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Q-Chem 5.1 User's Manual : Converging SCF Calculations
Q-Chem 5.1 User's Manual : Converging SCF Calculations

Starting SCF calculations by superposition of atomic densities - Van Lenthe  - 2006 - Journal of Computational Chemistry - Wiley Online Library
Starting SCF calculations by superposition of atomic densities - Van Lenthe - 2006 - Journal of Computational Chemistry - Wiley Online Library

Q-Chem 5.1 User's Manual : Alphabetical Listing of $rem Variables
Q-Chem 5.1 User's Manual : Alphabetical Listing of $rem Variables

Assessment of Initial Guesses for Self-Consistent Field Calculations.  Superposition of Atomic Potentials: Simple yet Efficient. - Abstract -  Europe PMC
Assessment of Initial Guesses for Self-Consistent Field Calculations. Superposition of Atomic Potentials: Simple yet Efficient. - Abstract - Europe PMC

Qchem Manual 4.1 | Hartree–Fock Method | Solid State Chemistry
Qchem Manual 4.1 | Hartree–Fock Method | Solid State Chemistry

Excited state orbital optimization via minimizing the square of the  gradient: General approach and application to singly and doubly excited  states via density functional theory – arXiv Vanity
Excited state orbital optimization via minimizing the square of the gradient: General approach and application to singly and doubly excited states via density functional theory – arXiv Vanity

Step Nine: Collaboration with Other Quantum Chemistry Softwares
Step Nine: Collaboration with Other Quantum Chemistry Softwares

Q-Chem 4.3 User's Manual : Dual-Basis Self-Consistent Field Calculations
Q-Chem 4.3 User's Manual : Dual-Basis Self-Consistent Field Calculations

PDF) An assessment of initial guesses for self-consistent field  calculations. Superposition of Atomic Potentials: simple yet efficient
PDF) An assessment of initial guesses for self-consistent field calculations. Superposition of Atomic Potentials: simple yet efficient

How can we calculate the emission spectrum of a molecule using Gaussian?
How can we calculate the emission spectrum of a molecule using Gaussian?

PDF) Advances in methods and algorithms in a modern quantum chemistry  program package
PDF) Advances in methods and algorithms in a modern quantum chemistry program package

Q-Chem 5.1 User's Manual : Converging SCF Calculations
Q-Chem 5.1 User's Manual : Converging SCF Calculations

PDF) Q-Chem 3.0: A high-performance quantum chemistry program package for  molecular electronic structure calculations CONTRIBUTING AUTHOR LIST | Emil  Proynov - Academia.edu
PDF) Q-Chem 3.0: A high-performance quantum chemistry program package for molecular electronic structure calculations CONTRIBUTING AUTHOR LIST | Emil Proynov - Academia.edu

PDF) σ-SCF: A Direct Energy-targeting Method To Mean-field Excited States
PDF) σ-SCF: A Direct Energy-targeting Method To Mean-field Excited States

Understanding the many-body expansion for large systems. I. Precision  considerations: The Journal of Chemical Physics: Vol 141, No 1
Understanding the many-body expansion for large systems. I. Precision considerations: The Journal of Chemical Physics: Vol 141, No 1

Excited-State Methods | Q-Chem
Excited-State Methods | Q-Chem

QChem Manual | Modern Physics | Computational Chemistry
QChem Manual | Modern Physics | Computational Chemistry

Q-Chem 2.0: A High-Performance Ab Initio Electronic Structure Program  Package
Q-Chem 2.0: A High-Performance Ab Initio Electronic Structure Program Package

QuantumChemistry500
QuantumChemistry500

QChem Manual | Modern Physics | Computational Chemistry
QChem Manual | Modern Physics | Computational Chemistry

Q-Chem 5.1 User's Manual : Theoretical Background
Q-Chem 5.1 User's Manual : Theoretical Background

QCLAB
QCLAB

Understanding the many-body expansion for large systems. I. Precision  considerations: The Journal of Chemical Physics: Vol 141, No 1
Understanding the many-body expansion for large systems. I. Precision considerations: The Journal of Chemical Physics: Vol 141, No 1