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Luijendijk, A., Hagenaars, G., Ranasinghe, R., Baart, F., Donchyts, G., Aarninkhof, S., 2018.
The State of the World’s Beaches. Sci Rep 8, 6641. https://doi.org/10.1038/s41598018-24630-6
MacQueen, J., 1967. Some methods for classification and analysis of multivariate
observations, in: Proceedings of the Fifth Berkeley Symposium on Mathematical
Statistics and Probability. Oakland, CA, USA, pp. 281–297.
Maiti, S., Bhattacharya, A.K., 2009. Shoreline change analysis and its application to
prediction: A remote sensing and statistics based approach. Marine Geology 257, 11–
23. https://doi.org/10.1016/j.margeo.2008.10.006
Maouche, S., Harbi, A., 2018. The active faults of the Mitidja basin (North Central Algeria):
what does the seismic history of the region tell us? A review. Euro-Mediterr J Environ
Integr 3, 21. https://doi.org/10.1007/s41207-018-0061-1
Maouche, S., Morhange, C., Meghraoui, M., 2009. Large boulder accumulation on the
Algerian coast evidence tsunami events in the western Mediterranean. Marine
Geology 262, 96–104. https://doi.org/10.1016/j.margeo.2009.03.013
Martínez, M.L., Intralawan, A., Vázquez, G., Pérez-Maqueo, O., Sutton, P., Landgrave, R.,
2007. The coasts of our world: Ecological, economic and social importance.
Ecological economics 63, 254–272.
Masria, A., Nadaoka, K., Negm, A., Iskander, M., 2015. Detection of Shoreline and Land
Cover Changes around Rosetta Promontory, Egypt, Based on Remote Sensing
Analysis. Land 4, 216–230. https://doi.org/10.3390/land4010216
Masselink, G., Short, A.D., 1993a. The effect of tide range on beach morphodynamics and
morphology: a conceptual beach model. Journal of coastal research 785–800.
Masselink, G., Short, A.D., 1993b. The effect of tide range on beach morphodynamics and
morphology: a conceptual beach model. Journal of coastal research 785–800.
Mazas, F., Hamm, L., 2011. A multi-distribution approach to POT methods for determining
extreme wave heights. Coastal Engineering 58, 385–394.
McFeeters, S.K., 1996. The use of the Normalized Difference Water Index (NDWI) in the
delineation of open water features. International journal of remote sensing 17, 1425–
1432.
Ménard, Y., Fu, L.-L., Escudier, P., Parisot, F., Perbos, J., Vincent, P., Desai, S., Haines, B.,
Kunstmann, G., 2003. The Jason-1 mission special issue: Jason-1
calibration/validation. Marine Geodesy 26, 131–146.
Mezouar, K., Ciortan, R., Boukhemacha, M.A., 2009. Mesures de protection du littoral
roumain, in: Edition 1, Hammamet, Tunisie. Presented at the Conférence
Méditerranéenne Côtière et Maritime - Coastal and Maritime Mediterranean
Conference, Editions Paralia, pp. 139–142. https://doi.org/10.5150/cmcm.2009.035-0
Mishra, M., Chand, P., Pattnaik, N., Kattel, D.B., Panda, G.K., Mohanti, M., Baruah, U.D.,
Chandniha, S.K., Achary, S., Mohanty, T., 2019. Response of long-to short-term
changes of the Puri coastline of Odisha (India) to natural and anthropogenic factors: a
remote sensing and statistical assessment. Environmental Earth Sciences 78, 1–23.
Morton, R.A., Miller, T.L., 2005. National Assessment Of Shoreline Change: Part 2,
Historical Shoreline Changes And Associated Coastal Land Loss Along The U.S.
Southeast Atlantic Coast (No. 2005–1401), Open-File Report. U.S. Geological
Survey. https://doi.org/10.3133/ofr20051401
Nassar, El-Adawy, A., Zakaria, M., Diab, R., Masria, A., 2022. Quantitative appraisal of
naturalistic/anthropic shoreline shifts for hurghada: Egypt. Marine Georesources &
Geotechnology 40, 573–588. https://doi.org/10.1080/1064119X.2021.1918807
Luijendijk, A., Hagenaars, G., Ranasinghe, R., Baart, F., Donchyts, G., Aarninkhof, S., 2018.
