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相关概念视频

The Quantum-Mechanical Model of an Atom02:45

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Shortly after de Broglie published his ideas that the electron in a hydrogen atom could be better thought of as being a circular standing wave instead of a particle moving in quantized circular orbits, Erwin Schrödinger extended de Broglie’s work by deriving what is now known as the Schrödinger equation. When Schrödinger applied his equation to hydrogen-like atoms, he was able to reproduce Bohr’s expression for the energy and, thus, the Rydberg formula governing hydrogen spectra.
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Electrocyclic reactions, cycloadditions, and sigmatropic rearrangements are concerted pericyclic reactions that proceed via a cyclic transition state. These reactions are stereospecific and regioselective. The stereochemistry of the products depends on the symmetry characteristics of the interacting orbitals and the reaction conditions. Accordingly, pericyclic reactions are classified as either symmetry-allowed or symmetry-forbidden. Woodward and Hoffmann presented the selection criteria for...
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In the macroscopic world, objects that are large enough to be seen by the naked eye follow the rules of classical physics. A billiard ball moving on a table will behave like a particle; it will continue traveling in a straight line unless it collides with another ball, or it is acted on by some other force, such as friction. The ball has a well-defined position and velocity or well-defined momentum, p = mv, which is defined by mass m and velocity v at any given moment. This is the typical...
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First Law: Particles in One-dimensional Equilibrium01:10

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Newton's first law of motion states that a body at rest remains at rest, or if in motion, remains in motion at constant velocity, unless acted on by a net external force. It also states that there must be a cause for any change in velocity (a change in either magnitude or direction) to occur. This cause is a net external force. For example, consider what happens to an object sliding along a rough horizontal surface. The object quickly grinds to a halt, due to the net force of friction. If...
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基于量子距离的量子分类器的分散实现,使用开放的量子步行.

Pedro Linck Maciel1, Graeme Pleasance2, Francesco Petruccione2,3

  • 1Departamento de Física, Centro de Ciências Exatas e da Natureza, Universidade Federal de Pernambuco, Recife 50670-901, Brazil.

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概括
此摘要是机器生成的。

开放的量子步行 (OQW) 能够实现分散式量子计算. 这项研究表明,量子分类器在OQW模型中运行高效,即使在较慢的环境中也保持有限的运行时间.

关键词:
哈达马德分类器的分类器消散式量子计算的量子计算基于距离的分类器基于距离的分类器.开放的量子系统是开放的.开放的量子步行基于量子距离的分类器量子机器学习就是量子机器学习.

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科学领域:

  • 量子计算是一种量子计算.
  • 量子信息科学 量子信息科学
  • 量子系统中的环境相互作用

背景情况:

  • 开放量子步行 (OQW) 是由环境相互作用驱动的.
  • OQWs为散射量子计算提供了一个框架.

研究的目的:

  • 用OQW模型证明基于量子距离的分类器的可行性.
  • 在OQW框架内分析分类器的运行时间.

主要方法:

  • 实现基于量子距离的分类器.
  • 使用开放的量子步行计算模型.
  • 分析不同系统的预期运行时间.

主要成果:

  • 在OQW模型中成功展示了量子分类器.
  • 预期的运行时间仍然有限,即使在较慢的OQW动态中也是如此.

结论:

  • OQW模型是实施量子分类器的可行平台.
  • 拟议的分类器表现出强大的性能和有限的预期运行时间.