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相关概念视频

Constant Volume Calorimetry02:41

Constant Volume Calorimetry

27.0K
Calorimeters are useful to determine the heat released or absorbed by a chemical reaction. Coffee cup calorimeters are designed to operate at constant (atmospheric) pressure and are convenient to measure heat flow (or enthalpy change) accompanying processes that occur in solution at constant pressure. A different type of calorimeter that operates at constant volume, colloquially known as a bomb calorimeter, is used to measure the energy produced by reactions that yield large amounts of heat and...
27.0K
Energy Balance01:19

Energy Balance

343
The human body gets energy from the three macronutrients: carbohydrates, proteins, and fats. Energy is released when the chemical bonds in the organic compounds present in the food are broken down. The energy content of food is measured in kilocalories (kcal), defined as the amount of heat required to raise the temperature of one kilogram of water by one degree Celsius. This value is determined by measuring the temperature change of the water surrounding a calorimeter after the complete...
343
Calorimetry01:19

Calorimetry

3.0K
When objects at different temperatures are placed in contact with each other but isolated from everything else, they attain thermal equilibrium. A container that prevents heat transfer in or out is called a calorimeter, and the use of a calorimeter to make measurements is called calorimetry. Generally, these measurements involve heat or specific heat capacity. The term "calorimetry problem" is used for any problem where the specified objects are thermally isolated from their...
3.0K
Quantifying Heat02:46

Quantifying Heat

54.3K
Thermal Energy Microscopically, thermal energy is the kinetic energy associated with the random motion of atoms and molecules. Temperature is a quantitative measure of “hot” or “cold”, which depends on the amount of thermal energy. When the atoms and molecules in an object are moving or vibrating quickly, they have a higher average kinetic energy (KE) (or higher thermal energy), and the object is perceived as “hot”, or it is described as being at a...
54.3K
Constant Pressure Calorimetry03:02

Constant Pressure Calorimetry

85.0K
Calorimetry is a technique used to measure the amount of heat involved in a chemical or physical process or to measure the heat transferred to or from a substance. The heat is exchanged with a calibrated and insulated device called the calorimeter. Calorimetry experiments are based on the assumption that there is no heat exchange between the insulated calorimeter and the external environment. The well-insulated calorimeters prevent the transfer of heat between the calorimeter and its external...
85.0K
Glassware Calibration01:11

Glassware Calibration

216
Accurate calibration of glassware, such as volumetric flasks, pipettes, and burettes, is essential to ensure accurate measurements in the analytical laboratory. Calibration helps maintain consistency across measurements and prevents errors arising from inaccurate volumes.
Volumetric flasks: Volumetric flasks are designed to prepare aqueous solutions of precise volumes accurately with a calibration line on the neck. To calibrate a volumetric flask, it is important to fill it with distilled...
216

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相关实验视频

Updated: Jun 18, 2025

Using a Combination of Indirect Calorimetry, Infrared Thermography, and Blood Glucose Levels to Measure Brown Adipose Tissue Thermogenesis in Humans
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Using a Combination of Indirect Calorimetry, Infrared Thermography, and Blood Glucose Levels to Measure Brown Adipose Tissue Thermogenesis in Humans

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测量热量设备

Suxin Qian1, Ichiro Takeuchi2,3

  • 1Department of Refrigeration and Cryogenic Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi, People's Republic of China.

Science (New York, N.Y.)
|August 1, 2024
PubMed
概括
此摘要是机器生成的。

新兴的固态冷却技术为减少全球碳排放提供了有前途的途径. 这些创新方法为冷却应用提供了可持续的替代方案.

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Using a Combination of Indirect Calorimetry, Infrared Thermography, and Blood Glucose Levels to Measure Brown Adipose Tissue Thermogenesis in Humans

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科学领域:

  • 材料科学
  • 热力学
  • 环境科学

背景情况:

  • 目前的冷却系统,如蒸汽压缩制冷,对温室气体排放有很大影响.
  • 越来越多的制冷和空调需求加剧了全球变暖的担忧.
  • 需要可持续和节能的冷却解决方案.

研究的目的:

  • 探索新兴固态冷却技术的潜力.
  • 评估它们在减少总体碳排放方面的有效性.
  • 突出它们在可持续气候变化缓解战略中的作用.

主要方法:

  • 对固态冷却材料和设备的最新进展进行了回顾.
  • 对固态冷却机制的热力学原理的分析.
  • 与传统技术相比,对能源效率和环境影响的比较评估.

主要成果:

  • 固态冷却显示了节能的巨大潜力.
  • 与传统冷却方法相比,这些技术的碳足迹更低.
  • 材料科学的进步正在推动固态冷却器的性能.

结论:

  • 固态冷却技术是传统冷却的可行和可持续的替代方案.
  • 它们的广泛采用可以大大减少全球碳排放.
  • 进一步的研究和开发对于优化性能和商业化至关重要.