Long before the understanding of quantum mechanics led to a theoretical basis for the periodic - ums 2025

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Because quantum mechanics is important when applied to atomic phenomena, you might guess that investigations into questions like these would give rise to the discovery of quantum mechanics. Instead it came from a study of heat radiation.
Quantum mechanics is the field of physics that explains how extremely small objects simultaneously have the characteristics of both particles (tiny pieces of matter) and waves (a disturbance or variation that transfers energy). Physicists call this the wave-particle duality.
Quantum mechanics arose gradually from theories to explain observations that could not be reconciled with classical physics, such as Max Plancks solution in 1900 to the black-body radiation problem, and the correspondence between energy and frequency in Albert Einsteins 1905 paper, which explained the photoelectric
In the early 1900s, scientists began to develop quantum mechanics in order to explain the results of a number of experiments that defied any other interpretation.
At a fundamental level, both radiation and matter have characteristics of particles and waves. The gradual recognition by scientists that radiation has particle-like properties and that matter has wavelike properties provided the impetus for the development of quantum mechanics.
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Niels Bohr and Max Planck, two of the founding fathers of Quantum Theory, each received a Nobel Prize in Physics for their work on quanta. Einstein is considered the third founder of Quantum Theory because he described light as quanta in his theory of the Photoelectric Effect, for which he won the 1921 Nobel Prize.
The discovery that began quantum mechanics as a field of study was when physicists Albert Einstein and Max Planck proved that light and matter can behave both as particles and waves. This began the era of quantum mechanics, which is basically the physics of the very tiny.
Answer and Explanation: The quantum mechanical model of the atom is currently the accepted model of the atom. It hinges on the idea that the universe is not as predictable as previously thought. Electrons in atoms dont reside in neat orbits around the nucleus as the Bohr model theorized.

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