305,57 €
359,49 €
Molecular Interactions
Molecular Interactions
305,57 €
359,49 €
  • Išsiųsime per 10–14 d.d.
In a classical approach materials science is mainly dealing with interatomic interactions within molecules, without paying much interest on weak intermolecular interactions. However, the variety of structures actually is the result of weak ordering because of noncovalent interactions. Indeed, for self-assembly to be possible in soft materials, it is evident that forces between molecules must be much weaker than covalent bonds between the atoms of a molecule. The weak intermolecular interactions…
305.57 2025-07-06 23:59:00
  • Leidėjas:
  • ISBN-10: 9535100793
  • ISBN-13: 9789535100799
  • Formatas: 17 x 24.4 x 2.2 cm, kieti viršeliai
  • Kalba: Anglų
  • Extra -15 % nuolaida šiai knygai su kodu: ENG15

Molecular Interactions + nemokamas atvežimas! | knygos.lt

Atsiliepimai

Aprašymas

In a classical approach materials science is mainly dealing with interatomic interactions within molecules, without paying much interest on weak intermolecular interactions. However, the variety of structures actually is the result of weak ordering because of noncovalent interactions. Indeed, for self-assembly to be possible in soft materials, it is evident that forces between molecules must be much weaker than covalent bonds between the atoms of a molecule. The weak intermolecular interactions responsible for molecular ordering in soft materials include hydrogen bonds, coordination bonds in ligands and complexes, ionic and dipolar interactions, van der Waals forces, and hydrophobic interactions. Recent evolutions in nanosciences and nanotechnologies provide strong arguments to support the opportunity and importance of the topics approached in this book, the fundamental and applicative aspects related to molecular interactions being of large interest in both research and innovative environments. We expect this book to have a strong impact at various education and research training levels, for young and experienced researchers from both academia and industry.

EXTRA 15 % nuolaida

305,57 €
359,49 €
Išsiųsime per 10–14 d.d.

Kupono kodas: ENG15

Akcija baigiasi už 6d.00:18:57

Nuolaidos kodas galioja perkant nuo 10 €. Nuolaidos nesumuojamos.

Prisijunkite ir už šią prekę
gausite 3,59 Knygų Eurų!?
Įsigykite dovanų kuponą
Daugiau

In a classical approach materials science is mainly dealing with interatomic interactions within molecules, without paying much interest on weak intermolecular interactions. However, the variety of structures actually is the result of weak ordering because of noncovalent interactions. Indeed, for self-assembly to be possible in soft materials, it is evident that forces between molecules must be much weaker than covalent bonds between the atoms of a molecule. The weak intermolecular interactions responsible for molecular ordering in soft materials include hydrogen bonds, coordination bonds in ligands and complexes, ionic and dipolar interactions, van der Waals forces, and hydrophobic interactions. Recent evolutions in nanosciences and nanotechnologies provide strong arguments to support the opportunity and importance of the topics approached in this book, the fundamental and applicative aspects related to molecular interactions being of large interest in both research and innovative environments. We expect this book to have a strong impact at various education and research training levels, for young and experienced researchers from both academia and industry.

Atsiliepimai

  • Atsiliepimų nėra
0 pirkėjai įvertino šią prekę.
5
0%
4
0%
3
0%
2
0%
1
0%
[{"option":"58","probability":13,"style":{"backgroundColor":"#f3f3f3"},"image":{"uri":"\/uploads\/images\/wheel_of_fortune\/685e599c86b351751013788.png","sizeMultiplier":0.6,"landscape":true,"offsetX":-50}},{"option":"57","probability":14,"style":{"backgroundColor":"#e31e30"},"image":{"uri":"\/uploads\/images\/wheel_of_fortune\/685e5981e89e41751013761.png","sizeMultiplier":0.6,"landscape":true,"offsetX":-50}},{"option":"56","probability":15,"style":{"backgroundColor":"#f3f3f3"},"image":{"uri":"\/uploads\/images\/wheel_of_fortune\/685e59691dc2d1751013737.png","sizeMultiplier":0.6,"landscape":true,"offsetX":-50}},{"option":"55","probability":14,"style":{"backgroundColor":"#e31e30"},"image":{"uri":"\/uploads\/images\/wheel_of_fortune\/685e590bade881751013643.png","sizeMultiplier":0.6,"landscape":true,"offsetX":-50}},{"option":"54","probability":15,"style":{"backgroundColor":"#f3f3f3"},"image":{"uri":"\/uploads\/images\/wheel_of_fortune\/685e58f20a7761751013618.png","sizeMultiplier":0.6,"landscape":true,"offsetX":-50}},{"option":"53","probability":14,"style":{"backgroundColor":"#e31e30"},"image":{"uri":"\/uploads\/images\/wheel_of_fortune\/685e58d20c1ee1751013586.png","sizeMultiplier":0.6,"landscape":true,"offsetX":-50}},{"option":"52","probability":14.5,"style":{"backgroundColor":"#f3f3f3"},"image":{"uri":"\/uploads\/images\/wheel_of_fortune\/685e58b358b2e1751013555.png","sizeMultiplier":0.6,"landscape":true,"offsetX":-50}},{"option":"51","probability":0.5,"style":{"backgroundColor":"#e31e30"},"image":{"uri":"\/uploads\/images\/wheel_of_fortune\/685e57cded6da1751013325.png","sizeMultiplier":0.6,"landscape":true,"offsetX":-50}}]