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- * Chapter 2: [[Definitions, processes and models in morphology]]3 KB (330 words) - 11:50, 19 August 2020
- * Chapter 2: [[Definitions, processes and models in morphology]]27 KB (3,920 words) - 22:17, 19 August 2020
- * Chapter 2: [[Definitions, processes and models in morphology]]18 KB (2,803 words) - 20:15, 29 June 2019
- * Chapter 2: [[Definitions, processes and models in morphology]]6 KB (901 words) - 22:03, 19 August 2020
- * Chapter 2: [[Definitions, processes and models in morphology]]4 KB (536 words) - 17:16, 19 August 2020
- * Chapter 2: [[Definitions, processes and models in morphology]]4 KB (584 words) - 14:46, 19 August 2020
- * Chapter 2: [[Definitions, processes and models in morphology]]7 KB (1,105 words) - 13:16, 7 December 2023
- * Chapter 2: [[Definitions, processes and models in morphology]]3 KB (414 words) - 16:20, 14 February 2024
- * Chapter 2: [[Definitions, processes and models in morphology]]10 KB (1,442 words) - 20:14, 29 June 2019
- ...various facets of the natural environment, and similarly large numbers of models dealing with human social systems. However, there have been very few attemp ...rate dynamic interpretations of data and source empirical data to populate models.13 KB (1,995 words) - 17:08, 20 September 2020
- ...nd education, to estimate the demand for coastal professionals, to develop models of ICZM training and education, and to develop strategies for carrying out12 KB (1,722 words) - 15:10, 5 October 2021
- ...ta of the U.S. Environmental Protection Agency and the use of mathematical models, it is estimated that by the year 2050, the temperature will rise by 1°C a6 KB (955 words) - 12:47, 31 July 2020
- ...s providing underwater housings for video cameras. Very rarely, two camera models even from the same manufacturer share size, shape and locations of the cont ...camera controls directly. Usually fitted with a flat port, there are also models that provide a dome port (see below).18 KB (3,032 words) - 15:13, 22 August 2020
- ...and proven methodologies; networking and funding opportunities; replicable models for addressing community needs and managing resources; options for organiza5 KB (700 words) - 15:32, 4 October 2021
- ...first three types have been more widely investigated by means of physical models and prototype experience than the last one. ...e design is necessarily based on the combination of numerical and physical models<ref>Martinelli, L. and Ruol, P. 2006. 2D Model of Floating Breakwater Dynam16 KB (2,356 words) - 15:28, 30 March 2024
- * Chapter 2: [[Definitions, processes and models in morphology]]6 KB (893 words) - 14:39, 19 August 2020
- * Chapter 2: [[Definitions, processes and models in morphology]]6 KB (889 words) - 14:07, 19 August 2020
- * Chapter 2: [[Definitions, processes and models in morphology]]5 KB (760 words) - 17:12, 29 June 2019
- * Chapter 2: [[Definitions, processes and models in morphology]]5 KB (673 words) - 17:07, 23 August 2020
- * Chapter 2: [[Definitions, processes and models in morphology]]6 KB (808 words) - 14:08, 19 August 2020