This book explores the role of lasers in chemistry, emphasizing their use in spectroscopy, photochemical reactions, and analytical methods. It provides both theoretical background and practical applications, making it useful for researchers and advanced students in physical and analytical chemistry.
This book provides an in-depth treatment of the photochemistry of small molecules, covering fundamental principles, experimental methods, and reaction mechanisms. It is a valuable reference for students and researchers in physical and molecular chemistry.
This book introduces the relationship between molecular structure and spectroscopic behavior, covering fundamental principles and applications in modern chemistry and molecular physics.
This work provides a comprehensive review of infrared spectroscopy applied to clay minerals and their mixtures. It includes a large collection of spectra from soils, organic matter, and sediments, serving as a key reference for mineralogical and soil analysis.
This book presents the use of infrared spectroscopy in studying minerals and inorganic compounds, providing spectral data and interpretation useful for geologists and chemists.
This book provides a detailed introduction to electron energy loss spectroscopy (EELS) and its application in studying surface vibrations and solid-state phenomena. It covers theoretical foundations and experimental techniques used in surface physics and materials science.
This book provides an introduction to the use of spectroscopic techniques—ultraviolet (UV), infrared (IR), nuclear magnetic resonance (NMR), and mass spectrometry—in determining the structure of organic compounds. It is designed as both a textbook for students and a reference for researchers in organic chemistry.
Introductory and advanced guide to spectroscopic techniques in organic chemistry. Covers IR, NMR, and UV spectroscopy methods. Widely used as a reference for chemistry students and researchers.
Scientific reference work on vibrational spectroscopy of benzene derivatives. Includes theoretical and experimental data. Translated and revised edition of original work published in Hungary.
This book presents the fundamental principles and experimental techniques of laser spectroscopy. It explains laser sources, spectroscopic methods, instrumentation, and applications in physics and chemistry, providing a detailed reference for students and researchers working in optical spectroscopy and laser physics.