Tag Archives: Surface

Start Your Engines Surface Vehicle Sketches & Renderings from the Drawthrough Collection – by Scott Robertson

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Start Your Engines Surface Vehicle Sketches & Renderings from the Drawthrough Collection – by Scott Robertson
Language: English
Publisher: Design Studio Press (2006)
ISBN-10: 1933492139 | ISBN-13: 978-1933492131 | PDF | 354 MB
Start Your Engines compiles works from Scott Robertson's vast archives of ground vehicle drawings and renderings, and features the following chapters: Cars, Bicycles, Snowcraft Mechanimals and selected work from the conceptual design of vehicles for the video games Field Commander and Spy Hunter 2. The Cars chapter comprises about half of this book and features original designs both futuristic and retrospective.

Start Your Engines Surface Vehicle Sketches & Renderings from the Drawthrough Collection – by Scott Robertson
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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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Atomically-Precise Methods for Synthesis of Solid Catalysts

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Atomically-Precise Methods for Synthesis of Solid Catalysts by Sophie Hermans and Thierry Visart de Bocarme
English | 2014 | ISBN: 1849738297 | 316 pages | PDF | 14 MB

Atomically-Precise Methods for Synthesis of Solid Catalysts
There is much interest in preparing catalysts with specific structures for a desired catalytic activity. Although there has been a great amount of research into correlating particles sizes and microstructure to catalytic activity, knowledge about practical catalysts still remain ill-defined. The current challenge is now to understand atomic control.

provides an overview of recent developments in heterogeneous catalysts preparation which aim at controlling the microstructure of such catalysts at the atomic scale. Each chapter provides a different synthetic approach to achieve atomic-scale control along techniques to characterize the atomically-precise solids. Topics covered include bimetallic supported catalysts from single-source precursors zeolite-supported molecular metal complex catalyst, surface organometallic chemistry, atomic layer deposition and electron microscopy of catalysts.

Edited by active researchers in the area, the book aims to bridge the gap between surface science and heterogeneous catalysis. The book is suitable for graduate students as well as researchers in academia in industry from various disciplines including engineering, inorganic/organometallic chemistry, surface science and physical chemistry interested in catalyst design.
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“Advances in Electrocardiograms: Methods and Analysis” ed. by Richard M. Millis

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"Advances in Electrocardiograms: Methods and Analysis" ed. by Richard M. Millis
InTeOpP | 2012 | ISBN: 9533079231 9789533079233 | 401 pages | PDF | 20 MB
This volume lays the groundwork for understanding the technical aspects of these advancements. This volume is complemented with anatomical diagrams, electrocardiogram recordings, flow diagrams and algorithms which demonstrate the most modern principles of electrocardiography. The five sections of this volume, Cardiac Anatomy, ECG Technique, ECG Features, Heart Rate Variability and ECG Data Management, provide comprehensive reviews of advancements in the technical and analytical methods for interpreting and evaluating electrocardiograms.

“Advances in Electrocardiograms: Methods and Analysis” ed. by Richard M. Millis
The chapters which form this volume describe how the technical impediments inherent to instrument-patient interfacing, recording and interpreting variations in electrocardiogram time intervals and morphologies, as well as electrocardiogram data sharing have been effectively overcome. The advent of novel detection, filtering and testing devices are described. Foremost, among these devices are innovative algorithms for automating the evaluation of electrocardiograms.

Contents
Part 1 Cardiac Structure and Function
1 Cardiac Anatomy
Part 2 ECG Technique
2 Low-Frequency Response and the Skin-Electrode Interface in Dry-Electrode Electrocardiography
3 Implantation Techniques of Leads for Left Ventricular Pacing in Cardiac Resynchronization Therapy and Electrocardiographic Consequences of the Stimulation Site
4 Non Contact Heart Monitoring
5 Automated Selection of Optimal ECG Lead Using Heart Instantaneous Frequency During Sleep
Part 3 ECG Feature Analysis
6 A Novel Technique for ECG Morphology Interpretation and Arrhythmia Detection Based on Time Series Signal Extracted from Scanned ECG Record
7 QT Interval and QT Variability
8 The Electrocardiogram – Waves and Intervals
9 Quantification of Ventricular Repolarization Dispersion Using Digital Processing of the Surface ECG
10 Medicines and QT Prolongation
11 Concealed Conduction
12 Recognition of Cardiac Arrhythmia by Means of Beat Clustering on ECG-Holter Recordings
Part 4 Heart Rate Variability
13 Electrocardiographic Analysis of Heart Rate Variability in Aging Heart
14 Changes of Sympathovagal Balance Measured by Heart Rate Variability in Gastroparetic Patients Treated with Gastric Electrical Stimulation
15 Associations of Metabolic Variables with Electrocardiographic Measures of Sympathovagal Balance in Healthy Young Adults
Part 5 ECG Signal Processing
16 An Analogue Front-End System with a Low-Power On-Chip Filter and ADC for Portable ECG Detection Devices
17 Electrocardiogram in an MRI Environment: Clinical Needs. Practical Considerations. Safety Implications. Technical Solutions and Future Directions
18 Customized Heart Check System by Using Integrated Information of Electrocardiogram and Plethysmogram Outside the Driver's Awareness from an Automobile Steering Wheel
19 Independent Component Analysis in ECG Signal Processing
Part 6 ECG Data Management
20 Broadening the Exchange of Electrocardiogram Data from Intra-Hospital to Inter-Hospital
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“Advanced Plasma Spray Applications” ed. by Hamidreza Salimi Jazi

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"Advanced Plasma Spray Applications" ed. by Hamidreza Salimi Jazi
InTeOpP | 2012 | ISBN: 9535103490 9789535103493 | 248 pages | PDF | 20 MB
Some state-of-the-art studies of advanced applications of plasma spraying such as nanostructure coatings, surface modifications, biomaterial deposition, and anti wear and corrosion coatings are presented in this book.

