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相关概念视频

Statements of the Second Law of Thermodynamics01:15

Statements of the Second Law of Thermodynamics

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The second law of thermodynamics can be stated in several different ways, and all of them can be shown to imply the others. The Clausius’ statement of the second law of thermodynamics is based on the irreversibility of spontaneous heat flow. It states that heat will not flow from the colder body to the hotter body unless some other process is involved. Additionally, as per the Kelvin’s statement, it is impossible to convert the heat from a single source into work without any other...
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Second Law of Thermodynamics02:49

Second Law of Thermodynamics

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In the quest to identify a property that may reliably predict the spontaneity of a process, a promising candidate has been identified: entropy. Processes that involve an increase in entropy of the system (ΔS > 0) are very often spontaneous; however, examples to the contrary are plentiful. By expanding consideration of entropy changes to include the surroundings, a significant conclusion regarding the relation between this property and spontaneity may be reached. In thermodynamic models, the...
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Second Law of Thermodynamics00:53

Second Law of Thermodynamics

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The Second Law of Thermodynamics states that entropy, or the amount of disorder in a system, increases each time energy is transferred or transformed. Each energy transfer results in a certain amount of energy that is lost—usually in the form of heat—that increases the disorder of the surroundings. This can also be demonstrated in a classic food web. Herbivores harvest chemical energy from plants and release heat and carbon dioxide into the environment. Carnivores harvest the...
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Heat Capacities of an Ideal Gas II01:23

Heat Capacities of an Ideal Gas II

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For a system that undergoes a thermodynamic process at a constant volume condition, the heat absorbed is used only to increase the system's internal energy and not for doing any kind of work. While for a system undergoing a thermodynamic process under a constant pressure condition, the amount of heat absorbed is used not only for increasing the internal energy (as a function of temperature) but also for doing some work. The molar heat capacity is the amount of heat required to increase the...
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Enthalpy02:59

Enthalpy

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Chemists ordinarily use a property known as enthalpy (H) to describe the thermodynamics of chemical and physical processes. Enthalpy is defined as the sum of a system’s internal energy (E) and the mathematical product of its pressure (P) and volume (V):
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The Second Law of Thermodynamics01:14

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In the quest to identify a property that may reliably predict the spontaneity of a process, a promising candidate has been identified: entropy. Scientists refer to the measure of randomness or disorder within a system as entropy. High entropy means high disorder and low energy. To better understand entropy, think of a student’s bedroom. If no energy or work were put into it, the room would quickly become messy. It would exist in a very disordered state, one of high entropy. Energy must be...
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相关实验视频

Updated: Mar 15, 2026

Characterization of Thermal Transport in One-dimensional Solid Materials
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Characterization of Thermal Transport in One-dimensional Solid Materials

Published on: January 26, 2014

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霍金热性的双复制根

John Joseph M Carrasco1, Yaxi Chen1

  • 1Northwestern University, Northwestern University, Amplitudes and Insights Group, Department of Physics and Astronomy, Evanston, Illinois 60208, USA and Center for Interdisciplinary Exploration and Research in Astrophysics (CIERA), 1800 Sherman Ave, Evanston, Illinois 60201, USA.

Physical review letters
|March 13, 2026
PubMed
概括

来自塌的的霍金辐射是热的颜色电荷,而不是能量. 这种二元性源于非阿贝尔尺度理论,它将重力连接起来.

科学领域:

  • 理论物理 理论物理
  • 量子引力就是量子引力.
  • 高能物理 高能物理

背景情况:

  • 霍金辐射描述了来自黑洞的粒子辐射.
  • 双复制处方将重力与测量理论联系起来.
  • 零外崩为霍金辐射研究提供了一个简化的模型.

研究的目的:

  • 从一个崩的零外中得出霍金辐射光谱.
  • 在测量理论的背景下分析辐射的热性质.
  • 探索引力理论和测量理论描述之间的二元性.

主要方法:

  • 利用双重复制方法将尺度理论与重力联系起来.
  • 分析过程的非阿贝尔式-米尔斯理论.
  • 考虑到大N_c极限中的SU(N_c) 尺度理论.
  • 使用随机矩阵理论 (维格纳半圆) 建模色相空间密度.

主要成果:

  • 霍金辐射光谱被证明是热的颜色电荷固有值 (λ),而不是能量.
  • 差分光谱 (dN/dλ) 是一个普朗克式因子和色相空间密度的乘积.
  • 在重力中的表面能量热性被证明是双重的,在非阿贝尔尺度理论中的电荷热性.

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Pool-Boiling Heat-Transfer Enhancement on Cylindrical Surfaces with Hybrid Wettable Patterns
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Pool-Boiling Heat-Transfer Enhancement on Cylindrical Surfaces with Hybrid Wettable Patterns

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结论:

  • 这项研究揭示了重力和尺度理论中的热性质之间的基本联系.
  • 非阿贝尔式米尔斯理论为霍金辐射的热谱提供了直接的解释.
  • 这项工作加深了对双重副本及其对量子引力的影响的理解.