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Related Concept Videos

Aging01:26

Aging

54
Aging is a complex biological phenomenon influenced by various processes that affect cellular and systemic functions. Several prominent theories attempt to explain its mechanisms, highlighting cellular limitations, oxidative damage, and hormonal changes as central factors in aging.
Cellular Clock Theory
The cellular clock theory posits that the human lifespan is closely tied to the finite capacity of cells to divide, a phenomenon governed by telomeres, which are protective caps at the ends of...
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Radiation: Applications01:17

Radiation: Applications

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The average temperature of Earth is the subject of much current discussion. Earth is in radiative contact with both the Sun and dark space; it receives almost all its energy from the radiation of the Sun and reflects some of it into outer space. Dark space is very cold, about 3 K, so Earth radiates energy into it. For instance, heat transfer occurs from soil and grasses, the rate of which can be so rapid that frost can occur on clear summer evenings, even in warm latitudes.
The average...
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Mechanism of heat transfer01:19

Mechanism of heat transfer

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Understanding heat transfer mechanisms is essential for understanding how our bodies maintain balance in different environmental conditions. When the environment is thermoneutral, the body is in a state of balance, neither using nor releasing energy to maintain its core temperature. However, when the environment is not thermoneutral, the body employs four heat transfer mechanisms to maintain homeostasis: conduction, convection, evaporation, and radiation. These mechanisms facilitate heat...
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Factors Affecting Body Temperature

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As a nurse, it is vital to understand the factors affecting body temperature to monitor variations and effectively evaluate deviations from regular.
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Body Temperature01:25

Body Temperature

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The body's temperature, measured in degrees, is determined by the balance between heat production and dissipation to the surrounding environment. For instance, if exercising vigorously, the body will produce more heat, causing sweat and dissipating that heat. Despite extreme environmental conditions and physical exertion, the human temperature-control system maintains a constant core body temperature (the temperature of deep tissues, which are the tissues located beneath the skin and other...
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Global Climate Change01:50

Global Climate Change

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Throughout its ~4.5 billion year history, the Earth has experienced periods of warming and cooling. However, the current drastic increase in global temperatures is well outside of the Earth’s cyclic norms, and evidence for human-caused global climate change is compelling. Paleoclimatology, the study of ancient climate conditions, provides ample evidence for human-caused global climate change by comparing recent conditions with those in the past.
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Related Experiment Video

Updated: Jul 7, 2025

Construction of a Compact Low-Cost Radiation Shield for Air-Temperature Sensors in Ecological Field Studies
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Construction of a Compact Low-Cost Radiation Shield for Air-Temperature Sensors in Ecological Field Studies

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Anti-Environmental Aging Passive Daytime Radiative Cooling.

Jianing Song1, Qingchen Shen2, Huijuan Shao1

  • 1Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu, 610054, China.

Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
|December 27, 2023
PubMed
Summary

Passive daytime radiative cooling (PDRC) materials reflect sunlight and emit heat, but degrade over time. This review details PDRC anti-aging strategies to enhance durability and commercial viability.

Keywords:
anti-contaminationanti-environmental agingpassive daytime radiative coolingphotothermal durabilitysurface wettability

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Area of Science:

  • Materials Science
  • Sustainable Technology
  • Thermodynamics

Background:

  • Passive daytime radiative cooling (PDRC) offers a sustainable solution for global warming and extreme weather.
  • PDRC functions by reflecting sunlight and emitting thermal radiation through the atmospheric transparency window.
  • Environmental degradation, such as UV exposure and contamination, compromises PDRC performance.

Purpose of the Study:

  • To critically review advancements in anti-environmental aging PDRC materials.
  • To explore strategies for enhancing the durability and commercial application of PDRC.
  • To provide insights into overcoming challenges for PDRC commercialization.

Main Methods:

  • Review of optical mechanisms and optimization principles of radiative cooling.
  • Analysis of environmental aging conditions affecting PDRC (UV, thermal, contamination, corrosion).
  • Classification and review of anti-aging PDRC material designs, fabrication techniques, structures, and performances.

Main Results:

  • Significant progress has been made in understanding PDRC failure mechanisms and developing anti-aging strategies.
  • Various design strategies, fabrication techniques, and material structures have been developed to improve environmental durability.
  • Performance data for anti-aging PDRC materials are reviewed and categorized.

Conclusions:

  • Addressing environmental aging is crucial for the widespread commercial adoption of PDRC technology.
  • Further research is needed to overcome remaining challenges in PDRC durability and scalability.
  • This review provides a comprehensive overview to guide future development and commercialization efforts.