The cross section for the reaction et + e¯ →d+d at a centre-of-mass energy √s = 25 GeV is o(e+ + e¯ →d+d) = 46.3 pb. Using this result, estimate the numerical value of the cross-section for the reaction µ++µ¯ → e+ + e- at √s = 16 GeV. Choose 1 answer. a. o = 0.34 nb b. o = 5.4 nb ☐c.o=1.0 nb d.g e.o f.o 21.7 nb 16.3 nb 65.1 nb

Principles of Physics: A Calculus-Based Text
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Chapter30: Nuclear Physics
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The cross section for the reaction et + e¯ →d+d at a centre-of-mass energy √s = 25 GeV is
o(e+ + e¯ →d+d) = 46.3 pb.
Using this result, estimate the numerical value of the cross-section for the reaction µ++µ¯ → e+ + e-
at √s = 16 GeV.
Choose 1 answer.
a. o = 0.34 nb
b. o = 5.4 nb
☐c.o=1.0 nb
d.g
e.o
f.o
21.7 nb
16.3 nb
65.1 nb
Transcribed Image Text:The cross section for the reaction et + e¯ →d+d at a centre-of-mass energy √s = 25 GeV is o(e+ + e¯ →d+d) = 46.3 pb. Using this result, estimate the numerical value of the cross-section for the reaction µ++µ¯ → e+ + e- at √s = 16 GeV. Choose 1 answer. a. o = 0.34 nb b. o = 5.4 nb ☐c.o=1.0 nb d.g e.o f.o 21.7 nb 16.3 nb 65.1 nb
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