Multidisciplinary overview of lithospheric structure and evolution, based on a full set of geophysical methods, for researchers and advanced students.Presents a coherent synthesis of lithosphere studies, based on a full set of geophysical methods and complemented by petrologic and laboratory data on rock properties. This is a multidisciplinary resource for researchers and advanced students in geophysics, geodynamics, tectonics, petrology, and geochemistry, and for petroleum and mining industry professionals.Presents a coherent synthesis of lithosphere studies, based on a full set of geophysical methods and complemented by petrologic and laboratory data on rock properties. This is a multidisciplinary resource for researchers and advanced students in geophysics, geodynamics, tectonics, petrology, and geochemistry, and for petroleum and mining industry professionals.Presenting a coherent synthesis of lithosphere studies, this book covers a range of geophysical methods (seismic reflection, refraction, and receiver function methods; elastic and anelastic seismic tomography; electromagnetic and magnetotelluric methods; thermal, gravity and rheological models), complemented by petrologic and laboratory data on rock properties. It also provides a critical discussion of the uncertainties, assumptions, and resolution issues that are inherent in the different methods and models of the lithosphere. Multidisciplinary in scope, global in geographical extent, and covering a wide variety of tectonics settings across 3.5 billion years of Earth history, this book presents a comprehensive overview of lithospheric structure and evolution. It is a core reference for researchers and advanced students in geophysics, geodynamics, tectonics, petrology, and geochemistry, and for petroleum and mining industry professionals.Foreword; Preface; 1. What is the lithosphere?; 2. Age of the lithosphere; 3. Seismic structure of the lithosphere; 4. Thermal regime of the lithosphere from heat flow datalC.