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Websites

  1. . 2007. Remote Sensing Sensors and Applications in Environmental Resources Mapping and Modelling. [ONLINE] Available at: PMC - US National Library of Medicine, National Institutes of Health1.(Accessed 28 June 2026)

  2. Food and Agriculture Organization of the United Nations (2023) Remote sensing for agriculture. Available at: https://www.fao.org/(Accessed 28 June 2026)

  3. Melesse, A.M., Weng, Q., Thenkabail, P.S. and Senay, G.B. (2007) ‘Remote sensing sensors and applications in environmental resources mapping and modelling’, Sensors, 7(12), pp. 3209–3241. Available at: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3841891/(Accessed 28 June 2026)

  4. GISGeography (2019) 100 Earth shattering remote sensing applications & uses. Available at: https://gisgeography.com/remote-sensing-applications-uses/(Accessed 28 June 2026)

  5. (2008) Investigation of context determination for advanced navigation using smartphone sensors - UCL Discovery. Available at: https://discovery.ucl.ac.uk/id/eprint/10066895/ (Accessed 28 June 2026)

  6. GrindGIS (no date) Remote sensing applications. Available at: https://grindgis.com/remote-sensing/remote-sensing-applications (Accessed 28 June 2026)

  7. ​​University of Southern California (2026) The application of geographic and information science (GIS) in earth sciences. Available at: https://gis.usc.edu/blog/the-application-of-geographic-and-information-science-gis-in-earth-sciences/.(Accessed 28 June 2026)

  8. Meissner, B. (1994) ‘Remote sensing cartography’, GeoJournal, 32(3), pp. 255–262. Available at: https://link.springer.com/article/10.1007/BF00806359 (Accessed 28 June 2026)

  9. ​Fisher, P.F. and Lindenberg, E.R. (1989) ‘On distinctions among cartography, remote sensing, and geographic information systems’, Photogrammetric Engineering & Remote Sensing, 55(10), pp. 1431–1434. Available at: https://www.asprs.org/wp-content/uploads/pers/1989journal/oct/1989_oct_1431-1434.pdf (Accessed 28 June 2026)

  10. ​Kainz, W. (2020) ‘Cartography and the others – aspects of a complicated relationship’, Cartography and Geographic Information Science, 47(5), pp. 1–12. Available at: https://www.tandfonline.com/doi/full/10.1080/10095020.2020.1718000 (Accessed 28 June 2026)

  11. ​Rujoiu-Mare, M.-R. (2016) ‘Mapping land cover using remote sensing data and GIS techniques: A case study of Prahova Subcarpathians’, Procedia Environmental Sciences, 32, pp. 244–255. Available at: https://www.sciencedirect.com/science/article/pii/S1878029616001626 (Accessed 28 June 2026)

  12. ​GISCrack (2016) Remote sensing major applications area. Available at: https://giscrack.com/remote-sensing-major-applications-area/ (Accessed 28 June 2026)

  13. ​Chen, D. (2004) ‘Remote sensing technology for mapping and monitoring land-cover and land-use change’, Progress in Natural Science, 14(2), pp. 101–106. Available at: https://www.researchgate.net/publication/254205127_Remote_sensing_technology_for_mapping_and_monitoring_land-cover_and_land-use_change (Accessed 28 June 2026)

  14. ​Fire Research Group (2018) Remote sensing, mapping, and geographic information systems (GIS). Available at: https://frg.berkeley.edu/remote-sensing-mapping-etc/  (Accessed 28 June 2026)

  15. ​Van der Wel, F.J.M. (2000) Cartography, remote sensing and GIS. Utrecht: Utrecht University. Available at: https://dspace.library.uu.nl/bitstream/handle/1874/522/c2.pdf (Accessed 28 June 2026)

