The figure below shows an electron passing between two charged metal plates that create an 100 N/C vertical electric field perpendicular to the electron's original horizontal velocity. (These can be used to change the electron's direction, such as in an oscilloscope.) YA Vo + ✔m + + The initial speed of the electron is 7.00 x 106 m/s, and the horizontal distance it travels in the uniform field is 3.00 cm. (a) What is its vertical deflection in meters? 1.62E-4 (b) What is the vertical component of its final velocity in meters per second? 75428.32 m/s (c) At what angle does it exit? Neglect any edge effects. 0.1073 X°

Principles of Physics: A Calculus-Based Text
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Chapter19: Electric Forces And Electric Fields
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I just need help with answering part c, please. 

The figure below shows an electron passing between two charged metal plates that create an 100 N/C vertical electric field perpendicular to the electron's original horizontal velocity.
(These can be used to change the electron's direction, such as in an oscilloscope.)
YA
e
X
Vo
+
+
+
+
+
+
5
V₁
The initial speed of the electron is 7.00 x 106 m/s, and the horizontal distance it travels in the uniform field is 3.00 cm.
(a) What is its vertical deflection in meters?
1.62E-4
✓ m
(b) What is the vertical component of its final velocity in meters per second?
75428.32
m/s
(c) At what angle does it exit? Neglect any edge effects.
0.1073
x。
Transcribed Image Text:The figure below shows an electron passing between two charged metal plates that create an 100 N/C vertical electric field perpendicular to the electron's original horizontal velocity. (These can be used to change the electron's direction, such as in an oscilloscope.) YA e X Vo + + + + + + 5 V₁ The initial speed of the electron is 7.00 x 106 m/s, and the horizontal distance it travels in the uniform field is 3.00 cm. (a) What is its vertical deflection in meters? 1.62E-4 ✓ m (b) What is the vertical component of its final velocity in meters per second? 75428.32 m/s (c) At what angle does it exit? Neglect any edge effects. 0.1073 x。
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