Two electrons are each 1.60x10-10 m from a proton, as shown in (Figure 1), find the magnitude and direction of the net electrical force they will exert on the proton. Figure P+ 65.0⁰ 1 of 1 e Find the magnitude of the net electrical force the electrons will exert on the proton. Express your answer in newtons. IVE| ΑΣΦ Fnet = Submit Part B Request Answer ΨΕΙ ΑΣΦ ? Find the direction of this force as the angle measured counterclockwise from the +-axis directed horizontally to the right. Express your answer in degrees. ? N

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A. Find the magnitude of the net electrical force the electrons will exert on the proton.

Express your answer in newtons.
B. 
Find the direction of this force as the angle measured counterclockwise from the +x-axis directed horizontally to the right.
Express your answer in degrees.
Two electrons are each 1.60x10-10 m from a proton, as
shown in (Figure 1), find the magnitude and direction of
the net electrical force they will exert on the proton.
Figure
P+
e
65.0⁰
1 of 1
e
Find the magnitude of the net electrical force the electrons will exert on the proton.
Express your answer in newtons.
V—| ΑΣΦ
Fnet
=
Submit
Part B
0 =
Request Answer
-ΨΓ ΑΣΦ
?
Find the direction of this force as the angle measured counterclockwise from the +x-axis directed horizontally to the
right.
Express your answer in degrees.
?
N
O
Review | Constants
counterclockwise from the +x direction
Transcribed Image Text:Two electrons are each 1.60x10-10 m from a proton, as shown in (Figure 1), find the magnitude and direction of the net electrical force they will exert on the proton. Figure P+ e 65.0⁰ 1 of 1 e Find the magnitude of the net electrical force the electrons will exert on the proton. Express your answer in newtons. V—| ΑΣΦ Fnet = Submit Part B 0 = Request Answer -ΨΓ ΑΣΦ ? Find the direction of this force as the angle measured counterclockwise from the +x-axis directed horizontally to the right. Express your answer in degrees. ? N O Review | Constants counterclockwise from the +x direction
Expert Solution
Step 1

We know,

Force acting between two charge particles:

F = kq2 / r2

where, q =  charge

r = distance

Given,

r = 1.6*10-10 m

q = e = 1.6*10-19 C

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