I Review | Constants | Periodic Table Part A A rail gun uses electromagnetic forces to accelerate a projectile to very high velocities. The basic mechanism of acceleration is relatively simple and can be illustrated in the following example. A metal rod of mass 10.0 g and electrical resistance 0.100 N rests on parallel horizontal rails that have negligible electric resistance. The rails are a distance L = 8.00 cm apart. (Figure 1)The rails are also connected to a voltage source providing a voltage of V = 5.00 V . Find us, the coefficient of static friction between the rod and the rails. Give your answer numerically. • View Available Hint(s) The rod is placed in a vertical magnetic field. The rod begins to slide when the field reaches the value B = 1.23x10-2 T. Assume that the rod has a slightly flattened bottom so that it slides instead of rolling. Use 9.80 m/s? ΑΣΦ for the magnitude of the acceleration due to Submit Request Answer Provide Feedback Next > Figure 1 of 1 B

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Rail Gun
17 of 23
I Review | Constants | Periodic Table
Part A
A rail gun uses electromagnetic forces to accelerate a
projectile to very high velocities. The basic mechanism of
acceleration is relatively simple and can be illustrated in
the following example. A metal rod of mass 10.0 g and
electrical resistance 0.100 N rests on parallel horizontal
rails that have negligible electric resistance. The rails are a
distance L = 8.00 cm apart. (Figure 1)The rails are also
connected to a voltage source providing a voltage of V =
5.00 V .
Find us, the coefficient of static friction between the rod and
the rails.
Give your answer numerically.
• View Available Hint(s)
The rod is placed in a vertical magnetic field. The rod
begins to slide when the field reaches the value B =
1.23x10-2 T . Assume that the rod has a slightly flattened
bottom so that it slides instead of rolling. Use 9.80 m/s²
ΑΣΦ
?
for the magnitude of the acceleration due to gravity.
Submit
Request Answer
Provide Feedback
Next >
Figure
1 of 1
B
Transcribed Image Text:Rail Gun 17 of 23 I Review | Constants | Periodic Table Part A A rail gun uses electromagnetic forces to accelerate a projectile to very high velocities. The basic mechanism of acceleration is relatively simple and can be illustrated in the following example. A metal rod of mass 10.0 g and electrical resistance 0.100 N rests on parallel horizontal rails that have negligible electric resistance. The rails are a distance L = 8.00 cm apart. (Figure 1)The rails are also connected to a voltage source providing a voltage of V = 5.00 V . Find us, the coefficient of static friction between the rod and the rails. Give your answer numerically. • View Available Hint(s) The rod is placed in a vertical magnetic field. The rod begins to slide when the field reaches the value B = 1.23x10-2 T . Assume that the rod has a slightly flattened bottom so that it slides instead of rolling. Use 9.80 m/s² ΑΣΦ ? for the magnitude of the acceleration due to gravity. Submit Request Answer Provide Feedback Next > Figure 1 of 1 B
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