Consider two point charges q1= 5 nC and q2=-6 C the origin and parallel to the YZ plane with a radius of 50 cm with a charge density of a-3ŋC/m². mag 19 LAN X placed on the Z axis at 3m and -3m and a disk is placed at - Calculate the electric potential due to the two point charges and the disk at the point P1(2,0,0) - If a charge q3= 4x10^-9 C is placed at point P1, calculate the potential energy to maintain the 3 point charges in the system - If the charge q3 has a mass of 2.1x10^7 it moves from the rest of P1 to a point P2 that has potential 50 V, calculate the speed that the charge advances - Calculate the work done by the charge q3

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Consider two point charges q1= 5 nC
and q2=-6 C
the origin and parallel to the YZ plane with a radius of 50 cm with a charge density of o-31C/m².
mad
TARN
placed on the Z axis at 3m and -3m and a disk is placed at
- Calculate the electric potential due to the two point charges and the disk at the point P1(2,0,0)
- If a charge q3= 4x10^-9 C is placed at point P1, calculate the potential energy to maintain the 3 point charges in the
system
- If the charge q3 has a mass of 2.1x10^7 it moves from the rest of P1 to a point P2 that has potential 50 V, calculate the
speed that the charge advances
- Calculate the work done by the charge q3
Transcribed Image Text:Consider two point charges q1= 5 nC and q2=-6 C the origin and parallel to the YZ plane with a radius of 50 cm with a charge density of o-31C/m². mad TARN placed on the Z axis at 3m and -3m and a disk is placed at - Calculate the electric potential due to the two point charges and the disk at the point P1(2,0,0) - If a charge q3= 4x10^-9 C is placed at point P1, calculate the potential energy to maintain the 3 point charges in the system - If the charge q3 has a mass of 2.1x10^7 it moves from the rest of P1 to a point P2 that has potential 50 V, calculate the speed that the charge advances - Calculate the work done by the charge q3
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