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1000 tulosta hakusanalla Crystal Coloring Books

Crystal Structure of Electroceramics
Electrical, optical, ionic and magnetic properties of ceramics are primarily dictated by their crystal structure. They can be improved by introducing impurities, creating long range order/short range order/disorder, engineering defects and utilising specific crystal anisotropy and orientation. This Special Issue is aimed at manuscripts focusing on the recent development of electroceramics and its relation to the crystallography, including the characterisation aspect.In particular, the topic of interest covers the review paper on principles, difficulties and progress of crystal structure determination and refinement from powder diffraction, and ferroelectricity in binary crystals. Other interesting piezoelectric, electrical conducting, dielectric and ferroelectric ceramics are reported with various crystal structural characterisation and microscopy techniques.
Crystal Indentation Hardness
Determinations of the indentation hardness properties of crystals have expanded to cover the full characterizations of their important elastic, plastic and cracking behaviors, particularly as accomplished with the increased measuring capabilities of nanoindentation hardness testing. No crystal structure of any bonding type is either too soft or too hard to prevent measurement with a suitable probing indenter. The current Special Issue is devoted to surveying the topic with emphasis given in a collection of reports to: (1) the diversity of crystals being tested; (2) the variety of measuring techniques; and (3) the wealth of information being obtained.
Crystal Dislocations Their Impact on Physical Properties of Crystals
The proposed existence of the edge and screw dislocation in the 1930s, and the subsequent work showing that dislocation theory could explain the plastic deformation of crystals, represent an important step in developing our understanding of materials into a science. The continued work involved with characterization of dislocations and linking them to a variety of physical properties in both single and poly crystals have made enormous progress over the past 50 years. It is rare to find a technical application involving a material with any crystal structure that is not impacted by dislocations; mechanical properties, massive phase transformations, interphases, crystal growth, electronic properties, the list goes on. In many systems the properties is controlled by the formation of partial dislocations separated by a stacking fault; for example plastic deformation via deformation twinning. And finally, giant strides have been made in characterization and modeling of systems containing dislocations. The Special Issue on "Crystal Dislocations" is intended to provide a unique international forum aimed at covering a broad range of results involving dislocations and their importance on crystal properties and crystal growth. Scientists working in a wide range of disciplines are invited to contribute to this cause. Dr. K. Peter D. Lagerlof, Associate Professor of CeramicsGuest Editor
Crystal Growth of Multifunctional Borates and Related Materials
Borate crystals are attractive for different technological applications because of their favorable physical and chemical properties like stability and high transparency, both high thermal and non-linear optical coefficients, making them ideal active media for highly efficient solid state lasers. In this Special Issue, different aspects of multifunctional borate crystals are discussed, including ortho- and oxyorthoborates and compounds with condensed anions, as well as their nonlinear optical and laser properties and piezoelectric characteristics. For this reason, complex investigations of the phase relationships in multi-component borate melts, the study of crystal growth conditions of novel high-temperature borates, and the development of the "crystallization conditions, composition, structure, and properties" concept will provide a scientific basis for growth technologies of high performance electronic and optical devices and components with a variety of industrial, medical and many other applications. In the meantime, these relationships can help to estimate the affinity of synthetic borate materials with their natural prototypes and structural analogues.
Crystal Growth of Intermetallics
Intermetallic compounds are in the focus of solid-state research for a wide range of future applications, e.g. in heterogeneous catalysis, for thermoelectric generators, and basic research of quantum critical effects. A comprehensive overview is given on various crystal growth techniques that are particularly adopted to intermetallic phases. Experienced authors from leading institutes give detailed descriptions of the specific problems in crystal growth of intermetallic compounds and approaches to solve them.
Crystal Growth Fundamentals

Crystal Growth Fundamentals

Peter Rudolph

De Gruyter
2025
isokokoinen pokkari
A profound knowledge about crystal growth fundamentals and processes is needed for nanocrystals, epitaxial thin films and bulk crystals which became significant as the centerpieces of micro- and optoelectronics, photonics, computing. The mastery of crystallization and epitaxial processes requires a profound interdisciplinary knowledge that combines chemistry, crystallography, material science, physics. This three-volume textbook presents the three pillars of experimental crystal growth: _Thermodynamics of crystallization. _Kinetics of crystallization. _Transport of heat and mass. Part 1: Thermodynamics of Crystallization.
Crystal Structure,Electronic and Optical Properties of Epitaxial Alkaline Earth Niobate Thin Films
This impressive thesis offers a comprehensive scientific study of the alkaline earth niobates and describes their nonlinear optical properties for the first time. It explores the crystal structure, electrical properties, optical absorption properties, hot carrier dynamics, nonlinear optical property and strain-induced metal to insulator transition of alkaline earth niobates using advanced experimental techniques. These alkaline earth niobates can have a strong plasmon resonance in the visible range due to their large carrier density, and this unique property gives rise to the emergent phenomenon of photocatalysis and nonlinear optical properties. This series of intrinsic plasmonic materials based on niobates, can be used as a photocatalyst to split water under sunlight, a novel saturable absorber in the high-power ultrashort pulsed laser system, and as a sensor in microelectromechanical systems.
Crystal Clear Crisis: The Rise of Methamphetamine Abuse and the Treatment Gap
"Crystal Clear Crisis: The Rise of Methamphetamine Abuse and the Treatment Gap" dives deep into the devastating world of methamphetamine addiction. It explores the alarming rise of meth use globally, with a specific focus on the concerning trends in communities like Cape Town. This book exposes the harsh reality of the treatment gap, where many struggling with addiction face substantial barriers to proper care. You'll learn why some users feel current treatments are ineffective or even harmful, leading to a sense of despair. "Crystal Clear Crisis" offers a balanced perspective, acknowledging shortcomings in treatment facilities while advocating for improved services tailored to community needs. Ultimately, the book offers a glimmer of hope, highlighting the importance of engagement strategies and psychosocial education to help individuals break free from the grip of meth.