Examples of the the word, quantum , in a Sentence Context

The word ( quantum ), is the 4052 most frequently used in English word vocabulary

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  1. P, d and f atomic orbitals, respectively. Introduction With the development of, quantum ,mechanics, it was found that the orbiting electrons around a nucleus could not
  2. Published in recent decades often cite the many-worlds interpretation of, quantum ,mechanics (first formulated by Hugh Everett III in 1957) to account for the
  3. Microscope is a device for viewing surfaces at the atomic level. It uses the, quantum ,tunneling phenomenon, which allows particles to pass through a barrier that
  4. Involve many worlds, in fact a continually exploding array of universes. In, quantum ,theory, new worlds would proliferate with every quantum event, and even if the
  5. Algorithms which seem inherently quantum , or use some essential feature of, quantum ,computation such as quantum superposition or quantum entanglement. By design
  6. Phenomena that are relatively easy to reproduce, the Josephson junction and the, quantum ,Hall effect, respectively. At present, techniques to establish the realization
  7. Electron" orbits" was one of the driving forces behind the development of, quantum ,mechanics. Early models With J. J. Thomson's discovery of the electron in 1897
  8. The term is usually used for those algorithms which seem inherently, quantum , or use some essential feature of quantum computation such as quantum
  9. To develop a unified field theory and to refute the accepted interpretation of, quantum ,physics, both unsuccessfully. Other scientists also fled to America. Among them
  10. Physicist David Deutsche, a strong advocate of the many-worlds interpretation of, quantum ,mechanics, has argued along these lines, saying that" By making good choices
  11. Almost immediately contradicted by Niels Bohr, concerning the interpretation of, quantum ,mechanics. This was in 1935. According to Bohr, this new theory should be
  12. The law that the action variable is quantized was a basic principle of the, quantum ,theory as it was known between 1900 and 1925. Wave–particle duality Although
  13. Same column of the table. (The horizontal rows correspond to the filling of a, quantum ,shell of electrons. ) The elements at the far right of the table have their
  14. Electrons. These electrons exist in atomic orbitals, which are a set of, quantum ,states of the negatively charged electrons trapped in the electrical field
  15. And minimal value in particle wavelength, and thus also momentum and energy. In, quantum ,mechanics, as a particle is localized to a smaller region in space, the
  16. Of chemical bond, the number of neighboring atoms (coordination number) and a, quantum ,mechanical property known as spin. When subjected to external fields, like an
  17. The study of these lines led to the Bohr atom model and to the birth of, quantum ,mechanics. In seeking to explain atomic spectra an entirely new mathematical
  18. Empty mode. This paper was enormously influential in the later development of, quantum ,mechanics, because it was the first paper to show that the statistics of atomic
  19. To absolute zero, atoms can form a Bose–Einstein condensate, at which point, quantum ,mechanical effects, which are normally only observed at the atomic scale
  20. Have greatly assisted experimental work. Significant atomic physicists; Pre, quantum ,mechanics; Post quantum mechanics American Sign Language, or ASL, for a time
  21. Point in the wave-function which described its associated wave packet. The new, quantum ,mechanics did not give exact results, but only the probabilities for the
  22. Orbital model, but it also provided a new theoretical basis for chemistry (, quantum ,chemistry) and spectroscopy. Since the Second World War, both theoretical and
  23. Momentum direction, respectively. Each orbital is defined by a different set of, quantum ,numbers and contains a maximum of two electrons. The simple names s orbital, p
  24. Experimental work. Significant atomic physicists; Pre quantum mechanics; Post, quantum ,mechanics American Sign Language, or ASL, for a time also called Ameslan, is
  25. Of neutrons or protons that represent closed and filled quantum shells. These, quantum ,shells correspond to a set of energy levels within the shell model of the
  26. Of relativity. He continued to deal with problems of statistical mechanics and, quantum ,theory, which led to his explanations of particle theory and the motion of
  27. Hold. Mach's principle has generated much controversy over the years. Modern, quantum ,theory In 1917,at the height of his work on relativity, Einstein published an
  28. P orbital’d orbital and f orbital refer to orbitals with angular momentum, quantum ,number l = 0,1,2 and 3 respectively. These names indicate the orbital shape
  29. Model. Adiabatic principle and action-angle variables Throughout the 1910s, quantum , mechanics expanded in scope to cover many systems. After Ernest
  30. Magic numbers" of neutrons or protons that represent closed and filled, quantum ,shells. These quantum shells correspond to a set of energy levels within the
  31. Proposed this theory because it was a particularly clear demonstration that, quantum ,mechanics could solve the specific heat problem in classical mechanics. Peter
  32. According to Einstein it should be deterministic. Notably, the underlying, quantum ,mechanical theory,i.e. the set of" theorems" derived by it, seemed to be
  33. Array of universes. In quantum theory, new worlds would proliferate with every, quantum ,event, and even if the writer uses human decisions, every decision that could
  34. Are four articles pertaining to the photoelectric effect (which gave rise to, quantum ,theory),Brownian motion, the special theory of relativity, and E = mc2 that
  35. Quantum, or use some essential feature of quantum computation such as, quantum ,superposition or quantum entanglement. By design paradigm Another way of
  36. Statistics of a Bose–Einstein gas by considering a box. Then to each possible, quantum ,motion of a particle in a box associate an independent harmonic oscillator.
  37. Problems. * Quantum algorithm: Quantum algorithm run on a realistic model of, quantum ,computation. The term is usually used for those algorithms which seem
  38. To be identical. Einstein even assumed that it would be sufficient to add to, quantum ,mechanics" hidden variables" to enforce determinism. However, thirty years
  39. Since a spread of frequencies is needed to create the packet itself. In, quantum ,mechanics, where all particle momenta are associated with waves, it is the
  40. It. This formulation is a form of second quantization, but it predates modern, quantum ,mechanics. Erwin Schrödinger applied this to derive the thermodynamic
  41. Einstein–Pools–Rose paradox In 1935,Einstein returned to the question of, quantum ,mechanics. He considered how a measurement on one of two entangled particles
  42. The law of the photoelectric effect ". The latter was pivotal in establishing, quantum ,theory within physics. Near the beginning of his career, Einstein thought that
  43. That electrons orbit like planets, Niels Bohr was able to show that the same, quantum ,mechanical postulates introduced by Planck and developed by Einstein would
  44. Remains attractive in sum). The electron cloud model can only be described by, quantum ,mechanics, in which the electrons are most accurately described as standing
  45. Which is Z. The configuration of these electrons follows from the principles of, quantum ,mechanics. The number of electrons in each element's electron shells
  46. Then behaves as a single super atom, which may allow fundamental checks of, quantum ,mechanical behavior. Identification The scanning
  47. Which localizes the wave, and thus the particle, in space. In states where a, quantum ,mechanical particle is bound, it must be localized as a wave packet, and the
  48. Meaning one-electron) wave functions over space, categorized by n, l,and m, quantum ,numbers, which correspond to the electrons' energy, angular momentum, and an
  49. Or momentum. This principle distilled the essence of Einstein's objection to, quantum ,mechanics. As a physical principle, it was shown to be incorrect when the
  50. Some essential feature of quantum computation such as quantum superposition or, quantum ,entanglement. By design paradigm Another way of classifying algorithms is by

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