The State of the World’s Beaches. Sci Rep 8, 6641. https://doi.org/10.1038/s41598018-24630-6
MacQueen, J., 1967. Some methods for classification and analysis of multivariate
observations, in: Proceedings of the Fifth Berkeley Symposium on Mathematical
Statistics and Probability. Oakland, CA, USA, pp. 281–297.
Maiti, S., Bhattacharya, A.K., 2009. Shoreline change analysis and its application to
prediction: A remote sensing and statistics based approach. Marine Geology 257, 11–
23. https://doi.org/10.1016/j.margeo.2008.10.006
Maouche, S., Harbi, A., 2018. The active faults of the Mitidja basin (North Central Algeria):
what does the seismic history of the region tell us? A review. Euro-Mediterr J Environ
Integr 3, 21. https://doi.org/10.1007/s41207-018-0061-1
Maouche, S., Morhange, C., Meghraoui, M., 2009. Large boulder accumulation on the
Algerian coast evidence tsunami events in the western Mediterranean. Marine
Geology 262, 96–104. https://doi.org/10.1016/j.margeo.2009.03.013
Martínez, M.L., Intralawan, A., Vázquez, G., Pérez-Maqueo, O., Sutton, P., Landgrave, R.,
2007. The coasts of our world: Ecological, economic and social importance.
Ecological economics 63, 254–272.
Masria, A., Nadaoka, K., Negm, A., Iskander, M., 2015. Detection of Shoreline and Land
Cover Changes around Rosetta Promontory, Egypt, Based on Remote Sensing
Analysis. Land 4, 216–230. https://doi.org/10.3390/land4010216
Masselink, G., Short, A.D., 1993a. The effect of tide range on beach morphodynamics and
morphology: a conceptual beach model. Journal of coastal research 785–800.
Masselink, G., Short, A.D., 1993b. The effect of tide range on beach morphodynamics and
morphology: a conceptual beach model. Journal of coastal research 785–800.
Mazas, F., Hamm, L., 2011. A multi-distribution approach to POT methods for determining
extreme wave heights. Coastal Engineering 58, 385–394.
McFeeters, S.K., 1996. The use of the Normalized Difference Water Index (NDWI) in the
delineation of open water features. International journal of remote sensing 17, 1425–
1432.
Ménard, Y., Fu, L.-L., Escudier, P., Parisot, F., Perbos, J., Vincent, P., Desai, S., Haines, B.,
Kunstmann, G., 2003. The Jason-1 mission special issue: Jason-1
calibration/validation. Marine Geodesy 26, 131–146.
Mezouar, K., Ciortan, R., Boukhemacha, M.A., 2009. Mesures de protection du littoral
roumain, in: Edition 1, Hammamet, Tunisie. Presented at the Conférence
Méditerranéenne Côtière et Maritime - Coastal and Maritime Mediterranean
Conference, Editions Paralia, pp. 139–142. https://doi.org/10.5150/cmcm.2009.035-0
Mishra, M., Chand, P., Pattnaik, N., Kattel, D.B., Panda, G.K., Mohanti, M., Baruah, U.D.,
Chandniha, S.K., Achary, S., Mohanty, T., 2019. Response of long-to short-term
changes of the Puri coastline of Odisha (India) to natural and anthropogenic factors: a
remote sensing and statistical assessment. Environmental Earth Sciences 78, 1–23.
Morton, R.A., Miller, T.L., 2005. National Assessment Of Shoreline Change: Part 2,
Historical Shoreline Changes And Associated Coastal Land Loss Along The U.S.
Southeast Atlantic Coast (No. 2005–1401), Open-File Report. U.S. Geological
Survey. https://doi.org/10.3133/ofr20051401
Nassar, El-Adawy, A., Zakaria, M., Diab, R., Masria, A., 2022. Quantitative appraisal of
naturalistic/anthropic shoreline shifts for hurghada: Egypt. Marine Georesources &
Geotechnology 40, 573–588. https://doi.org/10.1080/1064119X.2021.1918807
