
Whilst the electrostatic force is a repulsive force in the nucleus, the strong nuclear force holds the nucleus together

The strong nuclear force is repulsive before a separation of ~ 0.5 fm and attractive up till ~ 3.0 fm

Feynman diagram of the interaction between an up and down quark. The gluon is the exchange particle between them.


Feynman diagram showing beta minus decay. The W– boson is the exchange particle


Feynman diagram showing beta plus decay. The W+ boson is the exchange particle


Feynman diagrams for electron capture and an electron-proton collision. These are equal except for the sign of the W boson

Feynman diagram of electromagnetic repulsion between two electrons shown by the exchange of a virtual photon
Exchange particles are virtual particles/bosons that mediate/carry/transmit the a fundamental force between interacting particles

Both skateboarders can create repulsion or attraction by throwing a ball or boomerang between them. The ball and boomerang represent exchange particles.
Table of Exchange Particles
You will be expected to remember which exchange particle mediates which fundamental interaction for your exam. This is particularly important when drawing Feynman diagrams, as the correct exchange particle will be expected to be on them.

The fundamental interactions in order of strength
转载自savemyexams
以上就是关于【IB DP Physics: HL复习笔记7.3.5 Fundamental Forces】的解答,如需了解学校/赛事/课程动态,可至翰林教育官网获取更多信息。
往期文章阅读推荐:
生物竞赛金牌教练的实战书单!生物学/生物化学/病理学...电子版免费领!
哈佛商学院2026暑期书单曝光!十余位教授私藏书单,本本是“商科天花板”

© 2026. All Rights Reserved. 沪ICP备2023009024号-1