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Published in 2018
What’s an awe-inspiring natural feature in your state? Maybe it’s a mountain, canyon, waterfall, glacier, cave, volcano, geyser, natural arch, grand vista, or something else. Identify an inspiring landscape near you, and learn about the geoscience behind it. Start with the geologic maps...
Grade Level   K 1 2 3 4 5 6 7 8 9 10 11 12
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2
Covering some 70 percent of Earth's surface, clouds play a key role in our planet's well-being. But how do they form, why are there so many types, and what clues can they give us about the weather and climate to come? Try your hand at classifying clouds and investigating the role they play in severe...
Grade Level   6 7 8 9 10 11 12
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3
COMET and MetEd offer many resources suitable for use in teaching geosciences to students in K-12.
Grade Level   K 1 2 3 4 5 6 7 8 9 10 11 12
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4
Published in 2015
We're heading out of this world to compare atmospheric compositions of the other planets in the solar system, as well as our own. Practically every other planet in our solar system can be considered to have an atmosphere, apart from perhaps the extremely thin, transient atmosphere of Mercury, with...
Grade Level   3 4 5 6 7 8 9 10 11 12
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5
The National Park Service brings you information on geologic time and how we tell the age of the Earth. Learn about fundamental geologic concepts, view a geologic time module, view a video on the Big Ideas in Geoscience, and look at fossils and rocks throughout geologic time.
Grade Level   K 1 2 3 4 5 6 7 8 9 10 11 12
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6
In this lesson, students will use IndianaMap to create geographic information systems (GIS) maps to demonstrate the amount of general seismic risk that exists for urban areas within the state of Indiana. Step-by-step directions and tutorial videos will provide students with the necessary resources...
Grade Level   6 7 8 9 10 11 12
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7
In this activity, teachers or students will use IndianaMap to create geographic information systems (GIS) maps to demonstrate the distribution of coal mines within the state of Indiana. Step-by-step directions and tutorial videos will provide students with the necessary resources to create the final...
Grade Level   8 9 10 11 12
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8
Are geothermal power sources actually renewable? This activity has students building a geothermal power source and answering questions on renew-ability. Students will see different ways geothermal power is extracted, model forms of this power using a density can filled with hot gravel, and be able...
Grade Level   8 9 10 11 12
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9
Next time you teach plate tectonics, consider a Draw With Me presentation that will engage your students and help them understand the spatial and movement aspects of plate boundary environment. This website provides illustrations that students can color to help them better learn about plate...
Grade Level   6 7 8 9 10 11 12
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10
This is a demonstration of the affects on a continental land mass of an ice sheet growing and then melting. Students can relate their models to the changing state of balance in the Earth's lithosphere when additional loading, such as an ice sheet, is added or removed.
Grade Level   11 12
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11
Students will use a chemical reaction to test for the presence of carbonate in calcite and limestone. By dropping a small amount of an acid on these specimens, they will observe bubbles of carbon dioxide forming from the reaction of the acid with carbonate minerals.
Grade Level   9 10 11 12
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12
Potholes like the ones featured in this activity may have been formed by the grinding action of pebbles being swirled round by the fast-moving water. We can re-create these conditions by swirling pebbles in a bucket of water, using a spade.
Grade Level   9 10 11 12
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13
Published in 1994
Students often ask how scientists know that the continents have moved. This activity about the apparent wandering of the North Pole provides good evidence that the continents do indeed move.
Grade Level   9 10 11 12
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14
Using a pupil model to demonstrate the slab pul is the main plate-driving force. Considering the different processes likely to be driving plate movement by use os a student model.
Grade Level   9 10 11 12
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15
Hand modelling of compression, tension, and shear in the Earth. A class activity to help pupils to visualize types of stress in the Earth through modelling with their hands.
Grade Level   9 10 11 12
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16
When an earthquake strikes, investigate why some buildings survive and others do not. How buildings with different foundations respond to earthquakes. This activity could form part of a lesson about earthquakes and their effects. It could also form part of the preparation for the best way people...
Grade Level   9 10 11 12
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17
While the 'Principle of superposition of strata' states that younger rocks are found above older ones, there are certain unusual geological conditions causing older rocks to be found on top of younger ones. Through this activity, pupils can model the unusual geological conditions where the...
Grade Level   10 11 12
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18
This activity can be used as one means of explaining isostasy, in the context of the Earth's structure and its surface relief. Students will model the principle of isostasy with wooden blocks.
Grade Level   11 12
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19
In this lesson, students will create three-dimensional (3-D) blocks out of paper to learn about the types of faulting that occur at the Earth’s surface and its interior, and explain how earthquakes are generated by fault movement. Step-by-step directions will provide students with the necessary...
Grade Level   K 1 2 3 4 5 6 7 8 9 10 11 12
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20
Published in 1990
This report contains instructions and patterns for preparing seven, 3-D paper models that schematically illustrate common earth faults and associated landforms. The faults described are: normal, reverse, right- and left-lateral strike-slip, and oblique-slip. There are also models and discussions of...
Grade Level   6 7 8 9 10 11 12
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