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“Advances in Crystallization Processes” ed. by Yitzhak Mastai

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"Advances in Crystallization Processes" ed. by Yitzhak Mastai
InTeOpP | 2012 | ISBN: 9535105817 9789535105817 | 659 pages | PDF | 51 MB
This book provides the latest research developments in many aspects of crystallization including: chiral crystallization, crystallization of nanomaterials and the crystallization of amorphous and glassy materials. This book is of interest to both fundamental research and also to practicing scientists and will prove invaluable to all chemical engineers and industrial chemists in the process industries as well as crystallization workers and students in industry and academia.

“Advances in Crystallization Processes” ed. by Yitzhak Mastai
Crystallization is used at some stage in nearly all process industries as a method of production, purification or recovery of solid materials. In recent years, a number of new applications have also come to rely on crystallization processes such as the crystallization of nano and amorphous materials.

Contents
Section 1 Chiral crystallization
1 Separation of the Mixtures of Chiral Compounds by Crystallization
2 Crystallization on Self Assembled Monolayers
3 Asymmetric Reaction Using Molecular Chirality Controlled by Spontaneous Crystallization
Section 2 Crystallization of amorphous and glassy materials
4 Preparation of Na+ Superionic Conductors by Crystallization of Glass
5 Crystallization Kinetics of Metallic Glasses
6 Crystallization Kinetics of Amorphous Materials
7 Thermodynamics of Enthalpy Relaxation and Hole Formation of Polymer Glasses
8 Crystallization Behavior and Control of Amorphous Alloys
Section 3 Crystallization of nanomaterials
9 Influence of Crystallization on the Properties of Sn02 Thin Films
10 Crystallization of Sub-Micrometer Sized ZSM-5 Zeolites in SDA-Free Systems
11 The Growth of Chalcedony (Nanocrystalline Silica) in Electric Organs from Living Marine Fish
12 Synthesis and Characterization of Crystalline Zirconium Titanate Obtained by Sol-Gel
13 Characterization of Sol-Gel-Derived and Crystallized ??2, Zr02, Zr02-Y203 Thin Films on Si(001) Wafers with High Dielectric Constant
14 Crystalization in Spinel Ferrite Nanoparticles
Section 4 Bulk Crystallization from Aqueous Solutions
15 Separation of Uranyl Nitrate Hexahydrate Crystal from Dissolver Solution of Irradiated Fast Neutron Reactor Fuel
16 Stable and Metastable Phase Equilibria in the Salt-Water Systems
17 'Salt Weathering' Distress on Concrete by Sulfates?
18 Crystallization, Alternation and Recrystallization of Sulphates
Section 5 General issues in crystallization
19 Synthetic Methods for Perovskite Materials – Structure and Morphology
20 Phase Behavior and Crystal Structure of Binary Polycyclic Aromatic Compound Mixtures
21 Structure of Pure Aluminum After Endogenous and Exogenous Inoculation
22 Phosphoramidates: Molecular Packing and Hydrogen Bond Strength in Compounds Having a P(0)(N)n(0)3-n (n = 1, 2, 3) Skeleton
23 Synthesis and X-Ray Crystal Structure of a-Keggin-Type Aluminum-Substituted Polyoxotungstate
24 The Diffusion Model of Grown-ln Microdefects Formation During Crystallization of Dislocation-Free Silicon Single Crystals
25 Preparation of Carvedilol Spherical Crystals Having Solid Dispersion Structure by the Emulsion Solvent Diffusion Method and Evaluation of Its in vitro Characteristics
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Biomechanics of Skeletal Muscles

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Biomechanics of Skeletal Muscles by Vladimir Zatsiorsky and Boris Prilutsky
English | 2012 | ISBN: 0736080201 | 536 pages | PDF | 8,6 MB
Richly illustrated and presented in clear, concise language, Biomechanics of Skeletal Muscles is an essential resource for those seeking advanced knowledge of muscle biomechanics. Written by leading experts Vladimir Zatsiorsky and Boris Prilutsky, the text is one of the few to look at muscle biomechanics in its entirety-from muscle fibers to muscle coordination-making it a unique contribution to the field.

