Since the nowadays growing interest in assessing specific
chemical principles, the so called chemical action functional,
C dV rrr A )()( , its allied variational principle CA 0 and of its
consequences are employed in assessing chemical elemental
periodicity, bonding and reactivity. As such, the role of chemical
action concept and principle in chemical modeling is systematically
summarized and exemplified at various levels of comprehension, e.g.
in establishing the recent atomic scales of electronegativity, chemical
hardness, ionization potential and electronic affinity, as well as by
advancing the intriguing reformulation of the chemical bonding and of
electronic pairing along the chemical bond within density functional
and spinorial Dirac theories; equally, the role in entanglement and
tunneling phenomena specific to chemical catalysis and complex
ligand-receptor interaction are presented in an unitary manner allowing
effective conceptual interpretation of chemical phenomena in
analytical terms as well as providing the appropriate computational
framework for their quantization.
Since the nowadays growing interest in assessing specificchemical principles, the so called chemical action functional, C dV rrr A )()( , its allied variational principle CA 0 and of itsconsequences are employed in assessing chemical elementalperiodicity, bonding and reactivity. As such, the role of chemicalaction concept and principle in chemical modeling is systematicallysummarized and exemplified at various levels of comprehension, e.g.in establishing the recent atomic scales of electronegativity, chemicalhardness, ionization potential and electronic affinity, as well as byadvancing the intriguing reformulation of the chemical bonding and ofelectronic pairing along the chemical bond within density functionaland spinorial Dirac theories; equally, the role in entanglement andtunneling phenomena specific to chemical catalysis and complexligand-receptor interaction are presented in an unitary manner allowingeffective conceptual interpretation of chemical phenomena inanalytical terms as well as providing the appropriate computationalframework for their quantization.
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