An electron moves through a uniform electric field  E = (2.00î + 4.60ĵ) V/m  and a uniform magnetic field  B = 0.400 T.  Determine the acceleration of the electron when it has a velocity  v = 8.0î m/s.  (Give each component in m/s2.) What If? For the electron moving along the x-axis in the fields in part (a), what speed (in m/s) would result in the electron also experiencing an acceleration directed along the x-axis?

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Chapter1: Units, Trigonometry. And Vectors
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An electron moves through a uniform electric field 

E = (2.00î + 4.60ĵ) V/m

 and a uniform magnetic field 

B = 0.400 T.

 Determine the acceleration of the electron when it has a velocity 

v = 8.0î m/s.

 (Give each component in m/s2.) What If? For the electron moving along the x-axis in the fields in part (a), what speed (in m/s) would result in the electron also experiencing an acceleration directed along the x-axis?

(a) An electron moves through a uniform electric field E = (2.0oî + 4.60j) V/m and a uniform magnetic field B = 0.400k T.
Determine the acceleration of the electron when it has a velocity v = 8.0î m/s. (Give each component in m/s2.)
x =
-3.51E11
m/s?
ay = -2.46E11
v m/s?
a, =
m/s?
(b) What If? For the electron moving along the x-axis in the fields in part (a), what speed (in m/s) would result in the electron also
experiencing an acceleration directed along the x-axis?
| 4.996
x m/s
Transcribed Image Text:(a) An electron moves through a uniform electric field E = (2.0oî + 4.60j) V/m and a uniform magnetic field B = 0.400k T. Determine the acceleration of the electron when it has a velocity v = 8.0î m/s. (Give each component in m/s2.) x = -3.51E11 m/s? ay = -2.46E11 v m/s? a, = m/s? (b) What If? For the electron moving along the x-axis in the fields in part (a), what speed (in m/s) would result in the electron also experiencing an acceleration directed along the x-axis? | 4.996 x m/s
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