In this course we have seen that baryons have inertial and gravitational mass, intrinsic angular momentum, and other internal properties that have been given names like baryon number, strangeness, charm, etc. The Standard Model's explanation for these properties of baryons is that
A) the baryons are states of something more elementary that can exist in multiple quantum states.
B) the leptons are states of something more elementary that can exist in multiple quantum states.
C) photons are states of something more elementary that can exist in multiple quantum states.
D) according to the Heisenberg Uncertainty Principle quantum numbers are indeterminate.
E) quarks are states of something more elementary that can exist in multiple quantum states.
Correct Answer:
Verified
Q1: Which of the following reactions violates conservation
Q2: According to the Hubble law, where H
Q4: Which of the following decays violates conservation
Q5: If a K0 meson at rest decays
Q6: The minimum energy needed to produce a
Q7: Which of the following particle reactions cannot
Q8: A proton and an antiproton each with
Q9: Particles composed of quarks are
A) photons.
B) leptons.
C)
Q10: The strong nuclear interaction has a range
Q11: The law of conservation of baryon number
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