Given the arrangement of charged particles in the figure below, find the net electrostatic force on the q₁=5.25-µC charged particle. (Assume 42 = 12.33 μC and 93 = -24.12 μC. Express your answer in vector form.) N 91 -2.00 cm, 0) 93 (1.00 cm, 1.00 cm) 92 (0, -1.00 cm)
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- An electric field E = 1.5x106 N/C right, causes the 6.0g ball to hang at an angle of 35 degrees with the vertical. Calculate the charge on the ball. Two 3.0 g point charges on 1.0 m-long thread repel each other after being equally charged. What is the charge q?Given the arrangement of charged particles in the figure below, find the net electrostatic force on the q₁ = 5.95-μC charged particle. (Assume 92 = 13.33 μC and 93 -24.12 μC. Express your answer in vector form.) N 91 (-2.00 cm, 0) 93 (1.00 cm, 1.00 cm) 92 (0, -1.00 cm)Given the arrangement of charged particles in the figure below, find the net electrostatic force on the 91 = 5.55-μC charged particle. (Assume q2 = 16.33 µC and 93 = -24.12 μC. Express your answer in vector form.) →> F = N 91 (-2.00 cm, 0) 93 (1.00 cm, 1.00 cm) 92 (0, -1.00 cm) X
- A charge of -2.70 nC is placed at the origin of an xy-coordinate system, and a charge of 2.20 nC is placed on the y axis at y = 3.70 cm. Part B Find the magnitude of this force. F = Part C Find the direction of this force. 0 = I Part A If a third charge, of 5.00 nC, is now placed at the point x = 2.70 cm, y = 3.70 cm find the x and y components of the total force exerted on this charge by the other two charges. Express answers numerically separated by a comma. Fa, Fy= N N ° below the +x axisplease see attached pic for problemConsider the symmetrically arranged charges in the figure, in which ?a=?b=−2.45 μC and ?c=?d=+2.45 μC . Determine the direction of the electric field at the location of charge ? . right up and left down and left up and right up down left down and right Calculate the magnitude of the electric field ? at the location of ? given that the square is 6.35 cm on a side.
- The figure below shows three small, charged spheres, all lying along the horizontal axis. Sphere A, at left, has a 5.20 nC charge. Sphere B has a 1.60 nC charge and is 3.00 cm to the right of A. Sphere C has a -2.10 nC charge and is 2.00 cm to the right of B. Find the magnitude (in N) and direction of the net electric force on each of the spheres. Net Force on A magnitude direction Net Force on B magnitude direction Net Force on C magnitude direction 9₁ + 3.00 cm ---Select--- ---Select--- ---Select--- N N N V v V 9B 2.00 cm qcGiven the arrangement of charged particles in the figure below, find the net electrostatic force on the q₁ = 5.25-μC charged particle. (Assume 92 = 12.33 μC and 93 = -17.12 μC. Express your answer in vector form.) 7 8970000i - 9035000j 9₁ (-2.00 cm, 0) X N 93 (1.00 cm, 1.00 cm) ● 92 (0, -1.00 cm)How do you find the total charge?
- Consider the symmetrically arranged charges in the figure, in which qa= b = -3.65 µC and qe = qd = +3.65 μC. Determine the direction of the electric field at the location of charge q. down and left up and left down and right E = Oleft down up and right up right Calculate the magnitude of the electric field E at the location of a given that the square is 5.45 cm on a side. N/C 9₂ 9c 9 9aConsider the symmetrically arranged charges in the figure, in which qa 9b = -2.45 µC and q. = qd = +2.45 µC. Determine the direction of the electric field at the location of charge q. O right up and left down and left up and right dn down left down and right Calculate the magnitude of the electric field E at the location of q given that the square is 6.35 cm on a side.Given the arrangement of charged particles in the figure below, find the net electrostatic force on the 9₁ = 5.15-μC charged particle. (Assume q2 = 16.33 µC and 93 = -19.12 μC. Express your answer in vector form.) 7 = X N 91 (-2.00 cm, 0) 93 (1.00 cm, 1.00 cm) 92 (0, -1.00 cm)