2. Three charges are arranged as shown in Figure. Find the magnitude and direction of the electrostatic force on the charge at the origin. [ Given Data Coulomb's constant, Ke = 8.99X10° Nm²/C²] y 5.00nC 4.00 nC 0.300m 92 91 0.100m -2.00nC q3 1. The electrostatic force F12 calculated (between q2 and q1)from the above diagram is = 2. The electrostatic force F23 calculated (between q2 and q3)from the above diagram is !! 3. The Magnitude of the resultant force on q2 measured from the above diagram is = 4. The resultant direction e measured from the -x axis is = degrees

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2. Three charges are arranged as shown in Figure. Find the magnitude and direction of the electrostatic force
on the charge at the origin. [ Given Data Coulomb's constant, Ke = 8.99X10° Nm2/C²]
%3D
5.00nC
4.00 nC
0.300m
q2
91
0.100m
-2.00nC
q3
1. The electrostatic force F12 calculated (between q2 and q1)from the above diagram is =
2. The electrostatic force F23 calculated (between q2 and q3)from the above diagram is
3. The Magnitude of the resultant force on q2 measured from the above diagram is =
4. The resultant direction O measured from the -x axis is =
degrees
Transcribed Image Text:2. Three charges are arranged as shown in Figure. Find the magnitude and direction of the electrostatic force on the charge at the origin. [ Given Data Coulomb's constant, Ke = 8.99X10° Nm2/C²] %3D 5.00nC 4.00 nC 0.300m q2 91 0.100m -2.00nC q3 1. The electrostatic force F12 calculated (between q2 and q1)from the above diagram is = 2. The electrostatic force F23 calculated (between q2 and q3)from the above diagram is 3. The Magnitude of the resultant force on q2 measured from the above diagram is = 4. The resultant direction O measured from the -x axis is = degrees
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