"Fundamentals of Physical Geography" provides a clear and integrated study of the natural processes that shape the Earth's surface and atmosphere. The book systematically explores the major spheres of our planet: the atmosphere, with its weather patterns and climatic systems; the hydrosphere, encompassing the movement and distribution of water in oceans, rivers, and glaciers; the lithosphere, detailing the structure of the Earth and the forces of plate tectonics, vulcanism, and mountain-building; and the biosphere, examining the distribution of life and its interaction with the physical environment. The narrative connects these systems into a coherent whole, demonstrating how solar energy drives atmospheric circulation, which in turn influences oceanic currents and erosion patterns that sculpt the land. It explains the formation of landscapes, from deserts and coastlines to river valleys and glacial moraines, through the continuous work of geomorphic agents like wind, water, and ice. The text places a strong emphasis on maps, remote sensing, and spatial analysis as essential tools for observing and interpreting these terrestrial patterns. This work establishes physical geography as the essential foundation for understanding human-environment relationships. It shows how the distribution of natural resources, the risks of natural hazards, and the challenges of environmental change all stem from these fundamental physical systems. By detailing the mechanics of earthquakes, the pathways of hurricanes, the processes of soil formation, and the global patterns of biomes, the book offers a comprehensive framework for analyzing the dynamic and interconnected planet we inhabit.
George Thompson charts the foundational systems that sculpt the Earth's surface. His work in physical geography explores the active dialogue between the planet's lithosphere, hydrosphere, atmosphere, and biosphere. For Thompson, a landscape is never a still picture, but a dynamic snapshot in a continuous process-a temporary balance of forces like tectonic uplift, river erosion, glacial movement, and coastal deposition. Thompson's expertise makes vast planetary mechanics accessible and localized. He demonstrates how the energy of the sun, funneled through weather systems, powers the water cycle that carves canyons. He connects the slow convection of Earth's mantle to the sudden violence of an earthquake or the gradual rise of a mountain range. His analysis reveals the logic within natural chaos, showing how patterns in sediment transport, soil formation, and plant succession follow discernible, physical laws. A defining aspect of Thompson's approach is his integration of scale. He seamlessly shifts perspective from global wind patterns shaping deserts to the molecular properties of a mineral grain influencing soil chemistry. He treats Earth's systems as interconnected engines, where a change in ocean temperature off the coast of South America can alter storm frequency half a world away, and where the weathering of rock over millennia directly impacts the composition of the air we breathe.
Preface
Chapter 1. Introduction to Physical Geography
Chapter 2. Earth’s Structure and Geology
Chapter 3. Weathering, Soils, and Mass Wasting
Chapter 4. Hydrology and Fluvial Processes
Chapter 5. Climatology and Atmospheric Processes
Chapter 6. Biogeography and Ecosystems
Chapter 7. Oceanography and Coastal Systems
Chapter 8. Glacial, Periglacial, and Arid Environments
Chapter 9. Natural Hazards and Environmental Risks
Bibliography
Index