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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.
     

  2. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3841891/
     

  3. .[ONLINE] Available at: Earth Shattering Remote Sensing Applications & Uses2. GISGeography. 2019. 100
     

  4. https://gisgeography.com/100-earth-remote-sensing-applications-uses/
     

  5.  [ONLINE] Available at: Remote Sensing Major Applications Area3. Grind GIS. 2016.
     

  6. https://grindgis.com/remote-sensing/remote-sensing-applications
     

  7. ​​5. https://gis.usc.edu/blog/the-application-of-geographic-and-information-science-gis-in-earth-sciences/
     

  8. ​6. Meissner B., 1994. Remote sensing cartography. [online], January. Available from:< https://link.springer.com/article/10.1007/BF00806359 > [Accessed January 20 2023].
     

  9. ​7. Fisher F. P., & Lindenberg E. R., 1989. On Distinctions among Cartography, Remote Sensing, and Geographic Information Systems. [online], 10 (55), October. Available from:  <https://www.asprs.org/wp-content/uploads/pers/1989journal/oct/1989_oct_1431-1434.pdf > [Accessed January 20 2023].
     

  10. ​Kainz W., 2019. Cartography and the others – aspects of a complicated relationship. [online], October. Available from:< https://www.tandfonline.com/doi/full/10.1080/10095020.2020.1718000 > [Accessed January 20 2023].
     

  11. ​​Ferrari M., 2019. A Panoptic Cartography of Remote Sensing. [online],p 132-142, May. Available from:<  https://journals.openedition.org/ardeth/366 > [Accessed January 20 2023].
     

  12. ​​Rujoiu-Mare M.-R., 2016. Mapping Land Cover Using Remote Sensing Data and GIS Techniques: A Case Study of Prahova Subcarpathians. [online], (32). Available from: <https://www.sciencedirect.com/science/article/pii/S1878029616001626 > [Accessed January 20 2023].
     

  13. ​​Dongmei C., 2004. Remote sensing technology for mapping and monitoring land-cover and land-use change.[online], 61(4):301-325, May. Available from:<https://www.researchgate.net/publication/254205127_Remote_sensing_technology_for_mapping_and_monitoring_land-cover_and_land-use_change > [Accessed January 20 2023].
     

  14. ​​Fire Research Group, 2018. Remote Sensing, Mapping, etc. [online]. Available from:< https://frg.berkeley.edu/remote-sensing-mapping-etc/>   [Accessed January 20 2023].
     

  15. ​​Van der Wel, 2000. Cartography, remote sensing and gis. [online]. Available from: < https://dspace.library.uu.nl/bitstream/handle/1874/522/c2.pdf;jsessionid=935D5ECB05F4B135CACC6775A4B8B246?sequence=19 > [Accessed January 20 2023].
     

  16. ​​ Johannes H. Uhl, Stefan Leyk, Zekun Li, Weiwei Duan, Basel Shbita, Yao-Yi Chiang, and Craig A. Knoblock, 2021. Combining Remote-Sensing-Derived Data and Historical Maps for Long-Term Back-Casting of Urban Extents. [online], 13(18), September. Available from: < https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8691741/ > [Accessed January 20 2023].
     

  17. ​Diani, K. et al. (2023) Chapter 11 - Identification of soil erosion sites in semiarid zones: Using GIS, remote sensing, and PAP/RAC model, ScienceDirect. Edited by S. Eslamian and F. Eslamian. Elsevier. Available at: https://www.sciencedirect.com/science/article/abs/pii/B9780128219614000038 (Accessed: 17 December 2023).
     

  18. ​Singh, S. et al. (2023) ‘Decoding Chambal River Shoreline Transformations: A Comprehensive Analysis Using Remote Sensing, GIS, and DSAS’, Water, 15(9), p. 1793. Available at: https://doi.org/10.3390/w15091793.
     

  19. ​Xia, P. et al. (2023) Monitoring urban heat island intensity based on GNSS tomography technique - journal of geodesy, SpringerLink. Available at: https://link.springer.com/article/10.1007/s00190-023-01804-3(Accessed: 21 January 2024).
     

  20. ​Xu, Y. et al. (2024) An initial investigation of the non-isotropic feature of GNSS tropospheric delay - satellite navigation, SpringerLink. Available at: https://link.springer.com/article/10.1186/s43020-023-00122-5 (Accessed: 21 January 2024).  
     

  21. ​Li, Xin et al. (2023) Improving PPP-RTK-based vehicle navigation in urban environments via multilayer perceptron-based NLOS signal detection - GPS solutions, SpringerLink. Available at: https://link.springer.com/article/10.1007/s10291-023-01567-6  (Accessed: 21 January 2024).
     

  22. ​Le, N. et al. (2024) Identifying neotectonic motions in Germany using discontinuity-corrected GNSS data - pure and Applied Geophysics, SpringerLink. Available at: https://link.springer.com/article/10.1007/s00024-023-03390-z  (Accessed: 21 January 2024)
     

  23. ​(No date) Evaluating the performance of the static PPP-Ar in a forest environment ... Available at: https://ascelibrary.org/doi/abs/10.1061/JSUED2.SUENG-1403  (Accessed: 21 January 2024)
     

  24. ​Person, Anang Wahyu, M. and Sejati, I.H.W. (2023) Reducing rural boundary conflict through participatory mapping and GNS, Taylor & Francis. 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).
     

  25. ​Author links open overlay panelYi Zhou a et al. (2024) Comprehensive evaluation of the precipitable water vapor products of FENGYUN satellites via GNSS data over Mainland China, Atmospheric Research. Available at: https://www.sciencedirect.com/science/article/abs/pii/S0169809524000176  (Accessed: 21 January 2024)
     

  26. ​Author links open overlay panelYizhi Cao a 1 et al. (2024) The current situation of Russia’s GNSS Continuous Operating Reference Station Network and thinking on future development, Advances in Space Research. Available at: https://www.sciencedirect.com/science/article/abs/pii/S0273117724000024  (Accessed: 21 January 2024)

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