Tag Archives: Devices

“Angioplasty, Various Techniques and Challenges in Treatment of Congenital and …” ed. by Thomas Forbes

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"Angioplasty, Various Techniques and Challenges in Treatment of Congenital and Acquired Vascular Stenoses" ed. by Thomas Forbes
InTeOpP | 2012 | ISBN: 953510084X 9789535100843 | 247 pages | PDF | 46 MB
This book provides an update on the current techniques and devices used to treat a wide variety of lesions.

“Angioplasty, Various Techniques and Challenges in Treatment of Congenital and …” ed. by Thomas Forbes
Contents
Preface
1 Percutaneous Angioplasty and Stenting for Mesenteric Ischaemia
2 Cerebral Hyperperfusion Syndrome After Angioplasty
3 Below the Knee Techniques: Now and Then
4 Investigation of the Oxidative Stress, the Altered Function of Platelets and Neutrophils, in the Patients with Peripheral Arterial Disease
5 Antithrombotic Therapy After Peripheral Angioplasty
6 Evidence-Based Invasive Treatments for Cerebral Vasospasm Following Aneurysmal Subarachnoid Hemorrhage
7 Angiography for Peripheral Vascular Intervention
8 Arterial Angioplasty in Congential Heart Disease
9 Carotid Angioplasty
10 Revascularization of Tibial and Foot Arteries: Below the Knee Angioplasty for Limb Salvage
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“Advanced Elastomers: Technology, Properties and Applications” ed. by Anna Boczkowska

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"Advanced Elastomers: Technology, Properties and Applications" ed. by Anna Boczkowska
InTeOpP | 2012 | ISBN: 9535107399 9789535107392 | 412 pages | PDF | 55 MB
This book provides an extensive overview of current trends in the area of elastomers and their composites from the chapters contributed by internationally recognized specialists. The book deals with novel synthesis, modelling and experimental methods in elastomers. This book addresses to industrial and academic researchers in the fields of physical, chemical, biological sciences and engineering.

“Advanced Elastomers: Technology, Properties and Applications” ed. by Anna Boczkowska
Contents include: new approach to crosslinking, liquid crystal elastomers, nanocomposites, smart elastomers, elastomers in microelectronics and microfluidics, elastomers in cement concrete and mortar, experimental testing and modelling.
Each section demonstrates how enhancements in materials, processes and characterization techniques can improve performance in the field of engineering. The book provides a unique opportunity to discover the latest research on elastomer advances from laboratories around the world.

Contents
Preface
Section 1: New Approach to Elastomer Cross I inking
1 Aspects Regarding Radiation Cross I inking of Elastomers
Section 2: Liquid Crystal Elastomers
2 Monitoring the Contractile Properties of Optically Patterned Liquid Crystal Based Elastomers
3 Polysiloxane Side-Chain Azobenzene-Containing Liquid Single Crystal Elastomers for Photo-Active Artificial Muscle-Like Actuators
Section 3: Elastomer Nanocomposites
4 Rubber Clay Nanocomposites
5 Pigment and Dye Modified Fillers as Elastomeric Additives
Section 4: Smart Elastomers
6 Microstructure and Properties of Magnetorheological Elastomers
7 Thermo-Shrinkable Elastomers
Section 5: Elastomers in Microelectronics and Microflu id ics
8 Elastomer Application in Microsystem and Microflu id ics
9 Elasto meric Electronics: A Microflu id ic Approach
10 Use of Silicone Elastomer-Based Microfluidic Devices and Systems in Reproductive Technologies
Section 6: Elastomers in Cement Concrete and Mortar
11 Technology, Properties and Application of NRL Elastomers
Section 7: Experimental Testing and Modelling of Elastomer Properties
12 Transmittance and Reflectance of an Imprinted Cholesteric Elastomer During a Segregation Process
13 Anelastic Behavior in Filled Elastomers Under Harmonic Loading Using Distributed Rate-Dependent Elasto-Slide Elements
14 Modelling Friction and Abrasive Wear of Elastomers
15 The Significance of Equi-Biaxial Bubble Inflation in Determining Elasto meric Fatigue Properties
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“Advanced Topics on Crystal Growth” ed. by Sukarno Olavo Ferreira

