£73.60

Springer Large-Scale Quantum-Mechanical Enzymology (Springer Theses)

Price data checked 5 days ago

View at Amazon

We'll watch every seller, every day. One email when your price arrives.

About as cheap as it gets. The only time it was cheaper was 2 months ago.

£74 today · all-time low £73 (Mar 2026) · usually £74

NEW HERE?

Amazon shows you one price. We show you all of them.

Tosheroon watches Amazon prices so you don't have to. Every product on Amazon has a price history — we make it visible. Set the price you'd actually pay, and we'll email you the second it gets there. No app, no account, one email.

WHAT'S ON THIS PAGE

↓ Price chart
when this has been cheap or pricey
↓ Forecast
where the price is heading next
↓ Statistics
all-time high & low, recent range
↑ Price alert
name your number, we'll email you

Price History & Forecast

Grey patches = out of stock. Cheaper = lower on the chart. Hover for exact prices.

Last 86 days • 86 data points (No recent data available)

Historical
Generating forecast...
£76.14 £73.03 £73.71 £74.39 £75.06 £75.74 £76.42 01 March 2026 22 March 2026 12 April 2026 03 May 2026 25 May 2026

Price Distribution

Price distribution over 86 days • 3 price levels

Days at Price
Current Price
21 days · current 38 days 27 days 0 10 19 29 38 £73 £74 £76 Days at Price

Price Analysis

Most common price: £74 (38 days, 44.2%)

Price range: £73 - £76

Price levels: 3 different prices over 86 days

Description

This work establishes linear-scaling density-functional theory (DFT) as a powerful tool for understanding enzyme catalysis, one that can complement quantum mechanics/molecular mechanics (QM/MM) and molecular dynamics simulations. The thesis reviews benchmark studies demonstrating techniques capable of simulating entire enzymes at the ab initio quantum-mechanical level of accuracy. DFT has transformed the physical sciences by allowing researchers to perform parameter-free quantum-mechanical calculations to predict a broad range of physical and chemical properties of materials. In principle, similar methods could be applied to biological problems. However, even the simplest biological systems contain many thousands of atoms and are characterized by extremely complex configuration spaces associated with a vast number of degrees of freedom. The development of linear-scaling density-functional codes makes biological molecules accessible to quantum-mechanical calculation, but has yet to resolve the complexity of the phase space. Furthermore, these calculations on systems containing up to 2,000 atoms can capture contributions to the energy that are not accounted for in QM/MM methods (for which the Nobel prize in Chemistry was awarded in 2013) and the results presented here reveal profound shortcomings in said methods. Review “The dissertation is beautifully written in clear, precise language. It reads, in fact, almost as a textbook, providing in successive chapters the history, theory, and computational methods as background, then proceeding to discussing a validation computation followed by a detailed analysis of the importance of analyzing boundary conditions, then concluding with an analysis based on total use of DFT, and final thoughts. Anyone interested in this area can learn a great deal from this work.” (G. R. Mayforth, Computing Reviews, April, 2016) From the Back Cover This work establishes linear-scaling density-functional theory  (DFT) as a powerful tool for understanding enzyme catalysis, one that can complement quantum mechanics/molecular mechanics (QM/MM) and molecular dynamics simulations. The thesis reviews benchmark studies demonstrating techniques capable of simulating entire enzymes at the ab initio quantum-mechanical level of accuracy. DFT has transformed the physical sciences by allowing researchers to perform parameter-free quantum-mechanical calculations to predict a broad range of physical and chemical properties of materials. In principle, similar methods could be applied to biological problems. However, even the simplest biological systems contain many thousands of atoms and are characterized by extremely complex configuration spaces associated with a vast number of degrees of freedom. The development of linear-scaling density-functional codes makes biological molecules accessible to quantum-mechanical calculation, but has yet to resolve the complexity of the phase space. Furthermore, these calculations on systems containing up to 2,000 atoms can capture contributions to the energy that are not accounted for in QM/MM methods (for which the Nobel prize in Chemistry was awarded in 2013), and the results presented here reveal profound shortcomings in said methods. About the Author Greg Lever obtained a first class M.Sc in Theoretical Physics from University College London (UCL) followed by a Ph.D. in Computational Enzymology at the Cavendish Laborator, University of Cambridge. He is now Postdoctoral Associate at the Massachusetts Institute of Technology (MIT) in the Department of Chemical Engineering.

Product Specifications

Format
paperback
Domain
Amazon UK
Release Date
15 October 2016
Listed Since
07 October 2016

Barcode

No barcode data available

Similar Products You Might Like

Computing the Optical Properties of Large Systems (Springer Theses)
83% match

Computing the Optical Properties of Large Systems (Springer Theses)

Springer

£76.38 25 May 2026
Photoinduced Molecular Dynamics in Solution: Multiscale Modelling and the Link to Ultrafast Experiments (Springer Theses)
81% match

Photoinduced Molecular Dynamics in Solution: Multiscale Modelling and the Link to Ultrafast Experiments (Springer Theses)

Springer

£74.35 25 May 2026
Transient Changes in Molecular Geometries and How to Model Them: Simulating Chemical Reactions of Metal Complexes in Solution to Explore Dynamics, ... and the Link to Experiment (Springer Theses)
80% match

Transient Changes in Molecular Geometries and How to Model Them: Simulating Chemical Reactions of Metal Complexes in Solution to Explore Dynamics, ... and the Link to Experiment (Springer Theses)

