Exam 43: Quarks, Leptons, and the Big Bang
Exam 1: Measurement37 Questions
Exam 2: Motion Along a Straight Line90 Questions
Exam 3: Vectors43 Questions
Exam 4: Motion in Two and Three Dimensions56 Questions
Exam 5: Force and Motion73 Questions
Exam 6: Force and Motion74 Questions
Exam 7: Kinetic Energy and Work73 Questions
Exam 8: Potential Energy and Conservation of Energy65 Questions
Exam 9: Center of Mass and Linear Momentum99 Questions
Exam 10: Rotation102 Questions
Exam 11: Rolling, Torque, and Angular Momentum67 Questions
Exam 12: Equilibrium and Elasticity57 Questions
Exam 13: Gravitation61 Questions
Exam 14: Fluids91 Questions
Exam 15: Oscillations80 Questions
Exam 16: Waves83 Questions
Exam 17: Waves72 Questions
Exam 18: Temperature, Heat, and the First Law of Thermodynamics96 Questions
Exam 19: The Kinetic Theory of Gases114 Questions
Exam 20: Entropy and the Second Law of Thermodynamics61 Questions
Exam 21: Coulombs Law52 Questions
Exam 22: Electric Fields55 Questions
Exam 23: Gauss Law44 Questions
Exam 24: Electric Potential55 Questions
Exam 25: Capacitance61 Questions
Exam 26: Current and Resistance55 Questions
Exam 27: Circuits75 Questions
Exam 28: Magnetic Fields53 Questions
Exam 29: Magnetic Fields Due to Currents49 Questions
Exam 30: Induction and Inductance90 Questions
Exam 31: Electromagnetic Oscillations and Alternating Current89 Questions
Exam 32: Maxwells Equations; Magnetism of Matter87 Questions
Exam 33: Electromagnetic Waves83 Questions
Exam 34: Images79 Questions
Exam 35: Interference 147 Questions
Exam 36: Diffraction77 Questions
Exam 37: Relativity69 Questions
Exam 38: Photons and Matter Waves59 Questions
Exam 39: More About Matter Waves45 Questions
Exam 40: All About Atoms79 Questions
Exam 41: Conduction of Electricity in Solids51 Questions
Exam 42: Energy From the Nucleus50 Questions
Exam 43: Quarks, Leptons, and the Big Bang59 Questions
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A neutron cannot decay into a neutrino and an antineutrino.This decay would violate baryon number conservation and which other conservation law?
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(Multiple Choice)
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Correct Answer:
E
The intensity of the microwave background radiation, a remnant of the big bang:
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Correct Answer:
E
A neutral lepton cannot decay into two neutrinos.Of the following conservation laws, which would be violated if it did?
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(Multiple Choice)
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Correct Answer:
D
Two baryons interact to produce pions only, the original baryons disappearing.One of the baryons must have been:
(Multiple Choice)
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Compared to the lifetimes of particles that decay via the weak interaction, the lifetimes of particles that decay via the strong interaction are:
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The interaction - + p K- +
+ violates the principle of conservation of:

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A baryon with strangeness -1 decays via the strong interaction into two particles, one of which is a baryon with strangeness 0.The other is:
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Messenger particles of the electromagnetic interaction are called:
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The velocities of distant objects in the universe indicate that the time elapsed since the big bang is about:
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Baryonic matter (protons and neutrons)comprises what fraction of the total energy of the universe?
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A certain process produces baryons that decay with a lifetime of 4 * 10-24 s.The decay is a result of:
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A proton cannot decay into a neutron, a positron, and an electron neutrino.Which of the following conservation laws would be violated if it did?
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