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Hubbard

In recent years, advances in experimental capabilities have fueled a great deal of activity in the study of the electrified solid-liquid interface. This has been the subject of a recent workshop and review article [145] discussing structural characterization, interfacial dynamics and electrode materials. The field of surface chemistry has also received significant attention due to many surface-sensitive means to interrogate the molecular processes occurring at the electrode surface. Reviews by Hubbard [146, 147] and others [148] detail the progress. In this and the following section, we present only a brief summary of selected aspects of this field. [Pg.202]

A. T. Hubbard, ed.. Surface Imaging and Visualization, CRC Press, Boca Raton, FL. [Pg.319]

Hubbard WB 1984 Planetary Interiors (New York Van Nostrand-Reinhold)... [Pg.1965]

Anisimov V i, Zaanen J and Andersen O K 1991 Band theory and Mott insuiators Hubbard U instead of Stoner / Phys. Rev. B 44 943... [Pg.2231]

Hubbard A T 1988 Electrochemistry at well characterized surfaces Chem. Rev. 88 633-56... [Pg.2756]

Brenner S E, C Chothia and T ] P Hubbard 1997. Population Statistics of Protein Structures Lessons from Structural Classifications. Current Opinion in Structural Biology 7 369-376. [Pg.574]

Moult J, T Hubbard, K Fldelis and J T Pedersen 1999. Critical Assessment of Methods of Protein Structure Prediction (CASP) Round III. Proteins Structure, Function and Genetics Suppl. 3 2-6. [Pg.576]

Murzin A G, S E Brenner, T Hubbard and C Chothia 1995. SCOP A Structural Classification of Proteins Database for the Investigation of Sequences and Structures. Journal of Molecular Biology 247 536-540. [Pg.576]

The hot mixes are designed by using a standard laboratory compaction procedure to develop a composition reflecting estabUshed criteria for volume percent air voids, total volume percent voids between aggregate particles, flow and stabdity, or compressive strength. Tests such as the Marshall, Unconfined Compression, Hubbard-Field, Triaxial Procedure, or the Hveem stabdometer method are used (109). [Pg.372]


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A Mott-Hubbard insulator

Anderson-Hubbard Hamiltonian

Band theory Hubbard model

Calculation of Hubbard U Born Effect

Degenerate Hubbard Hamiltonian

Effect of the Hubbard U on Anderson localization

Electron correlation Hubbard

Excitons Mott-Hubbard

Extended Hubbard Hamiltonian model

Hamiltonian Hiickel-Hubbard

Hamiltonian extended Hubbard

Hamiltonians Hubbard

Hamiltonians extended Hubbard model

Hubbard Brook Experimental Forest

Hubbard Brook Experimental Forest (New

Hubbard Brook Experimental Forest, USA

Hubbard Brook Experimental Forest, annual

Hubbard Calculations

Hubbard Hamiltonian

Hubbard Hamiltonian equation

Hubbard Hamiltonian, high temperature

Hubbard Model for Polyallyl Chain

Hubbard U

Hubbard U correction

Hubbard bands

Hubbard density wave

Hubbard equation

Hubbard interaction

Hubbard interaction potential

Hubbard intra-atomic energy

Hubbard model

Hubbard model extended

Hubbard model, half-filled

Hubbard operator

Hubbard parameter

Hubbard temperature)

Hubbard, John

Hubbard-I approach to lanthanide photoemission spectra

Hubbard-Peierls model

Hubbard-Stratonovich Transformation Field-Theoretic Reformulation of the Particle-Based Partition Function

Hubbard-Stratonovich Transformation and Fluctuating Fields

Hubbard-Stratonovich transformation

Interactions Hubbard model)

Local density approximation + Hubbard

Many-body Hamiltonians Hubbard model

Models Hubbard model

Models Hubbard-Peierls model

Models extended Hubbard Hamiltonian model

Mott-Hubbard

Mott-Hubbard compounds

Mott-Hubbard correlation energy

Mott-Hubbard criterion

Mott-Hubbard energy

Mott-Hubbard gap

Mott-Hubbard insulating state

Mott-Hubbard insulators

Mott-Hubbard localized states

Mott-Hubbard metal

Mott-Hubbard metal-insulator

Mott-Hubbard metal-insulator transition

Mott-Hubbard model

Mott-Hubbard transition

Motts Justification of Hubbard

One-band Hubbard model

Peierls-Hubbard Hamiltonian

Peierls-Hubbard dimer

Peierls-Hubbard model lattice

Semiconductor Mott-Hubbard

Slaters band-theory treatment of Mott-Hubbard insulators

Spin Permutation Formalism for Hubbard Model with Infinite Repulsion

Spin polarons and the Hubbard bands

The Hubbard intra-atomic energy

The Mott-Hubbard Insulating State

The Mott-Hubbard Metal-Insulator Transition

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