At some instant the velocity components of an electron moving between two charged parallel plates are v,-1.8x10³ m/s and -3.9x10 m/s. Suppose the electric field between the plates is uniform and given by E (120N/C)7. In unit-vector notation, what are (a) the electron's acceleration in that field and (b) the electron's velocity when its x coordinate has changed by 2.4 cm? (a) (4 (b)( How much work is required to turn an electric dipole 180° in a uniform electric field of magnitude 33.7 N/C if p-2.28x1025 Cm and the initial angle is 32.9° Number Units

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Chapter1: Units, Trigonometry. And Vectors
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At some instant the velocity components of an electron moving between two charged parallel plates are v, 1.8x105 m/s and
v 3.9x10 m/s. Suppose the electric field between the plates is uniform and given by E = (120N/C). In unit-vector notation,
what are (a) the electron's acceleration in that field and (b) the electron's velocity when its x coordinate has changed by 2.4 cm?
T
(b) (
How much work is required to turn an electric dipole 180° in a uniform electric field of magnitude 33.7 N/C if p-2.28 x 1025 C-m and
the initial angle is 32.9°
Number
90
Units
Transcribed Image Text:At some instant the velocity components of an electron moving between two charged parallel plates are v, 1.8x105 m/s and v 3.9x10 m/s. Suppose the electric field between the plates is uniform and given by E = (120N/C). In unit-vector notation, what are (a) the electron's acceleration in that field and (b) the electron's velocity when its x coordinate has changed by 2.4 cm? T (b) ( How much work is required to turn an electric dipole 180° in a uniform electric field of magnitude 33.7 N/C if p-2.28 x 1025 C-m and the initial angle is 32.9° Number 90 Units
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