Three point-like objects having charges of equal magnitude Q are fixed at the comers of an equilateral triangle of side length d, as shown above. Two of the charges are negative; the other is positive. What is the electric potential energy of the three-object system?
Option A is correct answer
We add the three potential energy created by 3 charges interaction.
Three point-like objects having charges of equal magnitude Q are fixed at the comers of an equilateral triangle of side length d
13) Three point-like objects having charges of equal magnitude Q are fixed at the corners of an equilateral triangle of side length d, as shown above. Two of the charges are negative; the other is positive. What is the electric potential energy of the three-object system?
10. Three point-like charges are placed at the comers of an equilateral triangle as shown in the figure, a- 36.0cm. Find the magnitude of the electric force exerted on the charge q3 . Let q,--2.00 μC, q,-+3.60 μC, and q,--240 pic. 93 91 42
Three particles with equal positive charges q are at the corners of an equilateral triangle of side a as shown in the figure below. (a) At what point, if any, in the plane of the particles is the electric potential zero? (b) What is the electric potential at the position of one of the particles due to the other two particles in the triangle? (Use any variable or symbol stated above along with the following as necessary: ke.)
Three particles with equal positive charges q are at the corners of an equilateral triangle of side a as shown in the figure below. (a) At what point, if any, in the plane of the particles is the electric potential zero? (b) What is the electric potential at the position of one of the particles due to the other two particles in the triangle? (Use any variable or symbol stated above along with the following as necessary: ke.)
Three equal charges q are fixed at the corners of an equilateral triangle. The side of the triangle has a length a. Find the work done by an external agent to bring the three charges (with zero kinetic energy) from infinity to their positions on the triangle. q^2/4 pi epsilon_0 a -q^2/4 pi epsilon_0 a 2q^2/4 pi epsilon_0 a -3q^2/4 pi epsilon_0 a 3q^2/4 pi epsilon_0 a The three charges in the problem above are released and fly off. When...
17) Three equal charges of q each are placed on an equilateral triangle of side length L what is the electric potential energy of the system? A) 3k C) E) None of above Lt 18] A uniform electric field is directed along the x-axis from left to right, so E.-500 V/m. An electron at rest is released from x-0, what is the kinetic energy of the electron at x-2 m? A) 2000 ev B) 1000 ev C) 500 ev D)O...
Three point-like charges are placed at the corners of an equilateral triangle as shown in the figure, a = 36.0 cm. Find the magnitude of the electric force exerted on the charge q3 . Let q11 = +1.20 µC, q22 = −3.90 µC, and q33 = −2.20 µC. View History Bookmarks Window Help Three Pore-Eke Chapes Are Placed At The 10. Three poin-like charges are placed at the comers of an equilateral triangle as shown in the figure,a - 36.0...
Three charges are at the comers of an equilateral triangle, as shown in the figure below. Calculate the electric field a point midway between the two charges on the set - 50,- 2.50 C, and - 4.50) 0.500 magnitude direction NC
Three equal charges of magnitude +6.00 μC are placed at the corners of an equilateral triangle of side 4.00 cm. What is the electric field potential energy of the system of these charges? 0 J 24.3 J 90.0 J 900 mJ 243 mJ (There is no figure with this question.)
Three equal charges are arranged in an equilateral triangle with side length of l=1.2 µm. Each charge has q=+2.0×10-11 C. How much energy was required to bring the charges into this configuration?