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相关概念视频

Linearization and Approximation01:26

Linearization and Approximation

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Linearization is a mathematical technique used to approximate complex, nonlinear functions with simpler linear models in the vicinity of a chosen reference point. The method is based on the idea that, although a function may be difficult to evaluate exactly, its behavior near a specific input value can often be closely approximated by the tangent line at that point. This approach is particularly useful when small deviations from a known value are involved.Consider the square root function, for...
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Linear Equations01:27

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Linear equations form the foundation of many algebraic and real-world applications, characterized by their simplicity and utility. A linear equation is an algebraic statement in which each term is either a constant or a product of a constant and a single variable. These equations represent straight lines when plotted on a Cartesian coordinate plane, reflecting a constant rate of change between two quantities.A typical linear equation in one variable has the form: ax + b = c, where a, b, and c...
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Linear Circuits01:17

Linear Circuits

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A linear circuit is characterized by its output having a direct proportionality to its input, adhering to the linearity property, which encompasses the principles of homogeneity (scaling) and additivity. Homogeneity dictates that when the input, also referred to as the excitation, is multiplied by a constant factor, the output, known as the response, is correspondingly scaled by the same constant factor. For instance, if the current is multiplied by a constant 'k,' the voltage likewise...
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Linear Momentum00:55

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The term momentum is used in various ways in everyday language, most of which are consistent with the precise scientific definition. Generally, momentum implies a tendency to continue on course—to move in the same direction; we tend to speak of sports teams or politicians gaining and maintaining the momentum to win.  Momentum is also associated with great mass and speed and is often considered when talking about collisions. For example, when rugby players collide and fall to the...
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Positive regulators allow a cell to advance through cell cycle checkpoints. Negative regulators have an equally important role as they terminate a cell’s progression through the cell cycle—or pause it—until the cell meets specific criteria.
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Work is done on an object when energy is transferred to the object. In other words, work is done when a force acts on a body that undergoes a displacement from one position to another. By definition, the work done by a force is the integral of the force with respect to the displacement along its path. Forces can vary as a function of position, and displacements can occur along various paths between two points. The magnitude of a force multiplied by the cosine of the angle that the force makes...
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大负线性可压缩度 (InH(BDC) 2

Qingxin Zeng1, Kai Wang1, Bo Zou1

  • 1State Key Laboratory of Superhard Materials, College of Physics, Jilin University , Changchun 130012, China.

Journal of the American Chemical Society
|October 26, 2017
PubMed
概括

研究人员发现了一种新材料,二-1,3-二碳酸盐 (InHBDC) 2),具有极高的负线性压缩性 (NLC). 这一发现为先进的材料科学应用提供了更安全,更具成本效益的替代方案.

科学领域:

  • 材料科学
  • 固态化学
  • 晶体学

背景情况:

  • 负线性压缩性 (NLC) 描述了材料在均压缩下向一个方向膨胀,这是材料科学中所希望的现象.
  • 现有的NLC材料通常具有有限的压缩性值 (通常<-20 TPa-1),并且可能涉及危险元件.
  • 实现大型NLC对于开发具有独特机械性能的先进材料至关重要.

研究的目的:

  • 研究和描述一种具有异常大的负线性可压缩性的新材料.
  • 探索研究材料中极端NLC的结构机制.
  • 与现有选择相比,评估新NLC材料的安全性和成本效益.

主要方法:

  • 进行了高压X射线衍射实验,以分析压力下的材料的结构反应.
  • 精确测量材料的压缩性以量化其NLC值.
  • 分析了晶体结构和框架动态,以了解NLC的机制.

主要成果:

  • 像β-石英的InH(BDC) 2材料表现出前所未有的极端NLC为-62.4 TPa-1.
  • 观察到的NLC归因于材料结构中的框架链机制.
  • 含有Au+/Ag+或CN−的NLC材料的InH(BDC) 2是一种更安全,更经济的替代品.

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结论:

  • 灵活的框架,特别是那些具有负热膨胀特性的框架,是大型NLC的有希望的候选.
  • 使用刚性线性联体和灵活角度的β-石类和相关框架预计会产生显著的NLC.
  • 发现InH(BDC) 2为设计和合成具有可调压力的先进材料开辟了新的途径.