The figure below shows a proton entering a parallel-plate capacitor with a speed of 1.80×105 m/s. The proton travels a horizontal distance x = 5.90 cm through the essentially uniform electric field. The electric field of the capacitor has deflected the proton downward by a distance of d = 0.820 cm at the point where the proton exits the capacitor. (You can neglect the effects of gravity.) + + + + + + + + + Using kinematics, find the vertical acceleration (including sign) of the proton in this electric field. Submit Answer Tries 0/32 Find the magnitude of the force on the proton. Submit Answer Tries 0/100 Find the strength of the electric field within the capacitor. Submit Answer Tries 0/32 Find the speed of the proton when it exits the capacitor. Submit Answer Tries 0/32
The figure below shows a proton entering a parallel-plate capacitor with a speed of 1.80×105 m/s. The proton travels a horizontal distance x = 5.90 cm through the essentially uniform electric field. The electric field of the capacitor has deflected the proton downward by a distance of d = 0.820 cm at the point where the proton exits the capacitor. (You can neglect the effects of gravity.) + + + + + + + + + Using kinematics, find the vertical acceleration (including sign) of the proton in this electric field. Submit Answer Tries 0/32 Find the magnitude of the force on the proton. Submit Answer Tries 0/100 Find the strength of the electric field within the capacitor. Submit Answer Tries 0/32 Find the speed of the proton when it exits the capacitor. Submit Answer Tries 0/32
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![The figure below shows a proton entering a parallel-plate capacitor with a speed of 1.80×105 m/s. The proton travels a horizontal distance x = 5.90 cm through the essentially uniform
electric field. The electric field of the capacitor has deflected the proton downward by a distance of d = 0.820 cm at the point where the proton exits the capacitor. (You can neglect the effects
of gravity.)
+ + + + + + + + +
Using kinematics, find the vertical acceleration (including sign) of the proton in this electric field.
Submit Answer
Tries 0/32
Find the magnitude of the force on the proton.
Submit Answer
Tries 0/100
Find the strength of the electric field within the capacitor.
Submit Answer
Tries 0/32
Find the speed of the proton when it exits the capacitor.
Submit Answer
Tries 0/32](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F74b33ebe-31a4-43ae-802a-49365f949aaf%2Fefec78c1-6053-4a82-863d-97416b91b8c5%2F84pfbfm.png&w=3840&q=75)
Transcribed Image Text:The figure below shows a proton entering a parallel-plate capacitor with a speed of 1.80×105 m/s. The proton travels a horizontal distance x = 5.90 cm through the essentially uniform
electric field. The electric field of the capacitor has deflected the proton downward by a distance of d = 0.820 cm at the point where the proton exits the capacitor. (You can neglect the effects
of gravity.)
+ + + + + + + + +
Using kinematics, find the vertical acceleration (including sign) of the proton in this electric field.
Submit Answer
Tries 0/32
Find the magnitude of the force on the proton.
Submit Answer
Tries 0/100
Find the strength of the electric field within the capacitor.
Submit Answer
Tries 0/32
Find the speed of the proton when it exits the capacitor.
Submit Answer
Tries 0/32
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