What is the potential due to the set of charges at the center of the triangle? Potential energy was -77µm and three points were on equilateral triangle. Point 1 charge is 8nC, point 2= 5nC and point 3= -9nC. The distance between them is 9mm.
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What is the potential due to the set of charges at the center of the triangle? Potential energy was -77µm and three points were on equilateral triangle. Point 1 charge is 8nC, point 2= 5nC and point 3= -9nC. The distance between them is 9mm.
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- Three point charges are placed on the x-axis. 30 µC at the origin, -56 µC at x=0.292 m, -85 µC at x = 0.96 m. Find the magnitude and direction of the net force acting on -56 µC charge. What is the electric potential at (0, 0.96m)? What is the electric field at (0, 0.96m)?Please type clear thank youA point charge q1= 2.40 uC is helf stationary at the origin. A second point charge q2= -4.30 uC moves from the point ×=0.150m, y=0 to the point ×=0.250, y=0.250. Calculate the change in three electrical potential energy between the charges.
- The figure shows a cube with a point charge of magnitude 5.98 nC at each corner. 4 of the Charges are positive and the rest are negative. if the cube has sides of length 24.2m and the potential at infinity is zero, what is the potential at the center of the cube?" 出An electron is moved from point A to point B in a uniform electric field and gains 3.06x10- J of electrostatic potential 15 energy. Calculate the magnitude of the electrostatic potential difference between the two points.Two charges of q₁1.9 μC and 92 = -2.9 μC are d = 0.46 m apart at two vertices of an equilateral triangle as in the figure below. PR 9₁ d d d 9₂ (a) What is the electric potential due to the 1.9-μC charge at the third vertex, point P? (b) What is the electric potential due to the -2.9-µC charge at P? V (c) Find the total electric potential at P. (d) What is the work required to move a 3.2-μC charge from infinity to P?