Shim, I. A. F. (2001). Signal processing techniques for partial discharge detection and mapping in high voltage underground cable networks, University of Strathclyde.
|
Shin, K. (1998). The numerical effect of discretisation of continuous systems and bilinear mapping of non-linear systems, University of Southampton, Institute of Sound and Vibration Research.
|
Shirley, R. W. (1983). The mapping of the world: early printed world maps, The Holland Press.
|
Shirley, R. W. (1993). The mapping of the world: early printed world maps 1472-1700. London, New Holland (Publishers): xlvi, 669 p.; 35 cm.
|
Shirley, R. W. (2001). Kitchener's survey of Cyprus 1878-1883: the first full triangulated survey and mapping of the island. Nicosia, Bank of Cyprus Cultural Foundation: 70p.: ill. (some col.), maps (some col.); 30cm.
|
Short, A. K. (1994). Epitope mapping studies in systemic vaculitis, University of Cambridge.
|
Short, J. R. (2001). Representing the Republic: mapping the United States, 1600-1900. Picturing history. London, Reaktion: 256 p.: ill., maps, 1 port.; 24 cm.
|
Shriver, E. (1999). A formalization of the attribute mapping problem, Hewlett-Packard Laboratories.
|
Shupe, B. and C. O'Connell (1983). Mapping your business. New York, Special Libraries Association.
|
Sideris, M. G. E. (2002). Gravity, geoid and geodynamics 2000: GGG2000 IAG international symposium, Springer.
|
Sieber, R. E. and K. E. Brassel (1986). A selected bibliography on spatial data handling: data structures, generalization and three-dimensional mapping, Department of Geography, University Zurich-Irchel.
|
Siegel, P. S. K. (1995). Automatic technology mapping for asynchronous designs. Stanford, Calif., Computer Systems Laboratory, Stanford University: xvi,159p.
|
Sigurdson, T. (1993). Ground penetrating radar for geological mapping. Aarhus geoscience; v.3. Aarhus, Department of Earth Sciences, Aarhus University: 117p.
|
Silberstein, L. J. (2000). Mapping Jewish identities. New perspectives on Jewish studies. New York; London, New York University Press: x, 368 p.: ill.; 23 cm.
|
Sildvee, H. (1998). Gravity measurements of Estonia. Masala, Finnish Geodetic Institute.
|
Silver, M. and D. Balmori (2003). Mapping in the age of digital media: the Yale Symposium. Chichester, Wiley-Academy: 144 p.: ill.; 26 cm.
|
Simakova, M. S. (1964). Soil Mapping by Color Aerial Photography. [By] M.S. Simakova. Jerusalem, Israel Program for Scientific Translations: 24.5 x 17 cm. pp. 81.
|
Simonds, C. B. (1904). Hints on Military Mapping, pp. 22. William Clowes & Sons: London: 16º.
|
Simpson, M. A. (2004). Mapping and identification of the causative genes in two neurological disorders present at high frequency in Amish populations. London, University of London: 1 v.; 31 cm.
|
Sims, D. and S. McMeeking (2004). Mapping the 14-19 learning landscape. LGA research report; 10/04. Slough, National Foundation for Educational Research: 39 p.; 30 cm.
|
Singh, R. B. (1991). Environmental monitoring: application of remote sensing and GIS. Hong Kong, Geocarto International Centre.
|
Singh, R. B. E. (1995). Global environmental change: perspectives of remote sensing and geographic information system: International seminar entitled "Monitoring geosystems-perspectives for the 21st Century": Selected papers, Oxford and IBH Publishing Company.
|
Singh, U. (1993). Linking crop models with a geographic information system to assist decisionmaking: a prototype for the Indian semiarid tropics. Muscle Shoals, Ala., U.S.A., International Fertilizer Development Center.
|
Singhroy, V. H., D. D. Nebert, et al. (1996). Remote sensing and GIS for site characterization: applications and standards. West Conshohocken, PA, ASTM.
|
Singleton, P. H., W. L. Gaines, et al. (2002). Landscape permeability for large carnivores in Washington: a geographic information system weighted-distance and least-cost corridor assessment. [Portland, Or.], United States Department of Agriculture, Pacific Northwest Research Station.
|
Sisley, J. D. (1986). Group decision making: A preference mapping approach, University of Southampton.
|
Sithole, G. (2005). Segmentation and classification of airborne laser scanner data. Delft, Netherlands Geodetic Commission.
|
Siu, Y. L. (1991). Application of GIS in energy-environment modelling, University of Leeds, School of Geography.
|
Sizmur, S. R. (1996). Collaborative concept mapping and children's learning in primary science, University of London.
|
Skidmore, A. (2002). Environmental modelling with GIS and remote sensing. London, Taylor & Francis.
|
Slapsak, B. E. (2001). On the good use of geographic information systems in archaeological landscape studies, Office for Official Publications of the European communities.
|
Smaalen, J. W. N. (2003). Automated aggregation of geographic objects: a new approach to the conceptual generalisation of geographic databases. Delft, NCG.
|
Smallbone, K. L. (1998). Mapping ambient urban air pollution at the small area scale: a GIS approach, University of Huddersfield.
|
Smaller, J. T. (1987). Nuclear rivalry and bounded vision: An investigation of conflict resolution techniques and a development of cognitive mapping in relation to the problem of disarmament, University of Bradford.
|
Smee, D. K. (1975). Soil mapping: a case study at Haselbech, Northamptonshire, 1954-1974. Salisbury, Wilts., Compton Russell: 3 parts: ill., maps; 29cm.
|
Smee, P. E. H. (1995). Issues affecting the utility of computer-based mapping applications, Open University.
|
Smith, A. V. (1991). Vehicle routing systems and GIS, Association for Geographic Information.
|
Smith, C., P. D. Bates, et al. (1997). Development of an inundation mapping capability using high resolution finite element modelling, University of Bristol.
|
Smith, D. A. (1996). On the improvement of gravimetric geoid undulations and oceanographic dynamic topography through a combination with satellite altimetry and the application of a modified Kalman filter algorithm. Columbus, Ohio, Department of Geodetic Science and Surveying, Ohio State University.
|
Smith, D. E. and D. L. Turcotte (1993). Contributions of space geodesy to geodynamics: crustal dynamics. Washington, D.C., American Geophysical Union.
|