A new particle, the aarnion, has just been discovered! Careful measurements show that the aarnion has an average lifetime (at rest) of 95 ns. In one experiment, an aarnion traveled 13 m (as viewed from the lab frame) before it decayed. A.) Determine the proper velocity of the aarnion. Assume it had an average lifetime in its own frame. W = хс B.) Determine the velocity of the aarnion. Assume it had an average lifetime in its own frame. V= XC

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A new particle, the aarnion, has just been discovered! Careful measurements show that the aarnion has an average lifetime (at rest) of 95 ns. In one experiment, an aarnion traveled 13 m (as viewed from the lab
frame) before it decayed.
A.) Determine the proper velocity of the aarnion. Assume it had an average lifetime in its own frame.
XC
W =
B.) Determine the velocity of the aarnion. Assume it had an average lifetime in its own frame.
V =
XC
Transcribed Image Text:A new particle, the aarnion, has just been discovered! Careful measurements show that the aarnion has an average lifetime (at rest) of 95 ns. In one experiment, an aarnion traveled 13 m (as viewed from the lab frame) before it decayed. A.) Determine the proper velocity of the aarnion. Assume it had an average lifetime in its own frame. XC W = B.) Determine the velocity of the aarnion. Assume it had an average lifetime in its own frame. V = XC
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