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The Doppler effect refers to the change in frequency or wavelength of a wave in relation to an observer who is moving relative to the wave source. It is commonly experienced with sound waves, such as when a car horn passes by: as the car approaches, the sound waves are compressed, causing the pitch to rise, and as it moves away, the waves are stretched, causing the pitch to drop. This effect also occurs with light waves, where the shift towards the blue end of the spectrum (blue shift) occurs wh
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The Doppler effect refers to the change in frequency or wavelength of a wave in relation to an observer who is moving relative to the wave source. It is commonly experienced with sound waves, such as when a car horn passes by: as the car approaches, the sound waves are compressed, causing the pitch to rise, and as it moves away, the waves are stretched, causing the pitch to drop. This effect also occurs with light waves, where the shift towards the blue end of the spectrum (blue shift) occurs wh
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Quantum Computing & Tech ⚛️ on Instagram: "This is not CGI. It’s a single atom. Captured by physicist David Nadlinger, this image shows one strontium atom suspended between two electrodes, held in place by electromagnetic fields inside a vacuum chamber. When blasted with precision lasers, the atom absorbs and re-emits light so strongly that it becomes visible to the naked eye. A fundamental building block of reality, isolated and glowing. Quantum physics made human-scale. Follow @uncover.quantum
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Memes on Instagram: "Classic Modern physics rests on two pillars that are both extraordinarily successful—and fundamentally incompatible. Quantum mechanics governs the smallest scales of reality, describing particles as probabilities and interactions as quantized events. General relativity, on the other hand, explains gravity as the smooth curvature of spacetime itself, excelling at cosmic scales. Each theory is correct within its domain, yet when forced to coexist, they mathematically collapse.
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