Biomechanics of Skeletal Muscles
Using a blend of experimental evidence and mechanical models, Biomechanics of Skeletal Muscles provides an explanation of whole muscle biomechanics at work in the body in motion. The book first addresses the mechanical behavior of single muscles-from the sarcomere level up to the entire muscle. The architecture of human muscle, the mechanical properties of tendons and passive muscles, the biomechanics of active muscles, and the force transmission and shock absorption aspects of muscle are explored in detail. Next, the various issues of muscle functioning during human motion are addressed. The transformation from muscle force to joint movements, two-joint muscle function, eccentric muscle action, and muscle coordination are analyzed.

This advanced text assumes some knowledge of algebra and calculus; however, the emphasis is on understanding physical concepts. Higher-level computational descriptions are placed in special sections in the later chapters of the book, allowing those with a strong mathematical background to explore this material in more detail. Readers who choose to skip over these sections will find that the book still provides a strong conceptual understanding of advanced topics.

Biomechanics of Skeletal Muscles also contains numerous special features that facilitate readers' comprehension of the topics presented. More than 300 illustrations and accompanying explanations provide an extensive visual representation of muscle biomechanics. Refresher sidebars offer brief reminders of mathematical and biomechanical concepts, and From the Literature sidebars present practical examples that illustrate the concepts under discussion. Chapter summaries and review questions provide an opportunity for reflection and self-testing, and reference lists at the end of each chapter provide a starting point for further study.

Biomechanics of Skeletal Muscles offers a thorough explanation of whole muscle biomechanics, bridging the gap between foundational biomechanics texts and scientific literature. With the information found in this text, readers can prepare themselves to better understand the latest in cutting-edge research.

Biomechanics of Skeletal Muscles is the third volume in the Biomechanics of Human Motion series. Advanced readers in human movement science gain a comprehensive understanding of the biomechanics of human motion as presented by one of the world's foremost researchers on the subject, Dr. Vladimir Zatsiorsky. The series begins with Kinematics of Human Motion, which details human body positioning and movement in three dimensions; continues with Kinetics of Human Motion, which examines the forces that create body motion and their effects; and concludes with Biomechanics of Skeletal Muscles, which explains the action of the biological motors that exert force and produce mechanical work during human movement.
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Drying of Polymeric and Solid Materials: Modelling and Industrial Applications by Jean-Maurice Vergnaud

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Drying of Polymeric and Solid Materials: Modelling and Industrial Applications by Jean-Maurice Vergnaud
English | Oct 4, 2013 | ISBN: 1447119568 | 336 Pages | PDF | 21,6 MB

Drying of Polymeric and Solid Materials: Modelling and Industrial Applications by Jean-Maurice Vergnaud
Drying of Polymeric and Solid Materials shows for the first time how the process of drying can be enhanced by combining mathematical and numerical models with experiments. The main advantages of this method are a significant saving of time and money. Numerical modelling can predict the kinetics of drying and the profiles of liquid concentration through the solid. This helps in the selection of optimal operational conditions. The simulation of the process is also crucial in the assessment of diffusity and the rate of evaporation.
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Physics for Game Developers

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Physics for Game Developers by David M. Bourg
O'Reilly Media | Nov 15 2001 | ISBN: 0596000065 | Pages: 336 | PDF | 3.93 MB
Colliding billiard balls. Missile trajectories. Cornering dynamics in speeding cars. By applying the laws of physics, you can realistically model nearly everything in games that bounces around, flies, rolls, slides, or isn't sitting still, to create compelling, believable content for computer games, simulations, and animation. Physics for Game Developers serves as the starting point for enriching games with physics-based realism.

