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Fingerprint Dive into the research topics where Hiromi Nakai is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

Chemical Compounds

Density functional theory
Molecular orbitals
Excited states
Molecules
Electrons
Electron correlations
Ions
Metals
Atoms
Molecular dynamics
Hydrogen
Chemical bonds
Wave functions
Hamiltonians
Reducing Agents
Ground state
Excitation energy
Electronic structure
Electroless plating
Oxidation
Computer simulation
Atomization
Solvation
Protons
Ammonia
Water
Adsorption
Polyenes
Catalyst activity
Dimers
Thermochemistry
Carbon Monoxide
Correlation methods
Carbon
Nuclear energy
Decomposition
Carrier concentration
Anions
Costs
Ficusin
Potential energy
Born approximation
Geometry
Oxygen
Oxides
Electrolytes
Quantum chemistry
Dehydrogenation
Tropolone
Kinetic energy

Physics & Astronomy

Physics

orbitals
molecular orbitals
flux density
electrons
gradients
ground state
ions
protons
wave functions
translational motion
elimination
atoms
valence
perturbation
potential energy

General

density functional theory
energy
self consistent fields
scaling
molecular dynamics
electronics
configuration interaction
evaluation
interactions
simulation
thermochemistry
solvation
electronic structure
metals
electroless deposition
functionals
collisions
metal surfaces
expansion
decomposition

Engineering

excitation
atomizing

Chemistry and Materials

molecules
ammonia
oxidation
water
chemical bonds
adsorption
ethylene
hydrogen
dimers

Mathematical and Computer Sciences

symmetry
perturbation theory
Born-Oppenheimer approximation
linearity

Engineering & Materials Science

Density functional theory
Excited states
Molecular orbitals
Ions
Electroless plating
Atoms
Molecules
Oxidation
Molecular dynamics
Chemical bonds
Metals
Electrons
Electron correlations
Atomization
Catalyst activity
Adsorption
Computer simulation
Quantum chemistry
Excitation energy
Electrolytes
Solvation
Dehydrogenation
Electron emission
Sodium
Reducing agents
Ethylene
Hydrogen
Chemical activation
Hydrides
Oxides
Water
Acetonitrile
Proton transfer
Wave functions
Negative ions
Lithium
Protons
Ground state
Ammonia
Epoxidation
Perovskite
Correlation methods
Positive ions
Electronic structure
Liquids
Formaldehyde
Decomposition
Magnesium