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Four Basic Geological Processes Impact cratering –Impacts by asteroids or comets Volcanism –Eruption of molten rock onto surface Tectonics –Disruption of a planet’s surface by internal stresses Erosion –Surface changes made by wind, water, or ice
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Impact Cratering High kinetic energy of impacting object Excavation Heat Shape round for all impact directions
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Crater Morphology: Impactor in the inner solar system can have 10s of km/sec relative velocity May vaporize or liquefy a significant amount of the target for a large impactor “Simple” craters are bowl shaped “Complex” craters are flatter, and have a central uplift or peak
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Meteor Crater (Arizona) Tycho (Moon) Impact Craters
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The Impact Process 1.Detonation - shockwave propagates through target, projectile vaporized 2.Excavation - target is heated, vaporized, liquified, solid material is ejected (possibly above escape velocity!) 3.Rebound - in larger craters, the target may “bounce back” viscously, forming a central uplift 4.Relaxation - crater walls subside, melt pools in the crater
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Few Hundred Confirmed Craters on Earth
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Meteor Crater
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Manicouigan Crater
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Moon Near Side
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Moon Far Side
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Lunar Highlands
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Mare Imbrium Lunar Mare
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Crater modification
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Mars Rampart Crater 3
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Venus Craters 1
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Ganymede Crater Chain
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Shoemaker-Levy 9
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SL-9 Aftermath
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Hyperion
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Mercury - lots of craters, little volcanism Venus completely re-surfaced by volcanism ~600 MY ago Earth - heavily re-worked surface Moon - volcanism stopped 3.2 BYago Lots of craters Mars - some volcanism, south heavily cratered Terrestrial Planets
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Processes that HEAT planets
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