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相关概念视频

The Quantum-Mechanical Model of an Atom02:45

The Quantum-Mechanical Model of an Atom

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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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Emission Spectra02:39

Emission Spectra

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When solids, liquids, or condensed gases are heated sufficiently, they radiate some of the excess energy as light. Photons produced in this manner have a range of energies, and thereby produce a continuous spectrum in which an unbroken series of wavelengths is present.
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Atomic Spectroscopy: Absorption, Emission, and Fluorescence01:23

Atomic Spectroscopy: Absorption, Emission, and Fluorescence

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Atomic spectroscopy is a vital tool in elemental analysis, both qualitatively and quantitatively. It can be broadly divided into optical spectroscopy, mass spectroscopy, and X-ray spectroscopy methods. The optical spectroscopic methods are atomic absorption spectroscopy (AAS), atomic emission spectroscopy (AES), and atomic fluorescence spectroscopy (AFS). The first step in all three methods is atomization, where the solid, liquid, or solution-phase samples are converted into gas-phase atoms and...
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Spectrophotometry: Introduction01:16

Spectrophotometry: Introduction

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Spectrophotometry is the quantitative measurement of the absorption, reflection, diffraction, or transmission of electromagnetic radiation through a material as a function of the intensity and wavelength of the radiation. A spectrophotometer is a device used to measure the change in the radiation intensity caused by its interaction with the material.
The essential components of a spectrophotometer include a source of electromagnetic radiation, a slot for placing a material to be analyzed, and a...
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Molecular Spectroscopy: Absorption and Emission01:14

Molecular Spectroscopy: Absorption and Emission

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Molecules possess discrete energy levels called quantum states. Unlike atoms, which have simpler energy levels, molecules possess additional rotational and vibrational energy levels.  Each energy level is separated by an energy gap, with the gaps between adjacent electronic, vibrational, and rotational levels varying significantly. The three types of energy levels in a diatomic molecule are shown in Figure 1.
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The de Broglie Wavelength02:32

The de Broglie Wavelength

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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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相关实验视频

Updated: Jun 29, 2025

Scattering And Absorption of Light in Planetary Regoliths
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散射光谱模型用于物理学.

Sihao Cheng1, Rudy Morel2, Erwan Allys3

  • 1School of Natural Sciences, Institute for Advanced Study, Princeton, NJ 08540, USA.

PNAS nexus
|April 1, 2024
PubMed
概括
此摘要是机器生成的。

物理学家现在可以使用散射光谱模型来准确地统计复杂物理场的描述,即使数据有限. 这些模型为各种应用提供了强大的低维表示.

关键词:
吉布斯的能量是吉布斯的能量.减少模型的模型缩小模型.波段波段的波段波段的波段.

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In situ Grazing Incidence Small Angle X-ray Scattering on Roll-To-Roll Coating of Organic Solar Cells with Laboratory X-ray Instrumentation
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An Analog Macroscopic Technique for Studying Molecular Hydrodynamic Processes in Dense Gases and Liquids
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相关实验视频

Last Updated: Jun 29, 2025

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In situ Grazing Incidence Small Angle X-ray Scattering on Roll-To-Roll Coating of Organic Solar Cells with Laboratory X-ray Instrumentation
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An Analog Macroscopic Technique for Studying Molecular Hydrodynamic Processes in Dense Gases and Liquids
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科学领域:

  • 物理 物理学 物理
  • 统计力学 统计力学
  • 数据科学数据科学数据科学

背景情况:

  • 概率模型对于物理学家在诸如参数推理和场生成等任务中至关重要.
  • 建模高度非高斯场是具有挑战性的,特别是在有限的样本大小.

研究的目的:

  • 介绍静态场的散射光谱模型.
  • 证明它们在描述各种物理场的准确性和稳定性.
  • 为各种物理应用提供低维,结构化的表示.

主要方法:

  • 开发了基于散射系数共差的散射光谱模型.
  • 使用波纹分解与点向模量相结合.
  • 应用了减小尺寸的技术,利用旋转和缩放下场的规律性.

主要成果:

  • 散射光谱模型为广泛的物理领域提供准确和强大的统计描述.
  • 在各种多尺度物理领域上验证了模型.
  • 证明了标准统计的复制,包括空间时刻到第四顺序.

结论:

  • 散射光谱提供了一个强大的,低维的物理场的表现.
  • 这些通用模型适用于数据探索,分类,参数推断和组件分离.
  • 这些模型解决了用有限数据建模非高斯场的挑战.