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This practical guide describes the basic computational methodologies for catalysis and materials science at an introductory level;
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security, and increasing consumer demand for portable electronics. Computational methods are now an integral and indispensable part of the;
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Catalysis and Electrocatalysis at Nanoparticle Surfaces illustrates the latest developments in electrochemical nanotechnology;
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Catalysis and Electrocatalysis at Nanoparticle Surfaces illustrates the latest developments in electrochemical nanotechnology;
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; and the industrial application of electrocatalytic materials for electrochemical reactions. This is an essential resource for scientists;
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for materials structure-property relations. Written with an approach that recognizes the necessity of the engineering computational mechanics;
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tissues, food safety, pharmacy, and many more.This volume is intended for upper-level undergraduate and graduate students;
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Molecular modeling encompasses applied theoretical approaches and computational techniques to model structures and properties of molecular;
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preparation and characterization of carbon supports and carbon-supported catalysts; carbon surface chemistry in catalysis; the description;
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In Computational Methods in Organometallic Catalysis: From Elementary Reactions to Mechanisms, distinguished chemist and author Yu Lan delivers a synthesis;
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Biochemistry for Materials Science: Catalysis, Complexes and Proteins unlocks recent developments in the field of biochemistry through;
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Computational methods for the modeling and simulation of the dynamic response and behavior of particles, materials and structural systems;
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strategies, computational methods and simulation in various scientific and engineering disciplines. The conference creates a platform for presenting;
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unique combination of state-of-the-art theory and computational and experimental methods, emphasizing molecular understanding of fuel cell;
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host material for constructing artificial photosynthesis systems. As an earth-abundant oxide, silica is an ideal and basic material for;
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for an introduction into 2D materials-based cross-disciplinary research.;
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This reference offers tools for engineers, scientists, biologists, and others working with the computational techniques of nanophotonics;
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This reference offers tools for engineers, scientists, biologists, and others working with the computational techniques of nanophotonics;
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aerosols, sputtering, and epitaxy.Audience An Introduction to Modeling and Simulation of Particulate Flows is written for computational scientists;
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. It also provides an overview of state-of-the-art software and tools. Case studies illustrate the power of materials informatics in guiding;
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Engineers and scientists alike will find this book to be an excellent introduction to the topic of porous materials, in particular the;
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engineering. The book consists of three parts: an extensive introduction to the concepts of surface structure and composition, a techniques section;
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figures, 218 tables, and 812 equations, this book is an invaluable reference source for graduate and undergraduate students, researchers;
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volume is ideal for researchers and engineers, and can be used in a first-year course for graduate students with an interest in the computational;
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This work serves as a reference for engineers and scientific personnel specializing in computational methods. It contains a collection;
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and apply CombiSci concepts* Discusses the development and use of CombiSci for the systematic and accelerated investigation of new phenomena;
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This comprehensive volume brings together an extensive collection of systematic computer-aided tools and methods developed in recent years;
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