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63. (a) Eq. 1
′
of Table 372 becomes
∆
x
′
=
γ(∆
x
−
β
c
∆
t
)
=
γ[(
240 m)
−
β
(299.8 m)
] .
(b) A plot of
∆
x
′
for 0
0.01
<<
is shown below:
(c) A plot of
∆
x
′
for 0.1
1
is shown below:
We see that
∆
x
′
decreases from its
= 0 value (where it is equal to
∆
x
= 240 m) to its
zero value (at
≈
0.8), and continues (without bound) downward in the graph (where it is
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This note was uploaded on 06/03/2011 for the course PHY 2049 taught by Professor Any during the Spring '08 term at University of Florida.
 Spring '08
 Any
 Physics

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