| Authors | p. xiii |
| Co-authors | p. xxi |
| Foreword | p. xxiii |
| Concepts | p. 1 |
| Geomorphometry: A Brief Guide | p. 3 |
| What is geomorphometry? | p. 3 |
| The basic principles of geomorphometry | p. 6 |
| The history of geomorphometry | p. 12 |
| Geomorphometry today | p. 24 |
| The "Baranja Hill" case study | p. 26 |
| Summary points | p. 29 |
| Important sources | p. 30 |
| Mathematical and Digital Models of the Land Surface | p. 31 |
| Conceptual models of the land surface | p. 31 |
| Digital models of the land surface | p. 39 |
| The sampling, generation and analysis of land surfaces | p. 48 |
| Summary points | p. 62 |
| Important sources | p. 63 |
| DEM Production Methods and Sources | p. 65 |
| Ground survey techniques | p. 65 |
| Remote sensing sources | p. 71 |
| Frequently-used remote-sensing based DEM products | p. 75 |
| Summary points | p. 82 |
| Important sources | p. 85 |
| Preparation of DEMs for Geomorphometric Analysis | p. 87 |
| Introduction | p. 87 |
| Reducing errors in DEMs | p. 96 |
| Reduction of errors in parameters and objects | p. 111 |
| Summary | p. 117 |
| Important sources | p. 120 |
| Geostatistical Simulation and Error Propagation in Geomorphometry | p. 121 |
| Uncertainty in DEMs | p. 121 |
| Geostatistical modelling of DEM errors | p. 123 |
| Methods for error propagation analysis | p. 125 |
| Error propagation: Baranja Hill | p. 127 |
| Summary points | p. 138 |
| Important sources | p. 139 |
| Basic Land-Surface Parameters | p. 141 |
| Introduction | p. 141 |
| Local land-surface parameters | p. 142 |
| Regional land-surface parameters | p. 163 |
| Summary points | p. 168 |
| Important sources | p. 169 |
| Land-Surface Parameters and Objects in Hydrology | p. 171 |
| Hydrological modelling | p. 171 |
| Flow direction and aspect | p. 172 |
| Flow algorithms | p. 176 |
| Contributing area/flow accumulation | p. 182 |
| Land-surface parameters based on catchment area | p. 185 |
| Land-surface objects based on flow-variables | p. 188 |
| Deposition function | p. 191 |
| Flow modelling using TIN-based elevation models | p. 193 |
| Summary points | p. 194 |
| Important sources | p. 194 |
| Land-Surface Parameters Specific to Topo-Climatology | p. 195 |
| Land surface and climate | p. 195 |
| Climate regionalisation approaches | p. 197 |
| Topographic radiation | p. 198 |
| Topographic temperature | p. 211 |
| Topographic precipitation | p. 219 |
| Topographic exposure to wind | p. 222 |
| Summary points | p. 225 |
| Important sources | p. 225 |
| Landforms and Landform Elements in Geomorphometry | p. 227 |
| Geomorphology, landforms and geomorphometry | p. 227 |
| Approaches to landform classification | p. 233 |
| Extracting and classifying specific landform elements | p. 237 |
| Extracting and classifying repeating landform types | p. 244 |
| Implementing extraction of landforms | p. 251 |
| Summary points | p. 252 |
| Important sources | p. 254 |
| Software | p. 255 |
| Overview of Software Packages Used in Geomorphometry | p. 257 |
| Introduction | p. 257 |
| The software landscape | p. 257 |
| Approaches to using software | p. 260 |
| Other packages for geomorphometry | p. 261 |
| The future of geomorphometry software | p. 264 |
| Important sources | p. 266 |
| Geomorphometry in ESRI Packages | p. 269 |
| Getting started | p. 269 |
| DEM preparation | p. 273 |
| Extraction of land-surface parameters and objects | p. 278 |
| Arc scripts | p. 283 |
| Summary points and future direction | p. 290 |
| Important sources | p. 291 |
| Geomorphometry in SAGA | p. 293 |
| Getting started | p. 293 |
| DEM preparation | p. 298 |
| Derivation of land-surface parameters | p. 300 |
| Summary points | p. 307 |
| Important sources | p. 308 |
| Geomorphometry in ILWIS | p. 309 |
| About ILWIS | p. 309 |
| Importing and deriving DEMs | p. 313 |
| Deriving parameters and objects | p. 318 |
| Summary points and future direction | p. 329 |
| Important sources | p. 331 |
