Description

Book Synopsis
Perfect for senior undergraduates and first-year graduate students in geophysics, physics, mathematics, geology and engineering, this book is devoted exclusively to seismic wave theory. The result is an invaluable teaching tool, with its detailed derivations of formulas, clear explanations of topics, exercises along with selected answers, and an additional set of exercises with derived answers on the book''s website. Some highlights of the text include: a review of vector calculus and Fourier transforms and an introduction to tensors, which prepare readers for the chapters to come; and a detailed discussion on computing reflection and transmission coefficients, a topic of wide interest in the field; a discussion in later chapters of plane waves in anisotropic and anelastic media, which serves as a useful introduction to these two areas of current research in geophysics. Students will learn to understand seismic wave theory through the book''s clear and concise pedagogy.

Table of Contents
1. Vectors, tensors, and Fourier transforms; 2. Stress, strain, and seismic waves; 3. Reflection and transmission of plane waves; 4. Surface waves, head waves, and normal modes; 5. Waves in heterogeneous media; 6. Data transformations; 7. Synthetic seismograms; 8. Seismic migration; 9. Plane waves in anisotropic media; 10. Plane waves in anelastic media; Answers to selected exercises; References; Index.

Seismic Wave Theory

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    £999.99

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    A Hardback by Edward S. Krebes

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      View other formats and editions of Seismic Wave Theory by Edward S. Krebes

      Publisher: Cambridge University Press
      Publication Date: 28/03/2019
      ISBN13: 9781108474863, 978-1108474863
      ISBN10:

      Description

      Book Synopsis
      Perfect for senior undergraduates and first-year graduate students in geophysics, physics, mathematics, geology and engineering, this book is devoted exclusively to seismic wave theory. The result is an invaluable teaching tool, with its detailed derivations of formulas, clear explanations of topics, exercises along with selected answers, and an additional set of exercises with derived answers on the book''s website. Some highlights of the text include: a review of vector calculus and Fourier transforms and an introduction to tensors, which prepare readers for the chapters to come; and a detailed discussion on computing reflection and transmission coefficients, a topic of wide interest in the field; a discussion in later chapters of plane waves in anisotropic and anelastic media, which serves as a useful introduction to these two areas of current research in geophysics. Students will learn to understand seismic wave theory through the book''s clear and concise pedagogy.

      Table of Contents
      1. Vectors, tensors, and Fourier transforms; 2. Stress, strain, and seismic waves; 3. Reflection and transmission of plane waves; 4. Surface waves, head waves, and normal modes; 5. Waves in heterogeneous media; 6. Data transformations; 7. Synthetic seismograms; 8. Seismic migration; 9. Plane waves in anisotropic media; 10. Plane waves in anelastic media; Answers to selected exercises; References; Index.

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