How do crystals nucleate and grow? Why and how do crystals form such a wide variety of morphologies? These questions have been posed since the seventeenth century, and are still vitally important for modern technology and understanding the Earth's interior and formation of minerals by living organisms. Including a range of case studies of complex systems, from diamond, calcite and pyrite to crystals formed through biomineralization, this book establishes the atomic processes behind crystal growth.
How do crystals nucleate and grow? Why and how do crystals form such a wide variety of morphologies? These questions have been posed since the sevente...
The molecular mechanisms underlying the fact that a crystal can take a variety of external forms is something we have come to understand only in the last few decades. This is due to recent developments in theoretical and experimental investigations of crystal growth mechanisms. Morphology of Crystals is divided into three separately available volumes. Part A contains chapters on roughening transition; equilibrium form; step pattern theory; modern PBC; and surface microtopography. This part provides essentially theoretical treatments of the problem, particularly the solid-liquid...
The molecular mechanisms underlying the fact that a crystal can take a variety of external forms is something we have come to understand only in the l...
The molecular mechanisms underlying the fact that a crystal can take a variety of external forms is something we have come to understand only in the last few decades. This is due to recent developments in theoretical and experimental investigations of crystal growth mechanisms. Morphology of Crystals is divided into three separately available volumes. Part A contains chapters on roughening transition; equilibrium form; step pattern theory; modern PBC; and surface microtopography. This part provides essentially theoretical treatments of the problem, particularly the solid-liquid...
The molecular mechanisms underlying the fact that a crystal can take a variety of external forms is something we have come to understand only in the l...
The molecular mechanisms underlying the fact that a crystal can take a variety of external forms is something we have come to understand only in the last few decades. This is due to recent developments in theoretical and experimental investigations of crystal growth mechanisms. Morphology of Crystals is divided into three separately available volumes. Part A contains chapters on roughening transition; equilibrium form; step pattern theory; modern PBC; and surface microtopography. This part provides essentially theoretical treatments of the problem, particularly the solid-liquid...
The molecular mechanisms underlying the fact that a crystal can take a variety of external forms is something we have come to understand only in the l...
The molecular mechanisms underlying the fact that a crystal can take a variety of external forms is something we have come to understand only in the last few decades. This is due to recent developments in theoretical and experimental investigations of crystal growth mechanisms. Morphology of Crystals is divided into three separately available volumes. Part A contains chapters on roughening transition; equilibrium form; step pattern theory; modern PBC; and surface microtopography. This part provides essentially theoretical treatments of the problem, particularly the solid-liquid...
The molecular mechanisms underlying the fact that a crystal can take a variety of external forms is something we have come to understand only in the l...