“Advanced Plasma Spray Applications” ed. by Hamidreza Salimi Jazi
Contents
Preface
Part 1 Plasma Spray for Corrosion and Wear Resistance
1 Thermal Sprayed Coatings Used Against Corrosion and Corrosive Wear
2 The Influence of Dry Particle Coating Parameters on Thermal Coatings Properties
3 Isothermal Oxidation Behavior of Plasma Sprayed MCrAlY Coatings
4 Analysis of Experimental Results of Plasma Spray Coatings Using Statistical Techniques
Part 2 Plasma Spray in Biomaterials Applications
5 Plasma Sprayed Bioceramic Coatings on Ti-Based Substrates: Methods for Investigation of Their Crystallographic Structures and Mechanical Properties
6 Effect of Hydrothermal Self-Healing and Intermediate Strengthening Layers on Adhesion Reinforcement of Plasma-Sprayed Hydroxyapatite Coatings
Part 3 Plasma Spray in Nanotechnology Applications
7 Solution and Suspension Plasma Spraying of Nanostructure Coatings
8 A Solid State Approach to Synthesis Advanced Nanomaterials for Thermal Spray Applications
Part 4 Plasma Spray in Polymer Applications
9 Atmospheric Pressure Plasma Jet Induced Graft-Polymerization for Flame Retardant Silk
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Fabric Printing at Home: Quick and Easy Fabric Design Using Fresh Produce and Found Objects

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Fabric Printing at Home: Quick and Easy Fabric Design Using Fresh Produce and Found Objects – Includes Print Blocks, Textures, Stencils, Resists, and More by Julie B. Booth
2014 | ISBN: 1592539521 | English | 128 pages | PDF | 21 MB

Fabric Printing at Home: Quick and Easy Fabric Design Using Fresh Produce and Found Objects
You don't have to be a fashion designer to create your own amazing fabrics! Fabric Printing at Home will show you how to print your own custom fabrics using everyday items from the kitchen and around the house! With tons of color photos, step-by-step instructions, and helpful hints, you will be crafting your very own fabric designs in no time! Learn to make print blocks, rubbing plates, stencils, and fabric resists from a wide range kitchen materials. See how your favorite fruits and veggies create perfect shapes and texture patterns for your fabrics and how to upcycle simple materials for surface design. This family-friendly guide shows how to make fantastic, colorful fabric designs with accessible, non-toxic materials.
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Fabric Printing at Home: Quick and Easy Fabric Design Using Fresh Produce and Found Objects

FREEDownload : Fabric Printing at Home: Quick and Easy Fabric Design Using Fresh Produce and Found Objects

Fabric Printing at Home: Quick and Easy Fabric Design Using Fresh Produce and Found Objects – Includes Print Blocks, Textures, Stencils, Resists, and More by Julie B. Booth
2014 | ISBN: 1592539521 | English | 128 pages | PDF | 21 MB

Fabric Printing at Home: Quick and Easy Fabric Design Using Fresh Produce and Found Objects
You don't have to be a fashion designer to create your own amazing fabrics! Fabric Printing at Home will show you how to print your own custom fabrics using everyday items from the kitchen and around the house! With tons of color photos, step-by-step instructions, and helpful hints, you will be crafting your very own fabric designs in no time! Learn to make print blocks, rubbing plates, stencils, and fabric resists from a wide range kitchen materials. See how your favorite fruits and veggies create perfect shapes and texture patterns for your fabrics and how to upcycle simple materials for surface design. This family-friendly guide shows how to make fantastic, colorful fabric designs with accessible, non-toxic materials.
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Mean Curvature Flow and Isoperimetric Inequalities

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Manuel Ritoré, Carlo Sinestrari, Vicente Miquel, Joan Porti, "Mean Curvature Flow and Isoperimetric Inequalities"
2010 | pages: 121 | ISBN: 303460212X | PDF | 1,6 mb

Mean Curvature Flow and Isoperimetric Inequalities
Geometric flows have many applications in physics and geometry. The mean curvature flow occurs in the description of the interface evolution in certain physical models. This is related to the property that such a flow is the gradient flow of the area functional and therefore appears naturally in problems where a surface energy is minimized. The mean curvature flow also has many geometric applications, in analogy with the Ricci flow of metrics on abstract riemannian manifolds. One can use this flow as a tool to obtain classification results for surfaces satisfying certain curvature conditions, as well as to construct minimal surfaces. Geometric flows, obtained from solutions of geometric parabolic equations, can be considered as an alternative tool to prove isoperimetric inequalities. On the other hand, isoperimetric inequalities can help in treating several aspects of convergence of these flows. Isoperimetric inequalities have many applications in other fields of geometry, like hyperbolic manifolds.
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