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1. Software for the frontiers of quantum chemistry: An overview of developments in the Q-Chem 5 package

2. TD-DFT spin-adiabats with analytic nonadiabatic derivative couplings

3. The Requisite Electronic Structure Theory To Describe Photoexcited Nonadiabatic Dynamics: Nonadiabatic Derivative Couplings and Diabatic Electronic Couplings

4. Birefringent Stable Glass with Predominantly Isotropic Molecular Orientation

5. Analysis of Localized Diabatic States beyond the Condon Approximation for Excitation Energy Transfer Processes

6. An Efficient, Augmented Surface Hopping Algorithm That Includes Decoherence for Use in Large-Scale Simulations

7. Advances in molecular quantum chemistry contained in the Q-Chem 4 program package

8. Exploring non-Condon effects in a covalent tetracene dimer: how important are vibrations in determining the electronic coupling for singlet fission?

9. Calculating Derivative Couplings between Time-Dependent Hartree-Fock Excited States with Pseudo-Wavefunctions

10. Derivative Couplings between Time-Dependent Density Functional Theory Excited States in the Random-Phase Approximation Based on Pseudo-Wavefunctions: Behavior around Conical Intersections

11. Derivative couplings and analytic gradients for diabatic states, with an implementation for Boys-localized configuration-interaction singles

12. Optimal diabatic states based on solvation parameters

13. Diabatic couplings for charge recombination via Boys localization and spin-flip configuration interaction singles

14. Publisher's Note: 'Derivative couplings between TDDFT excited states obtained by direct differentiation in the Tamm-Dancoff approximation' [J. Chem. Phys. 141, 024114 (2014)]

15. Derivative couplings between TDDFT excited states obtained by direct differentiation in the Tamm-Dancoff approximation

16. Communication: An inexpensive, variational, almost black-box, almost size-consistent correction to configuration interaction singles for valence excited states

17. Analytic derivative couplings between configuration-interaction-singles states with built-in electron-translation factors for translational invariance

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