This is the first book to form the big picture of all data analytics methods in spectroscopy. Its rigorous mathematical basis, in-depth descriptions, numerous examples, and reproducible calculations make it a valuable guide for practitioners, students, and lecturers.
Explore resonator spectroscopy for analysing atmospheric microwave absorption. This guide details the most efficient method, from molecular spectroscopy basics to landmark investigations in the millimetre and submillimetre-wave range.
This book covers the theory of Raman scattering by molecules and crystals, including molecular vibrations and their symmetry. It details Raman spectroscopic techniques and is ideal for students and scientists researching chemical, mineralogical, and biological systems.
Weak chemical interactions, i.e., hydrogen and halogen bonds, control the structure of molecular crystals. This book uses vibrational (Raman) spectra to describe their properties and nature, for students and scientists in chemical, biological, and pharmaceutics research.
The first monograph to present the big picture of Artificial Intelligence in spectroscopy. Its rigorous mathematical basis, numerous examples, and reproducible computer calculations make it a valuable guide for theorists, practitioners, and students in chemistry and physics.