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The planet we live on: The beginnings of the Earth Sciences

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Figure 5.5: A basaltic erupti<strong>on</strong> in <strong>the</strong> Hawaii Volcanoes Nati<strong>on</strong>al Park.volumes <strong>of</strong> ash. To simulate changing <strong>the</strong> viscosity <strong>of</strong> lava, try <strong>the</strong> ‘See how <strong>the</strong>y run:investigate why some lavas flow fur<strong>the</strong>r and more quickly than o<strong>the</strong>rs’ activity <strong>on</strong> <strong>the</strong>http://www.earthlearningidea.com <str<strong>on</strong>g>we</str<strong>on</strong>g>bsite.<str<strong>on</strong>g>The</str<strong>on</strong>g> viscous magma can sometimes flow out <strong>of</strong> steep-sided volcanoes like toothpaste, butmore <strong>of</strong>ten, it solidifies in <strong>the</strong> vent so that pressure mounts, eventually triggering a violenterupti<strong>on</strong>. This may be a horiz<strong>on</strong>tal blast, like <strong>the</strong> <strong>on</strong>e that flattened a 600 square kilometreforest <strong>of</strong> trees like matchsticks at Mount St. Helens in 1980, or a vertical blast, as blastedash 34 km into <strong>the</strong> air in <strong>the</strong> erupti<strong>on</strong> <strong>of</strong> Mount Pinatubo in <strong>the</strong> Philippines in 1991.Volcanic ash itself can pose a hazard. In a thick volcanic ash fall, <strong>the</strong>re is total darkness;ash in <strong>the</strong> air makes it difficult for people to brea<strong>the</strong>, particularly those who already havebreathing problems. <str<strong>on</strong>g>The</str<strong>on</strong>g> ash blown high into <strong>the</strong> atmosphere in major volcanic erupti<strong>on</strong>s(Figure 5.6) can rain down over thousands <strong>of</strong> square kilometres <strong>of</strong> land, blanketing townsand agricultural land; near volcanoes it can rain down so thickly that ro<strong>of</strong>s collapse113

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