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    Quan·tum the·o·ry
    /ˈkwɑn(t)əm ˈθɪəri/

    noun

    • 1. a theory of matter and energy based on the concept of quanta, especially quantum mechanics.

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  3. Mar 8, 2024 · Learn the meaning of quantum theory, a physics concept that explains the behavior of energy at the atomic or molecular level. See examples, history, and related words from Merriam-Webster dictionary.

  4. Quantum mechanics. Wave functions of the electron in a hydrogen atom at different energy levels. Quantum mechanics cannot predict the exact location of a particle in space, only the probability of finding it at different locations. [1] The brighter areas represent a higher probability of finding the electron.

  5. Quantum physics is the study of matter and energy at the most fundamental level. It aims to uncover the properties and behaviors of the very building blocks of nature, such as electrons, photons, and atoms. It uses mathematics to describe the probabilistic nature of quantum objects and phenomena, and it explores the connection between gravity, space, time, and higher dimensions.

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  6. Quantum physics is the physics that explains how everything works at the smallest scales, based on quantum mechanics and quantum field theories. It also deals with the strange and mysterious phenomena of quantum reality, such as entanglement and superposition.

  7. Quantum theory is the theoretical basis of modern physics that explains the nature and behavior of matter and energy on the atomic and subatomic level. The nature and behavior of matter and energy at that level is sometimes referred to as quantum physics and quantum mechanics.

    • Ivy Wigmore
  8. Apr 19, 2024 · Quantum mechanics is the science of matter and light on the atomic and subatomic scale. It describes their properties, interactions, and behaviour using quantum theory, which has particle-wave duality, uncertainty principle, and quantization.

  9. Introduction to quantum mechanics - Wikipedia. Contents. hide. (Top) History. Toggle History subsection. Evidence of quanta from the photoelectric effect. Quantization of bound electrons in atoms. Quantization of spin. Quantization of matter. Further developments. Quantum radiation, quantum fields. Wave–particle duality. Uncertainty principle.

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