  16. Uhl, J.H., Leyk, S., Li, Z., Duan, W., Shbita, B., Chiang, Y.-Y. and Knoblock, C.A. (2021) ‘Combining remote-sensing-derived data and historical maps for long-term back-casting of urban extents’, Remote Sensing, 13(18), article 3644. Available at: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8691741/  (Accessed 28 June 2026)

  17. Diani, K. et al. (2023) ‘Identification of soil erosion sites in semiarid zones: Using GIS, remote sensing, and PAP/RAC model’, in Eslamian, S. and Eslamian, F. (eds.) Handbook of hydroinformatics. Amsterdam: Elsevier. Available at: https://www.sciencedirect.com/science/article/abs/pii/B9780128219614000038 (Accessed 28 June 2026)

  18. Singh, S. et al. (2023) ‘Decoding Chambal River shoreline transformations: A comprehensive analysis using remote sensing, GIS, and DSAS’, Water, 15(9), article 1793. Available at: https://doi.org/10.3390/w15091793(Accessed 28 June 2026)

  19. Xia, P. et al. (2023) ‘Monitoring urban heat island intensity based on GNSS tomography technique’, Journal of Geodesy, 97, article 74. Available at: https://link.springer.com/article/10.1007/s00190-023-01804-3 (Accessed 28 June 2026)

  20. Xu, Y. et al. (2024) ‘An initial investigation of the non-isotropic feature of GNSS tropospheric delay’, Satellite Navigation, 5, article 7. Available at: https://link.springer.com/article/10.1186/s43020-023-00122-5   (Accessed 28 June 2026)

  21. Li, X. et al. (2023) ‘Improving PPP-RTK-based vehicle navigation in urban environments via multilayer perceptron-based NLOS signal detection’, GPS Solutions, 27, article 176. Available at: https://link.springer.com/article/10.1007/s10291-023-01567-6 (Accessed 28 June 2026)

  22. Le, N. et al. (2024) ‘Identifying neotectonic motions in Germany using discontinuity-corrected GNSS data’, Pure and Applied Geophysics, 181, article 845. Available at: https://link.springer.com/article/10.1007/s00024-023-03390-z (Accessed 28 June 2026)

  23. Konakoglu, B. et al. (2024) ‘Evaluating the performance of the static PPP-AR in a forest environment’, Journal of Surveying Engineering. Available at: https://ascelibrary.org/doi/10.1061/JSUED2.SUENG-1403   (Accessed 28 June 2026)

  24. Sejati, A.W., Wijaya, I.H.W. and Rahmawaty, M.A. et al. (2023) ‘Reducing rural boundary conflict through participatory mapping and GNSS-GIS’, in de Vries, W.T., Rudiarto, I. and Piyasena, N.M.P.M. (eds.) Land administration and geospatial technologies. Boca Raton: CRC Press. Available at: https://www.taylorfrancis.com/chapters/edit/10.1201/9781003349518-17/reducing-rural-boundary-conflict-participatory-mapping-gnss-gis-anang-wahyu-sejati-indra-hadi-wijaya-mitha-asyita-rahmawaty-imam-buchori-yudi-basuki-hadi-wahyono-ahmad-jihan-muzaki-hendra-tata-pradipta-gusti-wiratmaja (Accessed: 21 January 2024). (Accessed 28 June 2026)

  25. Zhou, Y. et al. (2024) ‘Comprehensive evaluation of the precipitable water vapor products of FENGYUN satellites via GNSS data over mainland China’, Atmospheric Research, 302, article 107318. Available at: https://www.sciencedirect.com/science/article/abs/pii/S0169809524000176 (Accessed: 21 January 2024). (Accessed 28 June 2026)

  26. Cao, Y. et al. (2024) ‘The current situation of Russia’s GNSS continuous operating reference station network and thinking on future development’, Advances in Space Research, 73(5), pp. 2500–2512. Available at: https://www.sciencedirect.com/science/article/abs/pii/S0273117724000024(Accessed: 21 January 2024) (Accessed 28 June 2026)

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