Suppose the charge q3 in the figure below can be moved left or right along the line connecting the charges q₁ and q2. Find the distance x to the right of q2 where 93 experiences a net electrostatic force of zero. Assume the Xharges q2and q3 are separated by a fixed distance of d = 26.4 cm. Let q₁ = -8.0 μC, q2 = +5.0 µC, and q3 = -2.0 μC. k 91 X d 23 --0
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- Three charges are arranged as shown in the figure below. Find the magnitude and direction of the electrostatic force on the charge q = 5.30 nC at the origin. (Let r12 = 0.230 m.) y magnitude direction 9 0.100 m -3.00 nC 12 6.00 nC + -x i N o counterclockwise from the +x-axisThe diagram below shows two point charges, A & B. The charge of A is -6 nC & the charge of B is -3.2 nC. Determine the magnitude & direction of the net E-field at point P. The distance between A & P is 0.24 m & the distance between B & P is 0.61 m. P B Part B: Location of zero E-field x P Two point charges, A & B (qA = -22 μC & qв = 50 μC), are separated by 14 cm. The electric field at point P (see below) is zero. How far from A is P? 9.3 cm ? 14 cm 936.46 N/C Enet = direction of Enet = quadrant 3 8 939.65 X relative to the VERTICAL inasap i will upvote
- Two point charges, Q1 = -3.14 μC and Q2 = +1.9 μC, are located between two oppositely charged parallel plates, as shown in the Figure. The two charges are separated by a distance of x=15 mm. Assume the electric field produced by the charged plates is uniform and equal to E=240 kN/C. Calculate the net electrostatic for on Q1 and give its direction.The two spherical shell has a charge of 91 = 0.30nC and q2 = 0.5nq. The radius of r1=7.5cm and r2 = 2.5cm. What is the new votage value in volts, after the charge transfer is completed between the two spheres? 9:Three point charges are shown below. q1 = 5.57 μC, q2 = 3.95 μC, and q3 = -12.4 μC. d1 = 5.00 cm and d2 = 3.00 cm. What is the magnitude of the net electric force on q1 in Newtons? 1.00 μC = 1.00 × 10-6 C, 1.00 cm = 1.00 × 10-2 m. Use K = 9.00 × 109 N·m2/C2. Your answer needs to have 3 significant figures, including the negative sign in your answer if needed. Do not include the positive sign if the answer is positive. No unit is needed in your answer, it is already given in the question statement.
- Q on picThree charged marbles are glued to a nonconducting surface and are placed in the diagram as shown. The charges of each marble are q1 = 6.50 µC, q2 = 1.81 µC, and q3 = −2.23 µC. Marble q1 is a distance r1 = 3.00 cm to the left of the marble q2, while marble q3 is a distance r3 = 2.00 cm to the right of the marble q2, as shown. Calculate the magnitude of the electric field a distance r' = 1.00 cm to the left of the center marble.Three identical point charges of 2.6 μC are placed on a horizontal axis. The first charge is at the origin, the second at x2 = 4 cm, and the third is at the x3 =12 cm. What is the magnitude and direction of the electrostatic force which acts on the charge at the origin? Round your answer to the nearest tenth of a Newton. For this question and your answer, a positive (+) will indicate to the right, and a negative (-) will indicate to the left.
- Needs Complete typed solution with 100 % accuracy.In Figure 3, Q1 = 79.3 nC, Q2 = 137 nC, and s = 1.31 m. Find the coordinate x, in meters, of the point where the net electric field due to the two charges is zero.magnitude direction BμC 60.0⁰ A μC 0.500 m (a) Three point charges, A = 2.15 μC, B = 6.95 µC, and C = -4.10 µC, are located at the corners of an equilateral triangle as in the figure above. Find the magnitude and direction of the electric field at the position of the 2.15 µC charge. CμC X Your response is within 10% of the correct value. This may be due to roundoff error, or you could have a mistake in your calculation. Carry out all intermediate results to at least four-digit accuracy to minimize roundoff error. N/C Your response differs from the correct answer by more than 10%. Double check your calculations.° below the +x-axis