Exam 44: Quarks, Leptons, and the Big Bang
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Exam 18: Temperature, Heat, and the First Law of Thermodynamics96 Questions
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Exam 21: Electric Charge52 Questions
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Exam 35: Interference46 Questions
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Exam 40: All About Atoms79 Questions
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Exam 42: Nuclear Physics68 Questions
Exam 43: Energy From the Nucleus50 Questions
Exam 44: Quarks, Leptons, and the Big Bang55 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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The mass of the W boson is 80 GeV/c2. During beta decay, a virtual W is created. In order not to visibly violate conservation of energy, what is the longest time the W particle can be in existence?
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A galaxy 200 Mpc from us has a recessional velocity of about 14,000 km/s. If it emits radiation at a wavelength of 121 nm, how much is that wavelength shifted when we observe it?
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Objects in the universe are receding from us with a speed that is proportional to:
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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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The intensity of the microwave background radiation, a remnant of the big bang:
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A down quark can be changed into an up quark (plus other particles perhaps) by:
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Different types of neutrinos can be distinguished from each other by:
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How many different flavors of quarks are there (not counting antiquarks)?
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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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