COLLEGE PHYSICS
COLLEGE PHYSICS
2nd Edition
ISBN: 9781464196393
Author: Freedman
Publisher: MAC HIGHER
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Chapter 28, Problem 1QAP
To determine

(a)

The definition of term baryon.

Expert Solution
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Explanation of Solution

A baryon is defined as a composite subatomic particle which is made up of three quarks. Since protons and neutrons are the most stable baryons, so most building blocks of matter are baryons.

To determine

(b)

The definition of term meson.

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Explanation of Solution

Mesons are defined as an intermediate mass particle which consists of a pair of quark and antiquark. Three combinations of quarks are termed as baryons. Mesons are bosons, and fermions are the baryons. There was a recent claim that particles with five quarks (pent quarks) were observed, but further experiments did not support it.

To determine

(c)

The definition of term quark.

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Explanation of Solution

Quark is a type of elementary particle which is a fundamental constituent of matter. These are combined to form a composite particle known as hadrons. The properties of quark are spin, mass, color charge, and electric charge. Quark is of 6 types termed as flavors. They are up, charm, strange, down, bottom and top quarks. The two quarks, up and down, have lowest masses as well as they are most stable amongst all. Each quark flavor has its antiparticle, termed as antiquark. So, these can be replaced by their corresponding antiquarks.

To determine

(d)

The definition of term lepton.

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Explanation of Solution

A lepton is defined as an elementary particle. They do not involve in strong interactions, but these have a half-integer spin equal to 12. There are two main classes of lepton:

  • Charged leptons.
  • Neutral leptons or neutrinos.
  • Charged leptons when combined with other particles, form different composite particles like atoms and positronium.

    To determine

    (e)

    The definition of term antiparticle.

    Expert Solution
    Check Mark

    Explanation of Solution

    In particle physics, there is an antiparticle for each particle type with the same mass but opposite physical charges like electric charge. Consider an electron. The electron antiparticle is an anti-electron which is also termed as positron. Since the electric charge on electron is negative, so the charge on positron will be positive. Thus, it is produced naturally in various types radioactive decays.

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    Students have asked these similar questions
    •16 Does the proposed reaction p+p - A° +E+ +e- conserve (a) charge, (b) baryon number, (c) electron lepton num- ber, (d) spin angular momentum, (e) strangeness, and (f) muon lepton number?
    •12 The Aj particle and its products decay according to the scheme Aj - p° + n*, p° → T* + 7, et →et + v + ī, π-μ+ν u→e- + v + v. (a) What are the final stable decay products? From the evidence, (b) is the Aj particle a fermion or a boson and (c) is it a meson or a baryon? (d) What is its baryon number?
    •17 Does the proposed decay process E - T +n+ K +p conserve (a) charge, (b) baryon number, (c) spin angular momen- tum, and (d) strangeness?
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