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Jonathan L. Carrivick - Structure from Motion in the Geosciences - 9781118895849 - V9781118895849
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Structure from Motion in the Geosciences

€ 109.94
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Description for Structure from Motion in the Geosciences Hardback. Structure from Motion with Multi View Stereo provides hyperscale landform models using images acquired from standard compact cameras and a network of ground control points. Series: Analytical Methods in Earth and Environmental Science. Num Pages: 208 pages, colour illustrations. BIC Classification: RB. Category: (P) Professional & Vocational. Dimension: 185 x 261 x 15. Weight in Grams: 602.
Structure from Motion with Multi View Stereo provides hyperscale landform models using images acquired from standard compact cameras and a network of ground control points. The technique is not limited in temporal frequency and can provide point cloud data comparable in density and accuracy to those generated by terrestrial and airborne laser scanning at a fraction of the cost. It therefore offers exciting opportunities to characterise surface topography in unprecedented detail and, with multi-temporal data, to detect elevation, position and volumetric changes that are symptomatic of earth surface processes. This book firstly places Structure from Motion in the context of ... Read more

Product Details

Publisher
John Wiley & Sons Inc
Format
Hardback
Publication date
2016
Series
Analytical Methods in Earth and Environmental Science
Condition
New
Weight
601 g
Number of Pages
208
Place of Publication
New York, United States
ISBN
9781118895849
SKU
V9781118895849
Shipping Time
Usually ships in 7 to 11 working days
Ref
99-50

About Jonathan L. Carrivick
Jonathan Carrivick is a Senior Lecturer in Geomorphology in the School of Geography, University of Leeds, UK. His primary research interests lie within polar, arctic and alpine ice-marginal systems, and especially focus on glacier outburst floods and proglacial lakes. He specialises in digital topographic surveying, especially for construction of terrain models for input to morphodynamic computer simulations, and for detecting ... Read more

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