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Chemical Modelling
Chemical Modelling
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Chemical modelling covers a wide range of disciplines, and this book is the first stop for any chemist, materials scientist, biochemist, or molecular physicist wishing to acquaint themselves with major developments in the applications and theory of chemical modelling. Containing both comprehensive and critical reviews, it is a convenient reference to the current literature. Coverage includes, but is not limited to, adiabatic connection formalism in DFT, excited states in porous framework materi…
  • Leidėjas:
  • ISBN-10: 1837672490
  • ISBN-13: 9781837672493
  • Formatas: 15.8 x 23.6 x 1.5 cm, kieti viršeliai
  • Kalba: Anglų

Chemical Modelling (el. knyga) (skaityta knyga) | knygos.lt

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Chemical modelling covers a wide range of disciplines, and this book is the first stop for any chemist, materials scientist, biochemist, or molecular physicist wishing to acquaint themselves with major developments in the applications and theory of chemical modelling. Containing both comprehensive and critical reviews, it is a convenient reference to the current literature. Coverage includes, but is not limited to, adiabatic connection formalism in DFT, excited states in porous framework materials, proton-coupled electron transfer as a challenge for quantum chemical methods, modelling plasmon-assisted electron dynamics and atomistic modelling of large biological systems and the need for (un-)realistic approaches.

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  • Leidėjas:
  • ISBN-10: 1837672490
  • ISBN-13: 9781837672493
  • Formatas: 15.8 x 23.6 x 1.5 cm, kieti viršeliai
  • Kalba: Anglų

Chemical modelling covers a wide range of disciplines, and this book is the first stop for any chemist, materials scientist, biochemist, or molecular physicist wishing to acquaint themselves with major developments in the applications and theory of chemical modelling. Containing both comprehensive and critical reviews, it is a convenient reference to the current literature. Coverage includes, but is not limited to, adiabatic connection formalism in DFT, excited states in porous framework materials, proton-coupled electron transfer as a challenge for quantum chemical methods, modelling plasmon-assisted electron dynamics and atomistic modelling of large biological systems and the need for (un-)realistic approaches.

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