A particle has a charge of q = +5.2 µC and is located at the origin. As the drawing shows, an electric field of Ex = +204 N/C exists along the +x axis. A magnetic field also exists, and its x and y components are Bx = +1.1 T and By = +1.6 T. Calculate the force (magnitude and direction) exerted on the particle by each of the three fields when it is (a) stationary, (b) moving along the +x axis at a speed of 345 m/s, and (c) moving along the +z axis at a speed of 345 m/s. +7

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A particle has a charge of q = +5.2 µC and is located at the origin. As the drawing shows, an electric field of Ex = +204 N/C exists along
the +x axis. A magnetic field also exists, and its x and y components are Bx = +1.1 T and By = +1.6 T. Calculate the force (magnitude and
direction) exerted on the particle by each of the three fields when it is (a) stationary, (b) moving along the +x axis at a speed of 345 m/s,
and (c) moving along the +z axis at a speed of 345 m/s.
(a) F₁ =
FBx=
FBy
(b) FE=
FBX
||
||
=
FBy=
FBY
(c) FE=
FBx=
||
IN
1
1
>
<
<
<
>
<
<
+Z
By
Ex
Bx
+X
<
<
>
<
<
<
<
Transcribed Image Text:A particle has a charge of q = +5.2 µC and is located at the origin. As the drawing shows, an electric field of Ex = +204 N/C exists along the +x axis. A magnetic field also exists, and its x and y components are Bx = +1.1 T and By = +1.6 T. Calculate the force (magnitude and direction) exerted on the particle by each of the three fields when it is (a) stationary, (b) moving along the +x axis at a speed of 345 m/s, and (c) moving along the +z axis at a speed of 345 m/s. (a) F₁ = FBx= FBy (b) FE= FBX || || = FBy= FBY (c) FE= FBx= || IN 1 1 > < < < > < < +Z By Ex Bx +X < < > < < < <
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