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2 INPUT
2.1 Introduction
Running the program
Structure of the input
Keywords
Minimal input
2.2 Main Options
Parallel Execution
Run Types
Atomic Coordinates
Geometry Optimization
Transition State
Linear Transit
Intrinsic Reaction Coordinate
Climbing-Image Nudged Elastic Band
Optimization: Special Features
Frequencies
Smoothing of Gradients
Fragments
QM/MM
Density Functional
Relativistic effects
Solvent effects: COSMO
Discrete Solvent Reaction Field Model: DRF
Frozen-Density Embedding: FDE
Electric Field: Homogeneous and Point Charges
MM Dispersion
Time-dependent DFT: Excitation Energies, (Hyper) Polarizabilities
ESR
EFG
Electronic Configuration
Multiplet States
Precision and Self-Consistency
Interpretation of Input
Restarts
Printed Output
ASCII Output Files with Atomic Coordinates
2.3 More Options
General
Geometry
Hamiltonian
Properties and Analysis
Precision
Control of Program Flow
Technical Settings
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