| Geomorphometry in LandSerf | p. 333 |
| Introduction | p. 333 |
| Visualisation of land-surface parameters and objects | p. 338 |
| Scripting with LandSerf | p. 342 |
| Summary points and future direction | p. 348 |
| Important sources | p. 349 |
| Geomorphometry in MicroDEM | p. 351 |
| Introduction | p. 351 |
| Geomorphometric analysis in MicroDEM | p. 354 |
| Summary points and future direction | p. 366 |
| Important sources | p. 366 |
| Geomorphometry in TAS GIS | p. 367 |
| Getting started | p. 367 |
| Geomorphometric analysis | p. 370 |
| Summary | p. 384 |
| Important sources | p. 386 |
| Geomorphometry in GRASS GIS | p. 387 |
| Getting started | p. 387 |
| Deriving land-surface parameters | p. 393 |
| Limitations of GRASS | p. 409 |
| Summary points and future direction | p. 410 |
| Important sources | p. 410 |
| Geomorphometry in RiverTools | p. 411 |
| Getting started | p. 411 |
| Advanced GIS functionality | p. 413 |
| Preparing DEMs for a study area | p. 414 |
| Extracting land-surface parameters and objects from DEMs | p. 417 |
| Visualisation tools | p. 425 |
| Summary points | p. 429 |
| Important sources | p. 430 |
| Applications | p. 431 |
| Geomorphometry - A Key to Landscape Mapping and Modelling | p. 433 |
| Importance of DEMs | p. 433 |
| Predictive modelling of environmental variables | p. 437 |
| Summary points | p. 459 |
| Important sources | p. 460 |
| Soil Mapping Applications | p. 461 |
| Soils and mapping of soils | p. 461 |
| Topography and soils | p. 465 |
| Case study | p. 471 |
| Summary points | p. 475 |
| Important sources | p. 479 |
| Vegetation Mapping Applications | p. 481 |
| Mapping vegetation | p. 481 |
| Case study | p. 487 |
| Summary points | p. 494 |
| Important sources | p. 496 |
| Applications in Geomorphology | p. 497 |
| Geomorphological mapping from DEMs | p. 497 |
| Geomorphometry in theories of fluvial and glacial erosion | p. 498 |
| Geomorphological change | p. 504 |
| Extraction of specific landforms | p. 507 |
| Case study | p. 511 |
| Summary points | p. 522 |
| Important sources | p. 525 |
| Modelling Mass Movements and Landslide Susceptibility | p. 527 |
| Introduction | p. 527 |
| Modelling the propagation of mass: the affected area and deposition | p. 528 |
| Modelling landslide susceptibility | p. 539 |
| Summary points | p. 548 |
| Important sources | p. 549 |
| Automated Predictive Mapping of Ecological Entities | p. 551 |
| Introduction | p. 551 |
| Case study: predictive ecosystem mapping | p. 556 |
| Results | p. 571 |
| Summary points | p. 577 |
| Acknowledgements | p. 578 |
| Important sources | p. 578 |
| Geomorphometry and Spatial Hydrologic Modelling | p. 579 |
| Introduction | p. 579 |
| Spatial hydrologic modelling: processes and methods | p. 581 |
| Scale issues in spatial hydrologic models | p. 591 |
| Preprocessing tools for spatial hydrologic models | p. 593 |
| Case study: hydrologic response of north basin, Baranja Hill | p. 595 |
| Summary points | p. 601 |
| Important sources | p. 602 |
| Applications in Meteorology | p. 603 |
| Meteorology and topography | p. 603 |
| Sources for topographic variables in meteorological models | p. 611 |
| Case studies | p. 612 |
| Summary points | p. 620 |
| Important sources | p. 621 |
| Applications in Precision Agriculture | p. 623 |
| Introduction | p. 623 |
| Precision Agriculture applications | p. 625 |
| Summary points | p. 635 |
| Acknowledgements | p. 635 |
| Important sources | p. 636 |
| The Future of Geomorphometry | p. 637 |
| Peering into a crystal ball | p. 637 |
| Concepts | p. 638 |
| DEM data: demand and supply | p. 639 |
| Exploiting LiDAR | p. 641 |
| Morphometric tools | p. 643 |
| Approaches and objectives | p. 645 |
| Applications to come | p. 646 |
| A geomorphometric atlas of the World | p. 648 |
| Closing remarks | p. 651 |
| Bibliography | p. 653 |
| Index | p. 695 |
| Colour Plate Section | p. 707 |
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