Physics for Game Developers
Part one is a mechanics primer that reviews basic concepts and addresses aspects of rigid body dynamics, including kinematics, force, and kinetics. Part two applies these concepts to specific real-world problems, such as projectiles, boats, airplanes, and cars. Part three introduces real-time simulations and shows how they apply to computer games. Although you don't need to be a physics expert to understand Physics for Game Developers, the author does assume you have a basic college-level understanding of classical physics. It should also be noted that the examples are written in standard C and use Windows API functions.
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Enzyme Kinetics: Rapid-Equilibrium Applications of Mathematica (Methods of Biochemical Analysis)

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Robert A. Alberty, "Enzyme Kinetics: Rapid-Equilibrium Applications of Mathematica (Methods of Biochemical Analysis)"
English | ISBN: 0470639326 | 2011 | PDF | 456 pages | 16.9 MB

Enzyme Kinetics: Rapid-Equilibrium Applications of Mathematica (Methods of Biochemical Analysis)
Rapid-Equilibrium Enzyme Kinetics helps readers emphasize the estimation of kinetic parameters with the minimum number of velocity measurements, thereby reducing the amount of laboratory work necessary, and allowing more time for the consideration of complicated mechanisms. The book systematically progresses through six levels of understanding the enzyme-catalyzed reaction.
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FBL Klein-Vogelbach Functional Kinetics praktisch angewandt: Brustkorb, Arme und Kopf untersuchen und behandeln

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FBL Klein-Vogelbach Functional Kinetics praktisch angewandt: Brustkorb, Arme und Kopf untersuchen und behandeln By Barbara Suppé, Matthias Bongartz
2013 | 102 Pages | ISBN: 3642207251 | PDF | 9 MB

FBL Klein-Vogelbach Functional Kinetics praktisch angewandt: Brustkorb, Arme und Kopf untersuchen und behandeln
FBL Functional Kinetics – viele Bausteine, ein Konzept
Bewegungsanalyse, Therapeutische Übungen, Behandlungstechniken, Ballübungen, Atemtechniken … – die FBL bietet viele Ideen und Maßnahmen zur individuellen Behandlung von Patienten. Es lohnt sich, wenn Sie sich mit den analytischen Denkprozessen und Strategien dieses Konzepts vertraut machen.
Denken und (Be-)Handeln im Sinne der FBL
Wie das geht, zeigt Ihnen die mehrbändige „klinische“ Buchreihe. Jeder Band beschäftigt sich mit Untersuchung und Behandlung eines funktionellen Körperabschnitts bzw. therapierelevanter Bewegungsabläufe:
Band 1: Becken und Beine
Band 2: Brustkorb, Arme, Kopf
Band 3: Das Gehen
Band 4: Die normale Bewegung
Band 2: Die Körperabschnitte Brustkorb, Arme und Kopf
Sie erfahren hier, veranschaulicht mit vielen Abbildungen, Grundsätzliches über die FBL-Prinzipien und v.a. alles praktisch Wichtige über die Untersuchungs- und Interventionsverfahren:
der klinische Denkprozess (mit Praxisbeispiel)
die „normale Bewegung“
Bewegungsanalyse – Vergleich des Bewegungsverhaltens von Patienten mit der Idealmotorik (nach Klein-Vogelbach)
standardisierte Aktivitätstests für die Beurteilung von Bewegungsqualität und Bewegungskontrolle
typische Bewegungsstörungen und mögliche therapeutische Interventionenalle diese Aspekte veranschaulicht in einem ausführlichen Patientenbeispiel
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Molecular Theory of the Living Cell: Concepts, Molecular Mechanisms & Biomedical Application

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Molecular Theory of the Living Cell: Concepts, Molecular Mechanisms, and Biomedical Applications
English | 2012 | ISBN: 1461421519 | PDF | 772 pages | 11 Mb
This book presents a comprehensive molecular theory of the living cell based on over thirty concepts, principles and laws imported from thermodynamics, statistical mechanics, quantum mechanics, chemical kinetics, informatics, computer science, linguistics, semiotics, and philosophy.

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