In part (a) of the figure an electron is shot directly away from a uniformly charged plastic sheet, at speed vs = 3.70 × 105 m/s. The sheet is nonconducting, flat, and very large. Part (b) of the figure gives the electron's vertical velocity component v versus time t until the return to the launch point. What is the sheet's surface charge density? Assume t₂ = 18.0 ps. (a) -e v (105 m/s) ° -V's t (ps) (b)

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Chapter1: Units, Trigonometry. And Vectors
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In part (a) of the figure an electron is shot directly away from a uniformly charged plastic sheet, at speed vs = 3.70 × 105 m/s. The sheet
is nonconducting, flat, and very large. Part (b) of the figure gives the electron's vertical velocity component v versus time t until the
return to the launch point. What is the sheet's surface charge density?
Assume t₂ = 18.0 ps.
(a)
-e
v (105 m/s)
°
-V's
t (ps)
(b)
Transcribed Image Text:In part (a) of the figure an electron is shot directly away from a uniformly charged plastic sheet, at speed vs = 3.70 × 105 m/s. The sheet is nonconducting, flat, and very large. Part (b) of the figure gives the electron's vertical velocity component v versus time t until the return to the launch point. What is the sheet's surface charge density? Assume t₂ = 18.0 ps. (a) -e v (105 m/s) ° -V's t (ps) (b)
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