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Prompt
Explain quantum entanglement in simple terms.
Imagine you have two magic coins. When you flip them, they always land on the same side — if one is heads, the other is always heads too, no matter how far apart they are.
That's quantum entanglement. Two particles become connected so that measuring one instantly tells you about the other. Einstein called it "spooky action at a distance" because it seems to break the rule that nothing travels faster than light.
The key insight: the particles don't send signals. They share a quantum state from the moment they interact, like two pages torn from the same book — each one always contains the matching half of the story.
Quantum entanglement is when two particles become linked so that the state of one instantly affects the other, regardless of distance.
Think of it like a pair of gloves: if you find the left glove in your pocket, you immediately know the other one is a right glove, wherever it is. But in quantum physics, the "handedness" isn't determined until you look — both gloves are in a superposition of left and right until observed.
This phenomenon is real, experimentally proven, and forms the basis of quantum computing and quantum cryptography.
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