Reviews in Computational Chemistry, Volume 29 (Hardcover, Volume 29)


The Reviews in Computational Chemistry series brings together leading authorities in the field to teach the newcomer and update the expert on topics centered on molecular modeling, such as computer-assisted molecular design (CAMD), quantum chemistry, molecular mechanics and dynamics, and quantitative structure-activity relationships (QSAR). This volume, like those prior to it, features chapters by experts in various fields of computational chemistry. Topics in Volume 29 include: * Noncovalent Interactions in Density-Functional Theory * Long-Range Inter-Particle Interactions: Insights from Molecular Quantum Electrodynamics (QED) Theory * Efficient Transition-State Modeling using Molecular Mechanics Force Fields for the Everyday Chemist * Machine Learning in Materials Science: Recent Progress and Emerging Applications * Discovering New Materials via a priori Crystal Structure Prediction * Introduction to Maximally Localized Wannier Functions * Methods for a Rapid and Automated Description of Proteins: Protein Structure, Protein Similarity, and Protein Folding

R3,838
List Price R4,830
Save R992 21%

Or split into 4x interest-free payments of 25% on orders over R50
Learn more

Discovery Miles38380
Mobicred@R360pm x 12* Mobicred Info
Free Delivery
Delivery AdviceShips in 7 - 13 working days


Toggle WishListAdd to wish list
Review this Item

Product Description

The Reviews in Computational Chemistry series brings together leading authorities in the field to teach the newcomer and update the expert on topics centered on molecular modeling, such as computer-assisted molecular design (CAMD), quantum chemistry, molecular mechanics and dynamics, and quantitative structure-activity relationships (QSAR). This volume, like those prior to it, features chapters by experts in various fields of computational chemistry. Topics in Volume 29 include: * Noncovalent Interactions in Density-Functional Theory * Long-Range Inter-Particle Interactions: Insights from Molecular Quantum Electrodynamics (QED) Theory * Efficient Transition-State Modeling using Molecular Mechanics Force Fields for the Everyday Chemist * Machine Learning in Materials Science: Recent Progress and Emerging Applications * Discovering New Materials via a priori Crystal Structure Prediction * Introduction to Maximally Localized Wannier Functions * Methods for a Rapid and Automated Description of Proteins: Protein Structure, Protein Similarity, and Protein Folding

Customer Reviews

No reviews or ratings yet - be the first to create one!




Trending On Loot