Physics · Ch 13 — Nuclei
Summary
Summary
-
Nuclear composition: A nucleus is made of protons and neutrons (nucleons). Atomic number = number of protons; mass number = total nucleons. Isotopes have same , different ; isobars have same , different .
-
Nuclear size and density: Nuclear radius , where . Nuclear density is roughly constant (), independent of .
-
Mass defect and binding energy: Mass defect . Binding energy . Higher binding energy per nucleon () means greater stability; iron () has the maximum .
-
Radioactivity: Spontaneous decay of unstable nuclei. Three common types:
- -decay: emits nucleus; decreases by 4, by 2.
- -decay: ; increases by 1, unchanged.
- -decay: emits high-energy photon; and unchanged.
-
Decay law: , where is decay constant. Half-life ; mean life .
-
Nuclear fission: Heavy nucleus (e.g., ) splits into two lighter nuclei, releasing energy ( per fission) and neutrons. Chain reaction possible if at least one neutron per fission causes another fission.
-
Nuclear fusion: Light nuclei combine to form a heavier nucleus, releasing energy (e.g., ). Requires extremely high temperature () to overcome Coulomb repulsion.
-
Energy equivalence: . This conversion is essential for calculating binding energies and reaction -values.
-
Nucleus vs. atom: the nuclear radius is smaller than the atomic radius by a factor of about , yet the nucleus holds more than of the atom's total mass — essentially all of an atom's mass and positive charge is concentrated in this tiny central volume.
-
Proton and neutron masses: ; a neutron is electrically neutral, and its mass is almost the same as a proton's ( is only about larger than ). …