light water
简明释义
轻水
英英释义
Light water refers to ordinary water composed primarily of H2O molecules, as opposed to heavy water which contains a higher proportion of deuterium. | 轻水指的是主要由H2O分子组成的普通水,与重水相比,后者含有更高比例的氘。 |
例句
1.For this recipe, you should add light water instead of heavy broth to enhance the freshness.
这个食谱中,你应该加入轻水而不是浓重的高汤,以增强新鲜感。
2.In summer, I enjoy sipping light water with lemon for a refreshing drink.
夏天,我喜欢喝加柠檬的轻水,作为清爽的饮料。
3.I prefer to drink light water during my workouts because it hydrates me without feeling heavy.
我在锻炼时更喜欢喝轻水,因为它让我保持水分而不感到沉重。
4.The chef recommended using light water for the soup to keep the flavors balanced.
厨师建议使用轻水做汤,以保持味道的平衡。
5.My doctor advised me to consume more light water to improve my digestion.
我的医生建议我多喝轻水以改善消化。
作文
In the realm of science, particularly in nuclear physics, the term light water refers to ordinary water that is composed primarily of the isotopes hydrogen-1 and oxygen-16. This type of water is commonly found in nature and is essential for life as we know it. The significance of light water extends beyond its biological necessity; it plays a crucial role in various technological applications, especially in nuclear reactors. In these reactors, light water serves as both a coolant and a neutron moderator, helping to sustain the nuclear fission process while maintaining safe operating temperatures. The importance of light water in nuclear reactors cannot be overstated. It allows for the efficient generation of energy, which is vital for powering homes, industries, and even entire cities. Without light water, many of the advancements in nuclear technology would not have been possible. For instance, the use of light water reactors has become a standard in the industry, providing a reliable source of energy while minimizing the risk of accidents. Moreover, the study of light water has led to significant advancements in our understanding of chemical reactions and physical processes. Researchers have explored the properties of light water at various temperatures and pressures, revealing how it behaves under different conditions. This knowledge is not only fundamental to the field of nuclear physics but also impacts other scientific disciplines, including chemistry and environmental science. In contrast to light water, there exists another type known as heavy water, which contains a larger proportion of the isotope deuterium. Heavy water has its own unique properties and applications, particularly in certain types of nuclear reactors. However, the prevalence of light water in the majority of reactors highlights its practicality and efficiency. The environmental implications of using light water are also worth noting. As a natural resource, light water is abundant and readily available, making it an ideal choice for energy production. Nevertheless, the extraction and use of light water must be managed responsibly to prevent depletion of this critical resource. In conclusion, the term light water encompasses much more than just a simple compound; it represents a cornerstone of modern energy production and scientific research. Understanding the properties and applications of light water can lead to more sustainable practices in energy generation and a deeper appreciation of the natural world. As we continue to explore the potential of light water in various fields, it is essential to recognize its significance and ensure its responsible use for future generations.
在科学领域,特别是在核物理学中,术语轻水指的是主要由氢-1和氧-16同位素组成的普通水。这种水在自然界中普遍存在,并且对我们所知的生命至关重要。轻水的重要性超出了其生物学必要性;它在各种技术应用中发挥着关键作用,尤其是在核反应堆中。在这些反应堆中,轻水既充当冷却剂,又充当中子慢化剂,帮助维持核裂变过程,同时保持安全的操作温度。在核反应堆中,轻水的重要性不容小觑。它使能量的高效生成成为可能,这对为家庭、工业甚至整个城市提供电力至关重要。没有轻水,许多核技术的进步将无法实现。例如,轻水反应堆的使用已成为行业标准,提供可靠的能源来源,同时最大限度地降低事故风险。此外,对轻水的研究还促进了我们对化学反应和物理过程的理解。研究人员探讨了不同温度和压力下轻水的性质,揭示了其在不同条件下的行为。这些知识不仅是核物理学领域的基础,还影响其他科学学科,包括化学和环境科学。与轻水相对的是另一种称为重水的类型,它含有较大比例的氘同位素。重水具有自己独特的性质和应用,特别是在某些类型的核反应堆中。然而,轻水在大多数反应堆中的普遍存在突显了其实用性和效率。使用轻水的环境影响也值得注意。作为一种自然资源,轻水丰富且易于获得,使其成为能源生产的理想选择。然而,提取和使用轻水必须负责任地管理,以防止这一关键资源的枯竭。总之,术语轻水不仅仅是一个简单的化合物;它代表了现代能源生产和科学研究的基石。理解轻水的性质和应用可以引导更可持续的能源生产实践,并加深对自然世界的欣赏。在我们继续探索轻水在各个领域的潜力时,必须认识到其重要性,并确保其对未来几代人的负责任使用。