Description

Book Synopsis

Materials Science today is the base for all technological and industrial developments. The book provides the understanding of the advanced spectroscopic and microscopic instruments used for material characterization. The main issues addressed are 1) a detailed understanding of the instrument, including working and handling, 2) sample preparation, and 3) data analysis and interpretation.

The book is divided in two parts i.e., Part A discusses microscopic instruments, consisting of Optical Microscope, Scanning Electron Microscopy, Atomic Force Microscopy, Field Emission Scanning Electron Microscope and X-Ray Diffraction. Part B is on spectroscopic instruments and covers FTIR Spectrometer, Raman Spectrometer, X-ray Photoelectron Spectroscopy, Ultraviolet Photoelectron Spectroscopy, Fluorescence Spectroscopy, and Nuclear Magnetic Resonance Spectroscopy.



Table of Contents

PART A MICROSCOPIC CHARACTERIZATION

Chapter 1: Optical Microscope

    1. Introduction
    2. Instrumental Details
    3. Working And Handling of Instruments
    4. Sample Preparation
    5. Imaging Analysis and Interpretation.

Chapter 2: Scanning Electron Microscopy

    1. Introduction
    2. Instrumental Details
    3. Working And Handling of Instruments
    4. Sample Preparation
    5. Imaging Analysis and Interpretation.

Chapter 3: Atomic Force Microscopy

    1. Introduction
    2. Instrumental Details
    3. Working And Handling of Instruments
    4. Sample Preparation
    5. Imaging Analysis and Interpretation.

Chapter 4: Scanning Probe Microscopy

    1. Introduction
    2. Instrumental Details
    3. Working And Handling of Instruments
    4. Sample Preparation
    5. Imaging Analysis and Interpretation.

Chapter 5: X-Ray Diffraction.

    1. Introduction
    2. Instrumental Details
    3. Working And Handling of Instruments
    4. Sample Preparation
    5. Imaging Analysis and Interpretation.

PART B SPECTROSCOPIC CHARACTERIZATION

Chapter 1: FTIR Spectrometer

    1. Introduction
    2. Instrumental Details
    3. Working And Handling of Instruments
    4. Sample Preparation
    5. Data Analysis and Interpretation.

Chapter 2: Raman Spectrometer

    1. Introduction
    2. Instrumental Details
    3. Working And Handling of Instruments
    4. Sample Preparation
    5. Data Analysis and Interpretation.

Chapter 3: X-ray Photoelectron Spectroscopy

    1. Introduction
    2. Instrumental Details
    3. Working And Handling of Instruments
    4. Sample Preparation
    5. Data Analysis and Interpretation.

Chapter 4: Ultraviolet Photoelectron Spectroscopy

    1. Introduction
    2. Instrumental Details
    3. Working And Handling of Instruments
    4. Sample Preparation
    5. Data Analysis and Interpretation.

Chapter 5: Fluorescence Spectroscopy

    1. Introduction
    2. Instrumental Details
    3. Working And Handling of Instruments
    4. Sample Preparation
    5. Data Analysis and Interpretation.

Chapter 6: Nuclear Magnetic Resonance Spectroscopy

    1. Introduction
    2. Instrumental Details
    3. Working And Handling of Instruments
    4. Sample Preparation
    5. Data Analysis and Interpretation.

Engineering Materials Characterization

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RRP £76.50 – you save £3.82 (4%)

Order before 4pm today for delivery by Thu 18 Dec 2025.

A Paperback by Kaushik Kumar, Divya Zindani

15 in stock


    View other formats and editions of Engineering Materials Characterization by Kaushik Kumar

    Publisher: De Gruyter
    Publication Date: 20/11/2023
    ISBN13: 9783110997606, 978-3110997606
    ISBN10: 3110997606

    Description

    Book Synopsis

    Materials Science today is the base for all technological and industrial developments. The book provides the understanding of the advanced spectroscopic and microscopic instruments used for material characterization. The main issues addressed are 1) a detailed understanding of the instrument, including working and handling, 2) sample preparation, and 3) data analysis and interpretation.

    The book is divided in two parts i.e., Part A discusses microscopic instruments, consisting of Optical Microscope, Scanning Electron Microscopy, Atomic Force Microscopy, Field Emission Scanning Electron Microscope and X-Ray Diffraction. Part B is on spectroscopic instruments and covers FTIR Spectrometer, Raman Spectrometer, X-ray Photoelectron Spectroscopy, Ultraviolet Photoelectron Spectroscopy, Fluorescence Spectroscopy, and Nuclear Magnetic Resonance Spectroscopy.



    Table of Contents

    PART A MICROSCOPIC CHARACTERIZATION

    Chapter 1: Optical Microscope

      1. Introduction
      2. Instrumental Details
      3. Working And Handling of Instruments
      4. Sample Preparation
      5. Imaging Analysis and Interpretation.

    Chapter 2: Scanning Electron Microscopy

      1. Introduction
      2. Instrumental Details
      3. Working And Handling of Instruments
      4. Sample Preparation
      5. Imaging Analysis and Interpretation.

    Chapter 3: Atomic Force Microscopy

      1. Introduction
      2. Instrumental Details
      3. Working And Handling of Instruments
      4. Sample Preparation
      5. Imaging Analysis and Interpretation.

    Chapter 4: Scanning Probe Microscopy

      1. Introduction
      2. Instrumental Details
      3. Working And Handling of Instruments
      4. Sample Preparation
      5. Imaging Analysis and Interpretation.

    Chapter 5: X-Ray Diffraction.

      1. Introduction
      2. Instrumental Details
      3. Working And Handling of Instruments
      4. Sample Preparation
      5. Imaging Analysis and Interpretation.

    PART B SPECTROSCOPIC CHARACTERIZATION

    Chapter 1: FTIR Spectrometer

      1. Introduction
      2. Instrumental Details
      3. Working And Handling of Instruments
      4. Sample Preparation
      5. Data Analysis and Interpretation.

    Chapter 2: Raman Spectrometer

      1. Introduction
      2. Instrumental Details
      3. Working And Handling of Instruments
      4. Sample Preparation
      5. Data Analysis and Interpretation.

    Chapter 3: X-ray Photoelectron Spectroscopy

      1. Introduction
      2. Instrumental Details
      3. Working And Handling of Instruments
      4. Sample Preparation
      5. Data Analysis and Interpretation.

    Chapter 4: Ultraviolet Photoelectron Spectroscopy

      1. Introduction
      2. Instrumental Details
      3. Working And Handling of Instruments
      4. Sample Preparation
      5. Data Analysis and Interpretation.

    Chapter 5: Fluorescence Spectroscopy

      1. Introduction
      2. Instrumental Details
      3. Working And Handling of Instruments
      4. Sample Preparation
      5. Data Analysis and Interpretation.

    Chapter 6: Nuclear Magnetic Resonance Spectroscopy

      1. Introduction
      2. Instrumental Details
      3. Working And Handling of Instruments
      4. Sample Preparation
      5. Data Analysis and Interpretation.

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