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Sagot :
Answer:
Narrator:
"Imagine Earth as a grand mosaic, with its surface divided into enormous, shifting pieces known as tectonic plates. These plates float on the semi-fluid asthenosphere beneath them, constantly on the move. But what happens when these massive plates collide, pull apart, or slide past each other? Let’s explore their interactions."
Narrator:
"First, picture two plates converging, or moving toward each other. This meeting place can be quite dramatic. One plate might be forced beneath the other in a process called subduction, forming deep ocean trenches and triggering volcanic eruptions. Think of the majestic volcanic arcs like the Andes Mountains, shaped by the relentless push and pull of converging plates."
Narrator:
"Now, shift your gaze to where plates diverge, or move apart. At these divergent boundaries, new crust forms as magma rises from the mantle and solidifies at mid-ocean ridges. This process creates long, underwater mountain ranges and rift valleys. The Mid-Atlantic Ridge, a massive underwater mountain chain, is a prime example of such divergence."
Narrator:
"But what about when plates simply slide past one another? At transform boundaries, this lateral motion can cause the ground to shake. Imagine two plates rubbing against each other, their edges snagging and then slipping suddenly. This movement can produce significant earthquakes, like those along the San Andreas Fault in California."
Narrator: "
Sometimes, tectonic activity occurs away from the boundaries, deep within a plate. These intraplate stresses can create earthquakes and volcanic activity even far from plate edges. They’re like the unexpected surprises in our grand mosaic, showing that even the inner parts of the plates are not completely stable."
Narrator:
"So, as tectonic plates engage in their slow, yet powerful dance, they shape our planet’s surface, creating mountains, earthquakes, and volcanoes. Each interaction tells a story of Earth's dynamic and ever-changing nature, reminding us that our planet is a living, breathing entity."
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