Anderson and published by . This book was released on 2010 with total page 49 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Modeling and Simulation of Carbon Nanotube Interconnects

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ISBN 13 :
Total Pages : 272 pages
Book Rating : 4.:/5 (75 download)

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Book Synopsis Modeling and Simulation of Carbon Nanotube Interconnects by : Vidur Parkash

Download or read book Modeling and Simulation of Carbon Nanotube Interconnects written by Vidur Parkash and published by . This book was released on 2010 with total page 272 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Modeling and Experimental Characterization of Nanocomposite Materials

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Publisher : MDPI
ISBN 13 : 3039286323
Total Pages : 130 pages
Book Rating : 4.0/5 (392 download)

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Book Synopsis Modeling and Experimental Characterization of Nanocomposite Materials by : Homayoun Hadavinia

Download or read book Modeling and Experimental Characterization of Nanocomposite Materials written by Homayoun Hadavinia and published by MDPI. This book was released on 2020-04-15 with total page 130 pages. Available in PDF, EPUB and Kindle. Book excerpt: This Special Issue gathers research from different branches of science and engineering disciplines working on experiments and modelling of nanocomposites into one volume. The Guest Editor welcomes papers dedicated to experimental, computational, and theoretical aspects dealing with many important state-of-the-art technologies and methodologies regarding the synthesis, fabrication, characterization, properties, design, and applications, and both finite element analysis and molecular dynamic simulations, of nanocomposite materials and structures. Full papers covering novel topics, extending the frontiers of the science and technology of nanoreinforced composites are encouraged. Reviews covering topics of major interest will be also considered.