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"Advanced Topics on Crystal Growth" ed. by Sukarno Olavo Ferreira
InTeOpP | 2013 | ISBN: 9535110101 9789535110101 | 432 pages | PDF | 41 MB
The objective of this book is not to cover all areas of crystal growth but just present, as specified in the title, important selected topics, as applied to organic and inorganic systems. All authors have been selected for being key researchers in their field of specialization, working in important universities and research labs around the world. This book is mostly recommended for students working in the field of crystal growth and for scientists and engineers in the fields of crystalline materials, crystal engineering and the industrial applications of crystallization processes.

“Advanced Topics on Crystal Growth” ed. by Sukarno Olavo Ferreira
Crystal growth is the key step of a great number of very important applications. The development of new devices and products, from the traditional microelectronic industry to pharmaceutical industry and many others, depends on crystallization processes.
The first section is mainly devoted to biological systems and covers topics like proteins, bone and ice crystallization.
The second section brings some applications to inorganic systems and describes more general growth techniques like chemical vapor crystallization and electrodeposition.

Contents
Preface
Section 1 Biological and Other Organic Systems
1 Proteins and Their Ligands: Their Importance and Howto Crystallize Them
2 Purification of Erythromycin by Antisolvent Crystallization orAzeotropic Evaporative Crystallization
3 Crystal Growth of Inorganic and Biomediated Carbonates and Phosphates
4 Direction Controlled Growth of Organic Single Crystals by Novel Growth Methods
5 Characterizations of Functions of Biological Materials Having Controlling-Ability Against Ice Crystal Growth
6 The Mineralization of Bone and Its Analogies with Other Hard Tissues
7 Modeling Ice Crystal Formation of Water in Biological System
8 Crystallization: From the Conformerto the Crystal
Section 2 Inorganic Systems
9 Chemical Vapor Transport Reactions-Methods, Materials, Modeling
10 Growth and Development of Sapphire Crystal for LED Applications
11 Crystal Growth by Electrodeposition with Supercritical Carbon Dioxide Emulsion
12 Inorganic Nanostructures Decorated Graphene
13 Metal Chalcogenides Tetrahedral Molecular Clusters: Crystal Engineering and Properties
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“Acoustic Waves: From Microdevices to Helioseismology” ed. by Marco G. Beghi

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"Acoustic Waves: From Microdevices to Helioseismology" ed. by Marco G. Beghi
InTeOpP | 2011 | ISBN: 9533075724 9789533075723 | 665 pages | PDF | 51 MB
This book presents several aspects of the active research ongoing in the field of Acoustic Waves. Theoretical efforts are leading to a deeper understanding of phenomena, also in complicated environments like the solar surface boundary. A whole class of widespread microdevices, including filters and sensors, is based on the behaviour of acoustic waves propagating in thin layers. The search for better performances is driving to new materials for these devices, and to more refined tools for their analysis.

