相关实验视频
Updated: Jul 12, 2026

10:42
Preparing an Isotopically Pure 229Th Ion Beam for Studies of 229mTh
Published on: May 3, 2019
概括
核科学的进步使得外来新同位素的合成成为可能. 这些同位素揭示了新的衰变模式,并增强了对基本核力和弱相互作用的研究.
科学领域:
- 核物理 核物理 核物理
- 粒子物理学 粒子物理学
- 放射性衰变是一种放射性衰变.
背景情况:
- 现代核加速器和实验方法允许合成新型同位素.
- 研究具有极端质子中子比率的同位素可以了解核结构和基本力.
研究的目的:
- 在合成的同位素中探索新的现象和衰变模式.
- 用核作为实验室进行基本力研究.
- 为了对弱力特性进行精确的测试.
主要方法:
- 使用先进的核加速器合成新的同位素.
- 核衰变模式的实验观测和表征.
- 核反应和性能的分析.
主要成果:
- 观测新的衰变模式,包括质子放射性和β延迟的三子,两质子,两中子和三中子衰变.
- 在放射性衰变中检测碳-14排放.
- 实现对弱力特性进行精确测试.
结论:
- 外来同位素的合成扩大了我们对核现象的理解.
- 核衰变研究提供了关于基本力的关键数据.
- 实验核物理继续推动科学发现的边界.
相关概念视频
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To hold positively charged protons together in the...
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The most common types of radioactivity are α decay, β decay, γ decay, neutron emission, and electron capture.
Alpha (α) decay is the emission of an α particle from the nucleus. For example, polonium-210 undergoes α decay:
Alpha (α) decay is the emission of an α particle from the nucleus. For example, polonium-210 undergoes α decay:
Radioactivity and Nuclear Equations
Nuclear chemistry is the study of reactions that involve changes in nuclear structure. The nucleus of an atom is composed of protons and, except for hydrogen, neutrons. The number of protons in the nucleus is called the atomic number (Z) of the element, and the sum of the number of protons and the number of neutrons is the mass number (A). Atoms with the same atomic number but different mass numbers are isotopes of the same element.
A nuclide of an element has a specific number of protons and...
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Nuclear Transmutation
Nuclear transmutation is the conversion of one nuclide into another. It can occur by the radioactive decay of a nucleus, or the reaction of a nucleus with another particle. The first manmade nucleus was produced in Ernest Rutherford’s laboratory in 1919 by a transmutation reaction, the bombardment of one type of nuclei with other nuclei or with neutrons. Rutherford bombarded nitrogen-14 atoms with high-speed α particles from a natural radioactive isotope of radium and observed protons being...
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Near absolute zero temperatures, in the presence of a magnetic field, the majority of nuclei prefer the lower energy spin-up state to the higher energy spin-down state. As temperatures increase, the energy from thermal collisions distributes the spins more equally between the two states. The Boltzmann distribution equation gives the ratio of the number of spins predicted in the spin −½ (N−) and spin +½ (N+) states.

