THE EFFECT OF LEAF AREA INDEX CHANGES ON LAND SURFACE TEMPERATURE IN WEST KALIMANTAN
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BPS. (2022). Jumlah Penduduk (Jiwa), 2020-2022. https://kalbar.bps.go.id/indicator/12/42/1/jumlah-penduduk.html
Dede, M., Pramulatsih, G. P., Widiawaty, M. A., Ramadhan, Y. R. R., & Ati, A. (2019). Dinamika Suhu Permukaan Dan Kerapatan Vegetasi Di Kota Cirebon. Jurnal Meteorologi Klimatologi Dan Geofisika, 6(1), 23–31. https://doi.org/10.36754/jmkg.v6i1.111
Firdaus, P., Dwi, M., Manessa, M., Tambunan, M. P., & Tambunan, R. P. (2023). Future Suitability of Tea Plants: Climate Analysis Using Remote Sensing in Java, Indonesia. International Journal of Remote Sensing and Earth Sciences (IJReSES), 20(1), 77–88.
Huang, M., Piao, S., Ciais, P., Peñuelas, J., Wang, X., Keenan, T. F., Peng, S., Berry, J. A., Wang, K., Mao, J., Alkama, R., Cescatti, A., Cuntz, M., De Deurwaerder, H., Gao, M., He, Y., Liu, Y., Luo, Y., Myneni, R. B., … Janssens, I. A. (2019). Air temperature optima of vegetation productivity across global biomes. Nature Ecology and Evolution, 3(5), 772–779. https://doi.org/10.1038/s41559-019-0838-x
Latue, P. C., Rakuasa, H., Somae, G., & Muin, A. (2023). Analisis Perubahan Suhu Permukaan Daratan di Kabupaten Seram Bagian Barat Menggunakan Platform Berbasis Cloud Google Earth Engine. Sudo Jurnal Teknik Informatika, 2(2), 45–51. https://doi.org/10.56211/sudo.v2i2.261
Pemerintah Provinsi Kalimantan Barat, P. P. dan D. (PPID). (2023). Gambaran Umum Aspek Geografis Kalimantan Barat. https://ppid.kalbarprov.go.id/?public=profil-daerah
Peñuelas, J., Rutishauser, T., & Filella, I. (2009). Phenology Feedbacks on Climate Change. 324(5929), 887–888.
Rasul, A., Ibrahim, S., Onojeghuo, A. R., & Balzter, H. (2020). A trend analysis of leaf area index and land surface temperature and their relationship from global to local scale. Land, 9(10), 1–17. https://doi.org/10.3390/land9100388
Sabarati, A., Aminuddin, J., & Toersilowati, L. (2022). Utilization of Terra-MODIS Satellites for Phenomenon Analysis Urban Heat Island in Kalimantan Island. Georest, 1(1), 22–26. https://doi.org/10.57265/georest.v1i1.6
Sari, N. M., Indra, T. L., & Kushardono, D. (2022). Urban Vegetation Quality Assessment Using Vegetation Index and Leaf Area Index from Spot 7 Data with Fuzzy Logic Algorithm. International Journal on Advanced Science, Engineering and Information Technology, 12(2), 738–746. https://doi.org/10.18517/ijaseit.12.2.11719
Sugiyono. (2017). Method Study Quantitative, Qualitative, and R&D. Alfabeta, CV.
Sulla-Menashe, D., & Friedl, M. A. (2022). User guide to collection 6 MODIS land cover (MCD12Q1 and MCD12C1) product. USGS: Reston, VA, USA, 1, 1–18.
Xiao, Z., Liang, S., Wang, J., Xiang, Y., Zhao, X., & Song, J. (2016). Long-Time-Series Global Land Surface Satellite Leaf Area Index Product Derived from MODIS and AVHRR Surface Reflectance. IEEE Transactions on Geoscience and Remote Sensing, 54(9), 5301–5318. https://doi.org/10.1109/TGRS.2016.2560522
Zhu, Z., Bi, J., Pan, Y., Ganguly, S., Anav, A., Xu, L., Samanta, A., Piao, S., Nemani, R. R., & Myneni, R. B. (2013). Global Data Sets of Vegetation Leaf Area Index (LAI)3g and Fraction of Photosynthetically Active Radiation (FPAR)3g Derived from Global Inventory Modeling and Mapping Studies (GIMMS) Normalized Difference Vegetation Index (NDVI3g) for the Period 1981 to 2. Remote Sens, 5(2), 927–948. https://doi.org/https://doi.org/10.3390/rs5020927
Zulkarnain, R. C. (2016). Pengaruh Perubahan Tutupan Lahan Terhadap Perubahan Suhu Permukaan di Kota Surabaya. Skripsi Institut Teknologi Sepuluh Nopember, 1–306.
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