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Earth Science Rocks! Bellringer

Earth Science Rocks! Bellringer. Question: These two photos were taken from the same place 63 years apart. How are they alike? How are they different? 1941 2004. Ag Upsala Glacier, South America.

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Earth Science Rocks! Bellringer

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  1. Earth Science Rocks!Bellringer Question: These two photos were taken from the same place 63 years apart. How are they alike? How are they different? 1941 2004

  2. Ag Upsala Glacier, South America

  3. Grinnell Glacier, Montana • 1935 • 2005

  4. South Cascade Glacier, Washington

  5. Tropical storm Sandy 13N, 78 W

  6. Earth Science Rocks! • MYP Unit Question: How does land change? • Learner Profile: Caring and Principled

  7. Earth Science Rocks! • Standard: Investigate the scientific view of how the Earth’s surface is formed. • Learning Target: Today I am learning about erosion by ice and wind because I will know how to protect my mountain house or beach house.

  8. Erosion by Ice • A glacier is a huge mass of ice and snow that moves over land. It erodes and deposits large amounts of rock material. • p. 352-356

  9. How glaciers form • Glaciers form in very cold areas. The snow piles up year after year. • Over time, the weight of the snow packs the snow and forms a giant mass of ice. • Gravity causes them to flow slowly like a “river of ice”

  10. Glacier ice is the largest reservoir of fresh water on the planet, storing an estimated 75 percent of the world’s supply

  11. A glacier can range in length from the equivalent of a football field to more than 100 miles.

  12. The Antarctic ice sheet is actually a glacier. If it were to melt, sea levels would rise 210 feet NASA image of Antartica taken from space

  13. Though it sits on the equator, Mount Kilimanjaro is glaciated

  14. A single glacier ice crystal can grow to be as large as a baseball

  15. Mountain valleys are typically “V” shaped before being taken oven by a glacier; during glaciation, the valley widens and deepens and becomes “U” shaped.

  16. Alaska is estimated to have more than 100,000 glaciers. Most remain unnamed.

  17. Erosion by Wind • Wind carries and deposits sediment. Deserts, coastlines, and areas with little plant coverage are the most affected by wind erosion. • p. 350-351

  18. Sand dunes at the beach

  19. Sand Dunes Piles of sand deposited by wind - Leeward side has a steeper slope leeward windward leeward

  20. Sand Dunes in the desert

  21. Barchan dune east of Gilf Kebir Plateau Saudi Arabia Crescent shaped dunes formed from a unidirectional (one-direction) wind. Barchan dunes of the Namib Desert

  22. Hueco Bolson Desert – Texas Ripple marks are miniature dunes within a dune (not more than 2 inches tall). Formed by cross winds and appear to be traveling in a different direction than the large dune.

  23. The Dust Bowl of the 1930s

  24. Rock formations in the Wadi Desert in Egypt

  25. Arches National Canyon, Utah Formed when wind and water weather (erode) softer material first.

  26. Ventifact on Mt. Falconer - Canada Wind carries fine particles that work like a sand blaster (i.e. sand, silt, clay, and ice particles)

  27. Desert pavement Formed in arid environments when wind carries finer, more lightweight particles such as sand away. Large particles are left behind and protect from further erosion

  28. Loess Deposits - Banks, Pennsylvania Yellowish, fine grained silt and clay sized particles formed by glaciers millions of years ago; carried and deposited by wind.

  29. Pedestal rockAfrica Base of a rock is weathered and eroded more quickly due to sand blasting. Sand grains can only be picked up a couple of feet.

  30. Websites for more information Ice https://sites.google.com/site/earthscienceinmaine/erosion-and-deposition-by-glaciers Wind https://sites.google.com/site/earthscienceinmaine/erosion-and-deposition-by-wind

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