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  1. Nuclear physics is the field of physics that studies atomic nuclei and their constituents and interactions, in addition to the study of other forms of nuclear matter. Nuclear physics should not be confused with atomic physics, which studies the atom as a whole, including its electrons.

  2. Learn about the fundamental forces and particles, as well as composites, in this graduate-level course. Explore the experimental foundations and theoretical tools of nuclear and particle physics, including the Standard Model.

  3. Physics - Nuclear, Particles, Forces: This branch of physics deals with the structure of the atomic nucleus and the radiation from unstable nuclei. About 10,000 times smaller than the atom, the constituent particles of the nucleus, protons and neutrons, attract one another so strongly by the nuclear forces that nuclear energies are ...

  4. The nucleus lies at the center of an atom, and consists of protons and neutrons. A deep understanding of the nucleus leads to numerous valuable technologies, including devices to date ancient rocks, map the galactic arms of the Milky Way, and generate electrical power. 10.1: Prelude to Nuclear Physics.

  5. 3. Mai 2024 · Nuclear physics is the study of the protons and neutrons at the centre of an atom and the interactions that hold them together in a space just a few femtometres (10-15 metres) across. Example...

  6. home.cern › tags › nuclear-physicsnuclear physics | CERN

    Find out the latest discoveries and developments in nuclear physics research at CERN, the European Organization for Nuclear Research. Learn about the ISOLDE, n_TOF and other facilities, experiments and conferences on nuclear physics topics.

  7. Learn the basics of nuclear physics from MIT professor and lecturer John D. Barrow. This web page is a video lecture series on nuclear physics topics, such as binding energies, stability, nuclear force, shell model, gamma decay, fission and fusion.