Springer

£75.68 25 May 2026
Transient Changes in Molecular Geometries and How to Model Them: Simulating Chemical Reactions of Metal Complexes in Solution to Explore Dynamics, ... and the Link to Experiment (Springer Theses)
80% match

Transient Changes in Molecular Geometries and How to Model Them: Simulating Chemical Reactions of Metal Complexes in Solution to Explore Dynamics, ... and the Link to Experiment (Springer Theses)

Springer

£75.68 11 May 2026
Quantum Chemistry of Solids: LCAO Treatment of Crystals and Nanostructures: 153 (Springer Series in Solid-State Sciences, 153)
80% match

Quantum Chemistry of Solids: LCAO Treatment of Crystals and Nanostructures: 153 (Springer Series in Solid-State Sciences, 153)

Springer

£148.05 25 May 2026
Density Functional Theory of Molecules, Clusters, and Solids: 12 (Understanding Chemical Reactivity, 12)
80% match

Density Functional Theory of Molecules, Clusters, and Solids: 12 (Understanding Chemical Reactivity, 12)

Springer

£107.98 25 May 2026
Electronic Density Functional Theory: Recent Progress and New Directions
80% match

Electronic Density Functional Theory: Recent Progress and New Directions

Springer

£111.68 27 May 2026
Electronic Density Functional Theory: Recent Progress and New Directions (Contributions to Global Historical)
79% match

Electronic Density Functional Theory: Recent Progress and New Directions (Contributions to Global Historical)

Springer

£120.66 25 May 2026
Dynamics and Characterization of Composite Quantum Systems (Springer Theses)
79% match

Dynamics and Characterization of Composite Quantum Systems (Springer Theses)

Springer

£75.45 25 May 2026
Optimised Projections for the Ab Initio Simulation of Large and Strongly Correlated Systems (Springer Theses)
79% match

Optimised Projections for the Ab Initio Simulation of Large and Strongly Correlated Systems (Springer Theses)

Springer

£73.82 25 May 2026
Quantum Dynamics of Complex Molecular Systems: 83 (Springer Series in Chemical Physics, 83)
79% match

Quantum Dynamics of Complex Molecular Systems: 83 (Springer Series in Chemical Physics, 83)

Springer

£107.98 24 May 2026
Computational Studies of Transition Metal Nanoalloys (Springer Theses)
79% match

Computational Studies of Transition Metal Nanoalloys (Springer Theses)

Springer

£73.60 25 May 2026
Multiscale and Multiphysics Computational Frameworks for Nano- and Bio-Systems (Springer Theses)
79% match

Multiscale and Multiphysics Computational Frameworks for Nano- and Bio-Systems (Springer Theses)

Springer

£76.38 24 May 2026
Non-equilibrium Energy Transformation Processes: Theoretical Description at the Level of Molecular Structures (Springer Theses)
78% match

Non-equilibrium Energy Transformation Processes: Theoretical Description at the Level of Molecular Structures (Springer Theses)

Springer

£74.15 21 May 2026
Practical Aspects of Computational Chemistry: Methods, Concepts and Applications
78% match

Practical Aspects of Computational Chemistry: Methods, Concepts and Applications

Springer

£108.92 24 May 2026
Quantal Density Functional Theory
78% match

Quantal Density Functional Theory

Springer

£76.38 27 May 2026
Quantum-Enhanced Nonlinear Spectroscopy (Springer Theses)
78% match

Quantum-Enhanced Nonlinear Spectroscopy (Springer Theses)

Springer

£75.02 25 May 2026
Theoretical Modeling of Vibrational Spectra in the Liquid Phase (Springer Theses)
78% match

Theoretical Modeling of Vibrational Spectra in the Liquid Phase (Springer Theses)

Springer

£73.85 25 May 2026
Quantum Mechanical Electronic Structure Calculations with Chemical Accuracy: 13 (Understanding Chemical Reactivity, 13)
78% match

Quantum Mechanical Electronic Structure Calculations with Chemical Accuracy: 13 (Understanding Chemical Reactivity, 13)

Springer

£91.62 30 May 2026
Time-Resolved Photoionisation Studies of Polyatomic Molecules: Exploring the Concept of Dynamophores (Springer Theses)
77% match

Time-Resolved Photoionisation Studies of Polyatomic Molecules: Exploring the Concept of Dynamophores (Springer Theses)

Springer

£73.53 25 May 2026
Quantum Systems in Chemistry and Physics. Trends in Methods and Applications: 16 (Topics in Molecular Organization and Engineering, 16)
77% match

Quantum Systems in Chemistry and Physics. Trends in Methods and Applications: 16 (Topics in Molecular Organization and Engineering, 16)

Springer

£107.98 25 May 2026
Polaritonic Chemistry: Manipulating Molecular Structure Through Strong Light–Matter Coupling (Springer Theses)
77% match

Polaritonic Chemistry: Manipulating Molecular Structure Through Strong Light–Matter Coupling (Springer Theses)

Springer

£75.10 25 May 2026
The Art of High Performance Computing for Computational Science, Vol. 2: Advanced Techniques and Examples for Materials Science
77% match

The Art of High Performance Computing for Computational Science, Vol. 2: Advanced Techniques and Examples for Materials Science

Springer

£73.67 15 May 2026
The Reaction Path in Chemistry: Current Approaches and Perspectives: 16 (Understanding Chemical Reactivity, 16)
77% match

The Reaction Path in Chemistry: Current Approaches and Perspectives: 16 (Understanding Chemical Reactivity, 16)

Springer

£107.72 25 May 2026