Quantum chemical valence parameters of several carbonyl molecules in the ground and excited states are calculated by invoking the INDO-orthogonal gradient method in an MC-SCF framework. These parameters are then used to construct state-specific structural descriptions of these molecules in terms of superposition of several canonical structures. Photochemical reactivities of some of these molecules are sought to be explained on the basis of the picture that emerges
Computational de novo design of new drugs and materials requires rigorous and unbiased exploration o...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
To compare aspects of theoretical and experimental models of molecules, we employ the results of qua...
An complete overview on various methodologies for determining molecular structure by means of quantu...
This volume focuses on the use of quantum theory to understand and explain experiments in organic ch...
Physical principles of the simulating of structure, spectral-luminescence, and lasing properties of ...
In the last decade, quantum chemical approaches have shown their potential in solving chemical probl...
Abstract- Configuration interaction calculations, based on Complete Active Space SCF wavefunctions, ...
A variant of the orthogonal gradient method of orbital optimization in the INDO-MCSCF framework has ...
The performance of the V<SUB>N-1</SUB> potential model at the INDO/2 level of approximation in the c...
A brief summary of the author’s research projects for deepening and extending the quantum principles...
Electronically excited molecules play an important role in photochemical reactions. Up to the presen...
Within the framework of direct and inverse structure-properties problems of optics and spectroscopy,...
The term “computational chemistry ” is used to mean many different things. It could mean, for exampl...
Within the framework of direct and inverse structure-properties problems of optics and spectroscopy,...
Computational de novo design of new drugs and materials requires rigorous and unbiased exploration o...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
To compare aspects of theoretical and experimental models of molecules, we employ the results of qua...
An complete overview on various methodologies for determining molecular structure by means of quantu...
This volume focuses on the use of quantum theory to understand and explain experiments in organic ch...
Physical principles of the simulating of structure, spectral-luminescence, and lasing properties of ...
In the last decade, quantum chemical approaches have shown their potential in solving chemical probl...
Abstract- Configuration interaction calculations, based on Complete Active Space SCF wavefunctions, ...
A variant of the orthogonal gradient method of orbital optimization in the INDO-MCSCF framework has ...
The performance of the V<SUB>N-1</SUB> potential model at the INDO/2 level of approximation in the c...
A brief summary of the author’s research projects for deepening and extending the quantum principles...
Electronically excited molecules play an important role in photochemical reactions. Up to the presen...
Within the framework of direct and inverse structure-properties problems of optics and spectroscopy,...
The term “computational chemistry ” is used to mean many different things. It could mean, for exampl...
Within the framework of direct and inverse structure-properties problems of optics and spectroscopy,...
Computational de novo design of new drugs and materials requires rigorous and unbiased exploration o...
A combined strategy that unifies our interacting quantum atoms approach (IQA), a chemically intuitiv...
To compare aspects of theoretical and experimental models of molecules, we employ the results of qua...