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The Interior of the
          Earth


By Moira Whitehouse PhD
The surface of the Earth is constantly
changing as new landforms are built
and older ones are destroyed by the
forces of the Earth.
Some changes happen so slowly that
you do not see the differences for a
long time—for example the Colorado
river carving the Grand Canyon has
been happening for millions of years.


On the other hand, volcanic eruptions and
earthquakes can change the surface of the
Earth very quickly.
How are Landforms Made?
• Now let’s examine the forces that
create the different landforms. Broadly
speaking, there are two kinds:


•Constructive forces—those that build up the
land.


• Destructive forces—those that wear down
the land.
To understand the constructive forces of
the Earth—the ones that build up
landforms, we need to understand what
the interior (the inside) of the Earth is
like.
What’s inside the
    Earth?
Let us look at the inside of the Earth.




If you were able to cut the Earth in
half, you would find it is made up of
different layers.
NASA image
The thin, outermost layer of the earth is
made of solid rock and is called the crust.

All of the landforms on Earth are located
                Crust
on the crust and all life on Earth exists on
this top layer.
The Earth’s crust consists of the oceanic and
the continental crusts, both of which float on
the magma (melted rock).
 • The oceanic crust is the layer of
 rock which forms the floor of an
 ocean. It is about 4-7 miles thick.

 • The continental crust is the layer of rock
 which forms the continents and those areas
                magma
 of shallow seabed close to the shore. The
 continental crust is much thicker than the
 oceanic crust--about 19 miles thick.
The continental crust is mainly made of a
rock called granite.

The oceanic crust is made of mostly
basalt, a very dense rock that is much
heavier than the granite of the continental
crust.
As a result, the oceanic crust sinks deeper
into the magma (the molten rock) when
the continental and oceanic crust meet.
This rock
is mainly
granite.



                    This rock
            magma   is mainly
                    basalt.
The mantle is the layer directly below the
crust.




     NASA image


• It is about 1800 miles thick and made of
melted rock.
As you get closer to the center of the Earth
the hotter it is. This explains why the rock in
the mantle is molten (melted).
The cooler (heavier)
melted rock in the
mantle sinks as the
hotter (lighter) melted
rock rises, creating
convection currents.
Below
the
mantle
is the
core, the
center
of the      http://www.freedigitalphotos.net




earth.
Inner core, solid iron
The core is also
                       and nickel
divided into two
regions, the inner
core and the outer
core. Scientists
believe the outer
core is a liquid and
the inner core is a
solid.
                       Outer core, liquid iron
Let’s see how the
make-up of this
planetary ball
affects how some
landsforms are created.

Remember that landforms are
found on a very thin crust
floating on top of a thick layer of
molten (melted) rock called
magma.                                http://scign.jpl.nasa.gov/
Plates Make up the
Crust of the Earth
Next, the crust of
the Earth is
broken into huge
pieces of rock
called plates.
These plates fit
together around
the globe like a
giant jigsaw
puzzle.
The platesfloat on the
       hot, melted rock
       found in the mantle.




Creative Commons
Wikipedia Commons
• We learned that because of convection the
magma below the magma flows, very slowly,
in large patterns.




    Creative Commons
    Wikipedia Commons
Because of convection,
the cooler (heavier)
melted rock in the
mantle sinks as the
hotter (lighter) melted
rock rises creating
convection currents.
These currents rub
against the bottom of
the plates and cause
the crustal plates to
move.
Map courtesy NOAA




Here are the 7 major plates plus several smaller ones.
Another day we will see how the
knowledge you have gained about the
interior of the Earth and the plates that
make up Earth’s crust helps you
understand how some Earth’s
landforms are formed.

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Earth's insides (teach)

  • 1. The Interior of the Earth By Moira Whitehouse PhD
  • 2. The surface of the Earth is constantly changing as new landforms are built and older ones are destroyed by the forces of the Earth.
  • 3. Some changes happen so slowly that you do not see the differences for a long time—for example the Colorado river carving the Grand Canyon has been happening for millions of years. On the other hand, volcanic eruptions and earthquakes can change the surface of the Earth very quickly.
  • 4. How are Landforms Made? • Now let’s examine the forces that create the different landforms. Broadly speaking, there are two kinds: •Constructive forces—those that build up the land. • Destructive forces—those that wear down the land.
  • 5. To understand the constructive forces of the Earth—the ones that build up landforms, we need to understand what the interior (the inside) of the Earth is like.
  • 7. Let us look at the inside of the Earth. If you were able to cut the Earth in half, you would find it is made up of different layers.
  • 9. The thin, outermost layer of the earth is made of solid rock and is called the crust. All of the landforms on Earth are located Crust on the crust and all life on Earth exists on this top layer.
  • 10. The Earth’s crust consists of the oceanic and the continental crusts, both of which float on the magma (melted rock). • The oceanic crust is the layer of rock which forms the floor of an ocean. It is about 4-7 miles thick. • The continental crust is the layer of rock which forms the continents and those areas magma of shallow seabed close to the shore. The continental crust is much thicker than the oceanic crust--about 19 miles thick.
  • 11. The continental crust is mainly made of a rock called granite. The oceanic crust is made of mostly basalt, a very dense rock that is much heavier than the granite of the continental crust. As a result, the oceanic crust sinks deeper into the magma (the molten rock) when the continental and oceanic crust meet.
  • 12. This rock is mainly granite. This rock magma is mainly basalt.
  • 13. The mantle is the layer directly below the crust. NASA image • It is about 1800 miles thick and made of melted rock.
  • 14. As you get closer to the center of the Earth the hotter it is. This explains why the rock in the mantle is molten (melted).
  • 15. The cooler (heavier) melted rock in the mantle sinks as the hotter (lighter) melted rock rises, creating convection currents.
  • 16. Below the mantle is the core, the center of the http://www.freedigitalphotos.net earth.
  • 17. Inner core, solid iron The core is also and nickel divided into two regions, the inner core and the outer core. Scientists believe the outer core is a liquid and the inner core is a solid. Outer core, liquid iron
  • 18. Let’s see how the make-up of this planetary ball affects how some landsforms are created. Remember that landforms are found on a very thin crust floating on top of a thick layer of molten (melted) rock called magma. http://scign.jpl.nasa.gov/
  • 19. Plates Make up the Crust of the Earth
  • 20. Next, the crust of the Earth is broken into huge pieces of rock called plates. These plates fit together around the globe like a giant jigsaw puzzle.
  • 21. The platesfloat on the hot, melted rock found in the mantle. Creative Commons Wikipedia Commons
  • 22. • We learned that because of convection the magma below the magma flows, very slowly, in large patterns. Creative Commons Wikipedia Commons
  • 23. Because of convection, the cooler (heavier) melted rock in the mantle sinks as the hotter (lighter) melted rock rises creating convection currents. These currents rub against the bottom of the plates and cause the crustal plates to move.
  • 24. Map courtesy NOAA Here are the 7 major plates plus several smaller ones.
  • 25. Another day we will see how the knowledge you have gained about the interior of the Earth and the plates that make up Earth’s crust helps you understand how some Earth’s landforms are formed.