Protons are projected with an initial speed v0 = 9,650 m/s into a region where a uniform electric field of magnitude E = 500 N/C is present (see figure below). The protons are to hit a target that lies a horizontal distance of 1.30 mm from the point where the protons are launched.
Protons are projected with an initial speed v0 = 9,650 m/s into a region where a uniform electric field of magnitude E = 500 N/C is present (see figure below). The protons are to hit a target that lies a horizontal distance of 1.30 mm from the point where the protons are launched.
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Protons are projected with an initial speed v0 = 9,650 m/s into a region where a uniform electric field of magnitude E = 500 N/C is present (see figure below). The protons are to hit a target that lies a horizontal distance of 1.30 mm from the point where the protons are launched.
(a) Find the two projection angles ? that will result in a hit. (Enter the smaller angle first.)
(b) Find the total duration of flight for each of the two trajectories. (Enter the smaller duration of flight first.)
?1 | = | ° |
?2 | = | ° |
(b) Find the total duration of flight for each of the two trajectories. (Enter the smaller duration of flight first.)
t1 | = | s |
t2 | = | s |
![Target
-R-
Proton
beam](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbb74b664-41f0-4b88-9108-8712fc4aff16%2F7d3a58bc-72cf-440f-872c-28113cea6e41%2Fjl0d47_processed.gif&w=3840&q=75)
Transcribed Image Text:Target
-R-
Proton
beam
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