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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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It is said that the energy of an electron in an atom is quantized; that is, it can be equal only to certain specific values and can jump from one energy level to another but not transition smoothly or stay between these levels.
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The status of a reversible reaction is conveniently assessed by evaluating its reaction quotient (Q). For a reversible reaction described by m A + n B ⇌ x C + y D, the reaction quotient is derived directly from the stoichiometry of the balanced equation as
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A parallel-plate capacitor with capacitance C, whose plates have area A and separation distance d, is connected to a resistor R and a battery of voltage V. The current starts to flow at t = 0. What is the displacement current between the capacitor plates at time t? From the properties of the capacitor, what is the corresponding real current?
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Alfred Binet, along with his student Théophile Simon, was tasked by the French Ministry of Education in 1904 to create a method for identifying students who struggled to learn through conventional classroom instruction. This initiative aimed to address overcrowding by placing such students in specialized schools. Binet and Simon developed an intelligence test comprising 30 tasks, ranging from simple commands, like touching one's nose or ear, to more complex tasks, such as drawing...
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When one or more data points appear far from the rest of the data, there is a need to determine whether they are outliers and whether they should be eliminated from the data set to ensure an accurate representation of the measured value. In many cases, outliers arise from gross errors (or human errors) and do not accurately reflect the underlying phenomenon. In some cases, however, these apparent outliers reflect true phenomenological differences. In these cases, we can use statistical methods...
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相关实验视频

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Large Scale Energy Efficient Sensor Network Routing Using a Quantum Processor Unit
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在IBM Q上基于非适应性测量的量子计算.

Jelena Mackeprang1,2,3, Daniel Bhatti1,2, Stefanie Barz4,5

  • 1Institute for Functional Matter and Quantum Technologies, University of Stuttgart, 70569, Stuttgart, Germany.

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研究人员对IBM进行了测试.

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科学领域:

  • 量子信息科学 量子信息科学
  • 量子计算硬件验证 验证

背景情况:

  • 多方纠是量子信息处理中的一个关键资源.
  • 验证复杂纠状态的量子性质对于推进量子技术至关重要.
  • 基于非自适应测量的量子计算 (NMQC) 提供了一种方法,通过贝尔不等式违规检测多方纠.

研究的目的:

  • 为了评估IBM量子系统1的量子能力.
  • 在使用NMQC的一般化GHZ状态中研究n-party纠.
  • 展示NMQC作为一种用于表征量子设备的工具.

主要方法:

  • 在IBM量子系统1上生成泛化的n-量子比特GHZ状态.
  • 来自NMQC协议的贝尔不等式的测量.
  • 计算多变量布尔函数以区分量子相关性和局部隐藏变量 (LHV).

主要成果:

  • 对最多七个量子比特观察到的贝尔不等式的违反.
  • 证明了NMQC在量子处理器上计算非线性布尔函数的能力.
  • 与基于光子的NMQC实现结果的比较.

结论:

  • 一个IBM量子系统展示了量子相关性,表明多方纠.
  • NMQC作为一种有效的方法来表征量子设备的量子性.
  • 这项研究证实了NMQC在验证复杂量子态方面的潜力.