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Kazuaki Wagatsuma

Spectroscopy for Materials Analysis: An Introduction

Spectroscopy for Materials Analysis: An Introduction

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  • More about Spectroscopy for Materials Analysis: An Introduction

This book covers analytical spectroscopy methods such as X-ray fluorescence spectroscopy, electron spectroscopy, and atomic emission spectroscopy, designed for undergraduate students and engineers. It explains the principles with basic mathematical expressions and introduces their applications to actual materials.

Format: Paperback / softback
Length: 101 pages
Publication date: 12 October 2021
Publisher: Springer Verlag, Singapore


This comprehensive book encompasses a wide range of analytical spectroscopy techniques, including X-ray fluorescence spectroscopy, electron spectroscopy, and atomic emission spectroscopy. These methods have gained widespread application in material analysis, providing valuable insights into the composition, structure, and properties of materials. Designed as a guide for undergraduate students and engineers interested in studying analytical spectroscopy in material science, this book aims to explain the principles of these spectroscopy methods using basic mathematical expressions. It further introduces their practical applications to real-world materials, enabling readers to gain a deeper understanding of the analytical techniques employed in this field.

The book is organized into several chapters, each dedicated to a specific spectroscopy technique. In the introductory chapter, the authors provide an overview of analytical spectroscopy and its significance in material analysis. They discuss the basic principles of each technique and highlight their applications in various industries.

The subsequent chapters delve into the theoretical foundations and mathematical models of each spectroscopy method. The authors explain the underlying principles, such as electron excitation, emission, and absorption processes, and how they contribute to the analysis of materials. They also introduce the necessary mathematical expressions and equations that are used to describe and interpret the data obtained from spectroscopy.

Each chapter includes examples and case studies to illustrate the practical applications of the spectroscopy methods. The examples cover a wide range of materials, including metals, polymers, ceramics, and biological samples, and demonstrate how spectroscopy can be used to identify and characterize different components, properties, and structures.

In addition to the theoretical explanations, the book also provides practical guidance on instrument setup, data acquisition, and data analysis. The authors discuss the equipment commonly used in analytical spectroscopy and provide step-by-step instructions on how to operate and maintain the instruments. They also provide tips and tricks for obtaining high-quality data and analyzing the results effectively.

Throughout the book, the authors emphasize the importance of understanding the underlying principles of analytical spectroscopy and applying them to real-world materials. They encourage readers to think critically and apply the knowledge gained from the book to solve practical problems in the field.

This comprehensive book is an invaluable resource for undergraduate students and engineers who wish to study analytical spectroscopy in material science. It provides a solid foundation in the principles and applications of X-ray fluorescence spectroscopy, electron spectroscopy, and atomic emission spectroscopy, enabling readers to pursue further research and careers in this field.

Weight: 185g
Dimension: 235 x 155 (mm)
ISBN-13: 9789811659454
Edition number: 1st ed. 2021

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