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Wave–particle duality is the quantum-mechanics idea that fundamental entities such as photons and electrons can display either wave-like or particle-like properties depending on the experimental conditions. It highlights that classical concepts of “wave” and “particle” cannot fully describe quantum objects on their own. Historically, light first showed wave behavior through interference experiments, then later evidence such as the photoelectric effect and Compton scattering supported particle-like behavior (photons with quantized energy and momentum). For matter, early experiments showed electrons behaving like particles, but de Broglie proposed that electrons (and all matter) have wave properties; this was confirmed experimentally by electron diffraction experiments such as Davisson–Germer and Thomson–Reid. In quantum experiments, wave-like interference can emerge statistically even when particles are detected one at a time, and “which-way” measurements that reveal the path destroy the interference pattern.
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