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This book presents the integrated use of magnetometry and ground-penetrating radar geophysical mapping to understand the human presence within buried archaeological landscapes. Ground-penetrating radar can be used to identify buried living surfaces, geological stratigraphy and the architectural remains of sites in three-dimensions. Magnetometry can produce images denoting differences on the composition of those materials, both anthropogenic and natural, but with more limited three-dimensional resolution. The integration of the two has a unique ability to resolve and interpret these buried materials, differentiated between the human-caused and natural layers, and place all buried features within historic landscapes. The final product of geophysical integration, along with some limited subsurface testing, produces a holistic analysis of human adaptations to, and modifications of, the ancient landscape. Examples are shown from sites in Roman Croatia and Britain, Medieval Ireland, Colonial Connecticut, and an Archaic site in the Colorado Rocky Mountains. These examples from very different environments, time periods and cultural groups illustrate how the integrated geophysical methodology can interpret, on a scale approaching many hectares, the ancient landscapes within which people lived.
Earth sciences. --- Geology. --- Geophysics. --- Anthropology. --- Archaeology. --- Earth Sciences. --- Geophysics/Geodesy. --- Ground penetrating radar. --- Magnetometry in archaeology. --- Magnetic surveys (Archaeology) --- Archaeology --- Ground probing radar --- Subsurface radar --- Radar --- Methodology --- Physical geography. --- Human beings --- Geognosy --- Geoscience --- Earth sciences --- Natural history --- Archeology --- Anthropology --- Auxiliary sciences of history --- History --- Antiquities --- Geography --- Geological physics --- Terrestrial physics --- Physics --- Primitive societies --- Social sciences
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Ground-penetrating radar (GPR) has become one of the standard tools in the archaeologist's array of methods, but users still struggle to understand what the images tell us. In this book-illustrated with over 200 full-color photographs-Lawrence Conyers shows how results of geophysical surveys can test ideas regarding people, history, and cultures, as well as be used to prospect for buried remains. Using 20 years of data from more than 600 GPR surveys in a wide array of settings, Conyers, one of the first archaeological specialists in GPR, provides the consumer of GPR studies with basic inf
Geophysics in archaeology. --- Ground penetrating radar. --- Ground probing radar --- Subsurface radar --- Radar --- Archaeology --- Methodology
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This book presents the integrated use of magnetometry and ground-penetrating radar geophysical mapping to understand the human presence within buried archaeological landscapes. Ground-penetrating radar can be used to identify buried living surfaces, geological stratigraphy and the architectural remains of sites in three-dimensions. Magnetometry can produce images denoting differences on the composition of those materials, both anthropogenic and natural, but with more limited three-dimensional resolution. The integration of the two has a unique ability to resolve and interpret these buried materials, differentiated between the human-caused and natural layers, and place all buried features within historic landscapes. The final product of geophysical integration, along with some limited subsurface testing, produces a holistic analysis of human adaptations to, and modifications of, the ancient landscape. Examples are shown from sites in Roman Croatia and Britain, Medieval Ireland, Colonial Connecticut, and an Archaic site in the Colorado Rocky Mountains. These examples from very different environments, time periods and cultural groups illustrate how the integrated geophysical methodology can interpret, on a scale approaching many hectares, the ancient landscapes within which people lived.
Ethnology. Cultural anthropology --- Geophysics --- Geology. Earth sciences --- Physical geography --- Archeology --- radars --- magnetometrie --- antropologie --- geologie --- archeologie --- fysische geografie --- geofysica
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