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The Electrodynamics of Water and Ice

The Electrodynamics of Water and Ice


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About the Book

INTRODUCTION
CHAPTER 1. A historical review on the structure of water and ice (50 pages)1.1 Bragg-scattering and Bernal-Fowler's water1.2 Direct current, autoionization, and pH1.3 Isotopic tracers and molecular self-diffusion1.4 Protons diffusion by neutron scattering1.5 Interaction potentials in molecular dynamics simulations1.6 Summary on the 'structure' of water and ice
CHAPTER 2. Electromagnetic waves interaction with liquid water (50 pages)2.1 The method of broadband dielectric spectroscopy2.2 Dielectric relaxation and absorption at low and high frequencies2.3 Dielectric constant of water2.4 Infrared and Raman spectra2.5 Heavy water: isotope effect2.6 Generalized dielectric spectrum of liquid water (spectral-weight analysis)
CHAPTER 3. Electrodynamics of ice (50 pages)3.1 Dielectric-terahertz spectrum of ice3.2 Temperature dependence of spectral parameters3.3 Ice among other solid dielectrics3.4 Fundamental similarities between water and ice3.5 Dynamical structure of ice and water from dielectric spectroscopy data
CHAPTER 4. Mechanisms of the dielectric response of water and ice (50 pages)4.1 Why does the microwave oven work?4.2 How long does the water molecule live?4.3 Why ice and water transparent?4.4 Do dynamical structures of water and ice have something in common?4.5 Test of models by other non-spectroscopic methods
CHAPTER 5. Electrodynamics of aqueous media (50 pages)5.1 Dielectric properties of moist substances5.2 Proton conduction and dielectric constant of interfacial water5.3 Electrodynamics of aqueous solutions5.4 Solvation at the picosecond time-scale5.5 Water and ice as conductors/condensers of electricity
CONCLUSIONS
REFERENCES
About the Author:

Vasily Artemov studied physics at the Moscow Institute of Physics and Technology, one of the leading universities in Russia. He received his Ph.D. from the Prokhorov General Physics Institute (GPI), founded by Alexander Prokhorov (Nobel laureate for his research on lasers and masers). Both his master and Ph.D. theses were focused on infrared and dielectric spectroscopy of bulk and confined water. He has held several internships abroad, where he studied the interaction of electromagnetic waves with soft matter. After these experiences, he headed the lab of intermolecular interaction spectroscopy at GPI, where he worked intensively on the dielectric responses of water and ice as well as on the important role of local chemical reactions between solute and solvent in aqueous solutions of electrolytes. Several years ago, he joined the Skolkovo Institute of Science and Technology, the first private international university in Russia, where he currently leads research activities in the field of broadband dielectric spectroscopy of aqueous materials for electrochemical applications. His publication record encompasses over 40 scientific papers in international journals on the dielectric and transport properties of water and ice.


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Product Details
  • ISBN-13: 9783030724238
  • Publisher: Springer International Publishing
  • Publisher Imprint: Springer
  • Height: 234 mm
  • No of Pages: 219
  • Series Title: Springer Chemical Physics
  • Weight: 566 gr
  • ISBN-10: 3030724239
  • Publisher Date: 05 Jun 2021
  • Binding: Hardback
  • Language: English
  • Returnable: Y
  • Spine Width: 14 mm
  • Width: 156 mm


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