“Acoustic Waves: From Microdevices to Helioseismology” ed. by Marco G. Beghi
Contents
Part 1 Theoretical and Numerical Investigations of Acoustic Waves
1 Analysis of Acoustic Wave in Homogeneous and Inhomogeneous Media Using Finite Element Method
2 Topological Singularities in Acoustic Fields due to Absorption of a Crystal
3 An Operational Approach to the Acoustic Analogy Equations
4 Exact Solutions Expressible in Hyperbolic and Jacobi Elliptic Functions of Some Important Equations of Ion-Acoustic Waves
5 A coustic Wave
Part 2 Acoustic Waves as Investigative Tools
6 Acoustic Waves: A Probe for the Elastic Properties of Films
7 Evaluation Method for Anisotropic Drilling Characteristics of the Formation by Using Acoustic Wave Information
8 Machinery Faults Detection Using Acoustic Emission Signal
9 Compensation of Ultrasound Attenuation in Photoacoustic Imaging
10 Low Frequency Acoustic Devices for Viscoelastic Complex Media Characterization
11 Modeling of Biological Interfacial Processes Using Thickness-Shear Mode Sensors
12 Analysis of Biological Acoustic Waves by Means of the Phase-Sensitivity Technique
13 Photoacoustic Technique Applied to Skin Research: Characterization of Tissue, Topically Applied Products and Transdermal Drug Delivery
14 Acoustic-Gravity Waves in the Ionosphere During Solar Eclipse Events
Part 3 Acoustic Waves as Manipulative Tools
15 Use of Acoustic Waves for Pulsating Water Jet Generation
16 Molecular Desorption by Laser-Driven Acoustic Waves: Analytical Applications and Physical Mechanisms
17 Excitation of Periodical Shock Waves in Solid-State Optical Media (Yb:YAG, Glass) at SBS of Focused Low-Coherent Pump Radiation: Structure Changes, Features of Lasing
18 An Optimal Distribution of Actuatorsin Active Beam Vibration: Some Aspects, Theoretical Considerations
Part 4 Acoustic Wave Based Microdevices
19 Multilayered Structure as a Novel Material for Surface Acoustic Wave Devices: Physical Insight
20 SAW Parameters Analysis and Equivalent Circuit of SAW Device
21 Sources of Third-Order Intermodulation Distortion in Bulk Acoustic Wave Devices: A Phenomenological Approach
22 Shear Mode Piezoelectric Thin Film Resonators
23 Polymer Coated Rayleigh SAW and STW Resonators for Gas Sensor Applications
24 Ultrananocrystalline Diamond as Material for Surface Acoustic Wave Devices
25 Aluminum Nitride (AIN) Film Based Acoustic Devices: Material Synthesis and Device Fabrication
26 Surface Acoustic Wave Devices for Harsh Environment
27 Applications of In-Fiber Acousto-Optic Devices
28 Surface Acoustic Waves and Nano-Electromechanical Systems
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Hierarchical Nanostructures for Energy Devices

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Hierarchical Nanostructures for Energy Devices by Seung H Ko and Costas P Grigoropoulos
English | 2014 | ISBN: 1849736286 | 322 pages | PDF | 15 MB

Hierarchical Nanostructures for Energy Devices
Surface area has a directly relationship with the efficiency of energy devices. Hierarchical nanostructuring has the potential to greatly increase surface area, and their electrical properties are favourable, not only to energy generation and storage, but also energy-consuming electronic circuits.

This book provides systematic coverage of how nanostructured materials can be applied to energy devices, with an emphasis on the process of generation to storage and consumption. The fundamentals (including properties, characterisation and synthesis) are clearly presented across the first chapters of the book, providing readers new to the field with a clear overview of this expanding topic. The detailed discussion of applications will be an inspiration to those already well-versed in the field.

The editors have more than a decade of experience in working on all aspects of energy generation and storage – in academia, national laboratories and industry. The book presents a balanced view from all sectors and is presented in a format accessible by postgraduate students and professional researchers alike.
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Hierarchical Nanostructures for Energy Devices

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Hierarchical Nanostructures for Energy Devices by Seung H Ko and Costas P Grigoropoulos
English | 2014 | ISBN: 1849736286 | 322 pages | PDF | 15 MB

Hierarchical Nanostructures for Energy Devices
Surface area has a directly relationship with the efficiency of energy devices. Hierarchical nanostructuring has the potential to greatly increase surface area, and their electrical properties are favourable, not only to energy generation and storage, but also energy-consuming electronic circuits.

This book provides systematic coverage of how nanostructured materials can be applied to energy devices, with an emphasis on the process of generation to storage and consumption. The fundamentals (including properties, characterisation and synthesis) are clearly presented across the first chapters of the book, providing readers new to the field with a clear overview of this expanding topic. The detailed discussion of applications will be an inspiration to those already well-versed in the field.

