At a particular instant, a proton, far from all other objects, is located at the origin. The proton is traveling with velocity (-5 × 107,0,0) m/s. Consider the electric and magnetic fields at observation point (5 x 10-7,3 × 10-7,0)m caused by this proton. (Use k = 8.988E9 and charge of proton = 1.6E-19) A. What is the E field at the observation point? ( 3627 2176 B. What is the B field at the observation point? (0 ⠀ 0 0 -1E-6 ⠀ > )T
At a particular instant, a proton, far from all other objects, is located at the origin. The proton is traveling with velocity (-5 × 107,0,0) m/s. Consider the electric and magnetic fields at observation point (5 x 10-7,3 × 10-7,0)m caused by this proton. (Use k = 8.988E9 and charge of proton = 1.6E-19) A. What is the E field at the observation point? ( 3627 2176 B. What is the B field at the observation point? (0 ⠀ 0 0 -1E-6 ⠀ > )T
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at observation point (5 × 10−7,3 × 10−7,0) m caused by this proton. (Use k = 8.988E9 and charge of proton = 1.6E-19)
A. What is the E field at the observation point?
(3627
2176
B. What is the B field at the observation point?
(0
⠀
0
"
#
"
0
-1E-6
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Transcribed Image Text:At a particular instant, a proton, far from all other objects, is located at the origin. The proton is traveling with velocity (-5 × 107, 0, 0) m/s. Consider the electric and magnetic fields
at observation point (5 × 10−7,3 × 10−7,0) m caused by this proton. (Use k = 8.988E9 and charge of proton = 1.6E-19)
A. What is the E field at the observation point?
(3627
2176
B. What is the B field at the observation point?
(0
⠀
0
"
#
"
0
-1E-6
)
N
# )T
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