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  • Ecology ; Fauna ; Indonesia ; Island ; Population dynamics ; Vegetation ; Volcanic eruption ; Volcanism
  • This paper re-examines previous suggestions concerning the colonization of the Krakatau islands since the extirpating 1883 eruption that involve the more recently emergent volcanic island Anak Krakatau, which itself suffered a devastating eruption
  • Biogeography ; Bird ; Fauna ; Indonesia ; Island ; Population dynamics ; Volcanic eruption ; Volcanism
  • The avian colonization of Anak Krakatau, an emergent volcanic island, is described for the period 1952-1991 with emphasis on the resident land birds. The few species that had colonized the island by 1952 were destroyed in a volcanic eruption
  • Photographic evidence of rate of development of plant cover on the emergent island Anak Krakatau from 1971 to 1991 and implications for the effect of volcanism
  • Biogeography ; Indonesia ; Island ; Photointerpretation ; Plant canopy ; Population dynamics ; Vegetation ; Volcanic eruption ; Volcanism
  • Photographs of the vegetated North and East Forelands of Anak Krakatau, which emerged from the sea in 1930 and was totally devastated by volcanic activity in 1952/53, provide some evidence of rate of change of plant cover from grassland to woodland
  • Bird ; Ecosystem ; Fauna ; Iceland ; Indonesia ; Island ; Population dynamics ; Vegetation ; Volcanic eruption ; Volcanism
  • There is a strong similarity in the formation and size of the two new volcanic islands : Anak Krakatau, Indonesia (emerging 1930) and Surtsey, Iceland (emerging 1963). However, due to their tropical and subarctic locations, respectively
  • Biogeography ; Cluster analysis ; Geochemistry ; Indonesia ; Island ; Multivariate analysis ; Pyroclastic ; Soil ; Soil properties ; Stratigraphy ; Vegetation dynamics ; Volcanic ash ; Volcanic eruption ; Volcanism
  • This paper describes the post-1883 history of volcanic disturbance to the islands Panjang and Sertung, within the Krakatau group, Indonesia. The results of analyses of chemical, physical and particularly of mineral magnetic properties are presented
  • Biogeography ; Ecology ; Fauna ; Indonesia ; Island ; Population dynamics ; Volcanic eruption ; Volcanism
  • Biogeography ; Ecology ; Fauna ; Indonesia ; Insect ; Island ; Population dynamics ; Volcanic eruption ; Volcanism
  • Clay mineral ; Indonesia ; Island ; Pedogenesis ; Pyroclastic ; Soil ; Soil properties ; Taxonomy ; Volcanic eruption ; Volcanism
  • Geochemistry ; Indonesia ; Magma ; Pyroclastic ; Tsunami ; Volcanic eruption ; Volcanism
  • Biota ; Ecosystem ; Hawaii ; Indonesia ; Island ; Population dynamics ; Vegetation ; Volcanic eruption ; Volcanism
  • Biogeography ; Ecosystem ; Indonesia ; Island ; Population dynamics ; Vegetation ; Volcanic eruption ; Volcanism
  • Biogeography ; Ecology ; Fauna ; Human impact ; Indonesia ; Island ; Population dynamics ; Volcanic eruption ; Volcanism
  • Geochemistry ; Global tectonics ; Indonesia ; Model ; Palaeomagnetism ; Petrography ; Volcanic eruption ; Volcanism
  • Biogeography ; Forest ; Indonesia ; Island ; Multivariate analysis ; Vegetation dynamics ; Volcanic eruption ; Volcanism
  • Debris flow ; Geophysics ; Indonesia ; Pyroclastic ; Seismic reflection ; Stratigraphy ; Tsunami ; Volcanic eruption ; Volcanism
  • Biogeography ; Forest ; Indonesia ; Island ; Vegetation dynamics ; Volcanic eruption ; Volcanism
  • Adaptation ; Biogeography ; Biology ; Ecosystem ; Hawaii ; Indonesia ; Island ; Population dynamics ; Volcanic eruption ; Volcanism
  • Biogeography ; Ecology ; Fauna ; Forest ; Indonesia ; Island ; Population dynamics ; Vegetation ; Volcanic eruption ; Volcanism
  • Clay mineral ; Indonesia ; Island ; Pedogenesis ; Soil ; Soil properties ; Taxonomy ; Volcanic eruption
  • Continental margin ; Geophysics ; Global tectonics ; Indonesia ; Palaeomagnetism ; Seismic method ; Seismicity ; Subduction ; Volcanism