The editors have more than a decade of experience in working on all aspects of energy generation and storage – in academia, national laboratories and industry. The book presents a balanced view from all sectors and is presented in a format accessible by postgraduate students and professional researchers alike.
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Microfluidics in Detection Science: Lab-on-a-chip Technologies

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Microfluidics in Detection Science: Lab-on-a-chip Technologies by Fatima H Labeed and Henry O Fatoyinbo
English | 2014 | ISBN: 1849736383 | 294 pages | PDF | 4,4 MB

Microfluidics in Detection Science: Lab-on-a-chip Technologies
The concept of a miniaturised laboratory on a disposable chip is now a reality, and in everyday use in industry, medicine and defence. New devices are launched all the time, prompting the need for a straightforward guide to the design and manufacture of lab-on-a-chip (LOC) devices.

This book presents a modular approach to the construction and integration of LOC components in detection science. The editors have brought together some of the leading experts from academia and industry to present an accessible guide to the technology available and its potential. Several chapters are devoted to applications, presenting both the sampling regime and detection methods needed. Further chapters describe the integration of LOC devices, not only with each other but also into existing technologies.

With insights into LOC applications, from biosensing to molecular and chemical analysis, and presenting scaled-down versions of existing technology alongside unique approaches that exploit the physics of the micro and nano-scale, this book will appeal to newcomers to the field and practitioners requiring a convenient reference.
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Rare-Earth Implanted MOS Devices for Silicon Photonics: Microstructural, Electrical and Optoelectronic Properties

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Rare-Earth Implanted MOS Devices for Silicon Photonics: Microstructural, Electrical and Optoelectronic Properties by Lars Rebohle and Wolfgang Skorupa
English | 2010-10-21 | ISBN: 3642144462 | PDF | 220 pages | 3 MB

Rare-Earth Implanted MOS Devices for Silicon Photonics: Microstructural, Electrical and Optoelectronic Properties
The book concentrates on the microstructural, electric and optoelectronic properties of rare-earth implanted MOS structures and their use as light emitters in potential applications. It describes the structural formation processes in the gate oxide during fabrication and under operation, how this microstructure development will affect the electrical device performance and how both microstructure and electrical characteristics determine the optoelectronic features of the light emitters. However, most of the discussed physical processes as well as the described fabrication methods and device characterization techniques are of general interest and are beyond the scope of this type of light emitter. The book will be of value to engineers, physicists, and scientists dealing either with Si based photonics in particular or optoelectronic device fabrication and characterization in general.
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Rare-Earth Implanted MOS Devices for Silicon Photonics: Microstructural, Electrical and Optoelectronic Properties

FREEDownload : Rare-Earth Implanted MOS Devices for Silicon Photonics: Microstructural, Electrical and Optoelectronic Properties

Rare-Earth Implanted MOS Devices for Silicon Photonics: Microstructural, Electrical and Optoelectronic Properties by Lars Rebohle and Wolfgang Skorupa
English | 2010-10-21 | ISBN: 3642144462 | PDF | 220 pages | 3 MB

Rare-Earth Implanted MOS Devices for Silicon Photonics: Microstructural, Electrical and Optoelectronic Properties
The book concentrates on the microstructural, electric and optoelectronic properties of rare-earth implanted MOS structures and their use as light emitters in potential applications. It describes the structural formation processes in the gate oxide during fabrication and under operation, how this microstructure development will affect the electrical device performance and how both microstructure and electrical characteristics determine the optoelectronic features of the light emitters. However, most of the discussed physical processes as well as the described fabrication methods and device characterization techniques are of general interest and are beyond the scope of this type of light emitter. The book will be of value to engineers, physicists, and scientists dealing either with Si based photonics in particular or optoelectronic device fabrication and characterization in general.
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