Book contents
- The Rock Physics Handbook
- Reviews
- The Rock Physics Handbook
- Copyright page
- Contents
- Preface to the Third Edition
- 1 Basic Tools
- 2 Elasticity and Hooke’s Law
- 3 Seismic Wave Propagation
- 4 Effective Elastic Media: Bounds and Mixing Laws
- 5 Granular Media
- 6 Fluid Effects on Wave Propagation
- 7 Empirical Relations
- 8 Flow and Diffusion
- 9 Electrical Properties
- Appendices
- References
- Index
9 - Electrical Properties
Published online by Cambridge University Press: 05 March 2020
- The Rock Physics Handbook
- Reviews
- The Rock Physics Handbook
- Copyright page
- Contents
- Preface to the Third Edition
- 1 Basic Tools
- 2 Elasticity and Hooke’s Law
- 3 Seismic Wave Propagation
- 4 Effective Elastic Media: Bounds and Mixing Laws
- 5 Granular Media
- 6 Fluid Effects on Wave Propagation
- 7 Empirical Relations
- 8 Flow and Diffusion
- 9 Electrical Properties
- Appendices
- References
- Index
Summary
If we wish to predict the effective dielectric permittivity ε of a mixture of phases theoretically, we generally need to specify: (1) the volume fractions of the various phases, (2) the dielectric permittivity of the various phases, and (3) the geometric details of how the phases are arranged relative to each other.
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- Chapter
- Information
- The Rock Physics Handbook , pp. 577 - 612Publisher: Cambridge University PressPrint publication year: 2020