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The lava from Mount Vesuvius during its last eruption in 1944 had high viscosity, meaning it was thick and flowed slowly. This type of lava often leads to explosive eruptions and can create steep-sided volcanoes.
The viscosity of Mount Vesuvius' lava varies depending on its composition, primarily influenced by the amount of silica present. Vesuvius typically produces basaltic to andesitic lava, which has a relatively low viscosity compared to more silica-rich lavas like rhyolite. This low viscosity allows for the formation of fluid lava flows and explosive eruptions. Overall, the viscosity can range from about 10 to 1,000 Pa·s, depending on specific conditions during an eruption.
The magma beneath Mount St. Helens is typically of low viscosity due to its composition, which is rich in silica and gas. This low viscosity magma allows for gases to escape easily, resulting in explosive eruptions.
Mount Vesuvius' magma is comprised mostly of pumice stone. It is low density molten rock that erupts at a high temperature.
The lava from Mount Rainier tends to have higher viscosity due to its composition, which includes more silica and other dissolved gases. This higher viscosity can lead to the lava flowing more slowly and forming steeper volcanic features.
The lava from Mount Vesuvius during its last eruption in 1944 had high viscosity, meaning it was thick and flowed slowly. This type of lava often leads to explosive eruptions and can create steep-sided volcanoes.
The viscosity of Mount Vesuvius' lava varies depending on its composition, primarily influenced by the amount of silica present. Vesuvius typically produces basaltic to andesitic lava, which has a relatively low viscosity compared to more silica-rich lavas like rhyolite. This low viscosity allows for the formation of fluid lava flows and explosive eruptions. Overall, the viscosity can range from about 10 to 1,000 Pa·s, depending on specific conditions during an eruption.
The magma beneath Mount St. Helens is typically of low viscosity due to its composition, which is rich in silica and gas. This low viscosity magma allows for gases to escape easily, resulting in explosive eruptions.
Mount Vesuvius' magma is comprised mostly of pumice stone. It is low density molten rock that erupts at a high temperature.
honey has high viscosity lah, and water has low viscosity. anything that resists flow has high viscosity...lah. honey has high viscosity lah, and water has low viscosity. anything that resists flow has high viscosity...lah.
Mount Vesuvius' magma is comprised mostly of pumice stone. It is low density molten rock that erupts at a high temperature.
High viscosity.
The liquids with high viscosity flow slowly and liquids with low viscosity flow quickly.
The liquids with high viscosity flow slowly and liquids with low viscosity flow quickly.
Because liquids with a high viscosity flow slowly as to where a liquid with a low viscosity flow quickly
Because liquids with a high viscosity flow slowly as to where a liquid with a low viscosity flow quickly
High viscosity of attapulgite in methanol at low shere