atomics
简明释义
n. [物] 原子学
英英释义
单词用法
核原子学 | |
量子原子学 | |
原子结构 | |
原子能 | |
原子理论 |
同义词
核 | 核能是一种强大的电力来源。 | ||
原子 | 原子结构是理解化学的基础。 | ||
裂变 | 裂变反应释放了大量能量。 | ||
聚变 | 聚变是太阳发光发热的过程。 |
反义词
宏观 | 在宏观经济学中,我们研究整体经济。 | ||
质量 | 物体的质量是其物质的度量。 |
例句
1.The General Atomics program, if successful, could provide a partial solution to one of the biggest problems associated with nuclear energy: figuring out what to do with highly radioactive waste.
如果通用原子公司的这个项目能够成功,它就能够提供能部分解决核能问题的方案,例如如何处理大量的放射性核燃料的问题。
2.The General Atomics program, if successful, could provide a partial solution to one of the biggest problems associated with nuclear energy: figuring out what to do with highly radioactive waste.
如果通用原子公司的这个项目能够成功,它就能够提供能部分解决核能问题的方案,例如如何处理大量的放射性核燃料的问题。
3.The Institute of Radium of National Academy of Peiping was the first institute in the field of radioactivity in China. In 1948, it was reorganized into the first institute of Atomics in China.
北平研究院镭学研究所是中国第一个研究放射性物质的研究机构,1948年被改组为中国第一个原子科学研究所。
4.General Atomics has built more than five dozen small reactors over the years, mostly for research purposes, including two gas-cooled units.
通用原子公司已经在数十年内兴建了60座小型核反应堆,其中大多数处于研究目的,包括两座气冷堆。
5.When abrasive grains impacted on the work piece surface, the top layer atomics are removed, plastic deformation appears at the same time.
纳米级的磨粒冲击到工件表面,在以原子级去除的同时伴随着塑性变形的发生。
6.Better known for its work in nuclear physics, General Atomics stole a march on the big firms by producing the Predator drone.
虽然通用原子能公司在核物理方面名气更响一些,但该公司已经比那些宇航巨头抢先一步生产出了“捕食者”无人机。
7.General Atomics of San Diego has funded the pre-conceptual design, which is underway and scheduled for completion in August.
通用原子能圣迭戈已经资助了预先设计的概念,这是正在进行中,预计于八月完成。
8.The Reaper, made by General Atomics, can cost $10m or more, depending on its bells and whistles.
死神“无人机(由通用原子公司制造,造价可能高达1000万美元或更多)依赖于其豪华而花哨的最新技术设施。
9.But they were looking over their shoulder at an insurgent: Neal Blue, CEO of General Atomics.
但是,当他们侧目环视周围时,出现在他们眼前的是一个“反叛者”,来自通用原子公司的首席执行官尼尔·布鲁。
10.The study of atomics has led to significant advancements in energy production.
对原子学的研究促进了能源生产的重大进展。
11.Many universities now offer courses in atomics to prepare students for careers in nuclear science.
许多大学现在提供原子学课程,以为学生准备核科学的职业。
12.The principles of atomics are essential for understanding how nuclear reactors operate.
理解核反应堆如何运作,必须掌握原子学的原理。
13.Research in atomics can help us develop safer nuclear weapons.
在原子学方面的研究可以帮助我们开发更安全的核武器。
14.The field of atomics encompasses both theoretical and practical aspects of nuclear physics.
在原子学领域,理论和实践的核物理学方面都涵盖在内。
作文
In the realm of science, few fields have had as profound an impact on our understanding of the universe as that of atomics (原子学). The study of atoms, their structure, and their interactions has not only revolutionized physics and chemistry but has also paved the way for numerous technological advancements. From the development of nuclear energy to medical imaging techniques, the implications of atomics are vast and far-reaching. The foundation of atomics lies in the understanding of the atom itself. An atom is the smallest unit of matter that retains the properties of an element. Composed of protons, neutrons, and electrons, atoms combine in various ways to form molecules, which are the building blocks of everything around us. The exploration of atomic theory began in ancient Greece, but it was not until the early 20th century that scientists like Ernest Rutherford and Niels Bohr made significant contributions to our understanding of atomic structure. One of the most notable applications of atomics is in the field of nuclear energy. The process of nuclear fission, where the nucleus of an atom splits into smaller parts, releases a tremendous amount of energy. This discovery led to the development of nuclear power plants, which provide a substantial portion of the world’s energy supply. However, the use of nuclear energy is not without its challenges, including concerns about safety, waste management, and the potential for nuclear proliferation. Moreover, atomics plays a crucial role in medicine. Techniques such as positron emission tomography (PET) scans and radiation therapy for cancer treatment are rooted in the principles of atomic interactions. By understanding how atoms behave, medical professionals can develop targeted therapies that minimize damage to healthy tissues while effectively treating diseases. The advancements in medical technology driven by atomics have significantly improved patient outcomes and revolutionized healthcare. In addition to energy and medicine, atomics has also influenced materials science. The ability to manipulate atoms at the nanoscale has led to the creation of new materials with unique properties. Nanotechnology, which involves the study and application of materials at the atomic level, has opened up possibilities for innovations in electronics, manufacturing, and even environmental solutions. For instance, nanomaterials are being developed for use in water purification systems, making clean drinking water more accessible to communities worldwide. Despite the benefits brought about by atomics, there are ethical considerations that must be addressed. The potential misuse of atomic technology, particularly in the context of weapons of mass destruction, poses a significant threat to global security. As we continue to explore the capabilities of atomics, it is imperative that we establish frameworks for responsible use and international cooperation to prevent the escalation of conflicts. In conclusion, the field of atomics (原子学) is a cornerstone of modern science and technology. Its implications stretch across various domains, from energy production and medical advancements to materials science and ethical considerations. As we delve deeper into the atomic world, it is essential to balance innovation with responsibility, ensuring that the knowledge we gain serves to benefit humanity as a whole. The future of atomics holds great promise, and it is up to us to harness its potential wisely.
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