Point charge A is on the x-axis at x = -3.00 cm. At x = 1.00 cm on the x-axis its electric field is 2900 N/C. Point charge B is also on the x-axis, at a = 5.00 cm. The absolute magnitude of charge B is twice that of A. Find the magnitude and direction of the total electric field at the origin if both A and B are positive. Express your answer in newtons per coulomb. Enter positive value if the field points in +x-direction and negative value if the field points in -x-direction. ? Ez = N/C Find the magnitude and direction of the total electric field at the origin if both A and B are negative. Express your answer in newtons per coulomb. Enter positive value if the field points in +x-direction and negative value if the field points in -x-direction. ? Ez = N/C Find the magnitude and direction of the total electric field at the origin if A is positive and B is negative. Express your answer in newtons per coulomb. Enter positive value if the field points in +x-direction and negative value if the field points in -x-direction. V AZO ? Er = N/C Submit Request Answer Find the magnitude and direction of the total electric field at the origin if A is negative and B is positive. Express your answer in newtons per coulomb. Enter positive value if the field points in +x-direction and negative value if the field points in -x-direction.

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Point charge A is on the x-axis at x = -3.00 cm. At
x = 1.00 cm on the x-axis its electric field is
2900 N/C. Point charge B is also on the x-axis,
at x = 5.00 cm. The absolute magnitude of
charge B is twice that of A.
Find the magnitude and direction of the total electric field at the origin if both A and B are
positive.
Express your answer in newtons per coulomb. Enter positive value if the field points in
+x-direction and negative value if the field points in -x-direction.
Vα ΑΣΦ
?
Ez =
N/C
Find the magnitude and direction of the total electric field at the origin if both A and B are
negative.
Express your answer in newtons per coulomb. Enter positive value if the field points in
+x-direction and negative value if the field points in -x-direction.
Πνα ΑΣΦ
?
Ex =
N/C
Find the magnitude and direction of the total electric field at the origin if A is positive and B is
negative.
Express your answer in newtons per coulomb. Enter positive value if the field points in
+x-direction and negative value if the field points in -x-direction.
Πνα ΑΣφ
?
Er =
N/C
Submit
Request Answer
Find the magnitude and direction of the total electric field at the origin if A is negative and B is
positive.
Express your answer in newtons per coulomb. Enter positive value if the field points in
+x-direction and negative value if the field points in -x-direction.
ΑΣΦ
?
Er
N/C
II
Transcribed Image Text:Point charge A is on the x-axis at x = -3.00 cm. At x = 1.00 cm on the x-axis its electric field is 2900 N/C. Point charge B is also on the x-axis, at x = 5.00 cm. The absolute magnitude of charge B is twice that of A. Find the magnitude and direction of the total electric field at the origin if both A and B are positive. Express your answer in newtons per coulomb. Enter positive value if the field points in +x-direction and negative value if the field points in -x-direction. Vα ΑΣΦ ? Ez = N/C Find the magnitude and direction of the total electric field at the origin if both A and B are negative. Express your answer in newtons per coulomb. Enter positive value if the field points in +x-direction and negative value if the field points in -x-direction. Πνα ΑΣΦ ? Ex = N/C Find the magnitude and direction of the total electric field at the origin if A is positive and B is negative. Express your answer in newtons per coulomb. Enter positive value if the field points in +x-direction and negative value if the field points in -x-direction. Πνα ΑΣφ ? Er = N/C Submit Request Answer Find the magnitude and direction of the total electric field at the origin if A is negative and B is positive. Express your answer in newtons per coulomb. Enter positive value if the field points in +x-direction and negative value if the field points in -x-direction. ΑΣΦ ? Er N/C II
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