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C. (2019). Capturing coastal water clarity variability with Landsat 8. Marine Pollution
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11(2), 143–170. https://doi.org/10.1007/BF00007865
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Maouche, S. (1987). Mécanisme hydrosédimentaires en baie d’Alger (Algérie): approche
sédimentologique, géochimique et traitement statistique. Univ. Grenoble.
Markogianni, V., Kalvas, D., Petropoulos, G. P., & Dimitriou, E. (2018). An appraisal of the
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https://doi.org/10.1016/j.rse.2019.02.007
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https://doi.org/10.4319/lo.1998.43.5.0847
Loriot, S., Boutry, S., & Bertrin, V. (2015). Des applications informatiques pour faciliter.
Sciences Eaux & Territoires, 15. https://hal.archives-ouvertes.fr/hal-01140222
Luis, K. M. A., Rheuban, J. E., Kavanaugh, M. T., Glover, D. M., Wei, J., Lee, Z., & Doney, S.
C. (2019). Capturing coastal water clarity variability with Landsat 8. Marine Pollution
Bulletin, 145(May), 96–104. https://doi.org/10.1016/j.marpolbul.2019.04.078
Lund, J. W. G., Kipling, C., & Le Cren, E. D. (1958). The inverted microscope method of
estimating algal numbers and the statistical basis of estimations by counting. Hydrobiologia,
11(2), 143–170. https://doi.org/10.1007/BF00007865
Luo, B., Minnett, P. J., Gentemann, C., & Szczodrak, G. (2019). Improving satellite retrieved
night-time infrared sea surface temperatures in aerosol contaminated regions. Remote
Sensing of Environment, 223, 8–20. https://doi.org/10.1016/j.rse.2019.01.009
Majozi, N. P. (2011). Remote Sensing of Euphotic Depth in Lake Naivasha [University of
Twente]. In Faculty of Geo-Information Science and Earth Observation.
https://webapps.itc.utwente.nl/librarywww/papers_2011/msc/wrem/majozi.pdf
Malmqvist, B., & Rundle, S. (2002). Threats to the running water ecosystems of the world.
Environmental Conservation, 29(2), 134–153. https://doi.org/10.1017/S0376892902000097
Mao, Y., Wang, S., Qiu, Z., Sun, D., & Bilal, M. (2018). Variations of transparency derived from
GOCI in the Bohai Sea and the Yellow Sea. Optics Express, 26(9), 12191.
https://doi.org/10.1364/OE.26.012191
Maouche, S. (1987). Mécanisme hydrosédimentaires en baie d’Alger (Algérie): approche
sédimentologique, géochimique et traitement statistique. Univ. Grenoble.
Markogianni, V., Kalvas, D., Petropoulos, G. P., & Dimitriou, E. (2018). An appraisal of the
potential of Landsat 8 in estimating chlorophyll-a, ammonium concentrations and other
water quality indicators. Remote Sensing, 10(7), 1–22. https://doi.org/10.3390/rs10071018
Martí-cardona, B., Prats, J., & Niclòs, R. (2019). Enhancing the retrieval of stream surface
temperature from Landsat data. Remote Sensing of Environment, 224(January), 182–191.
https://doi.org/10.1016/j.rse.2019.02.007
Masó, M., & Garcés, E. (2006). Harmful microalgae blooms (HAB); problematic and conditions
