Two charges are located on the x axis: q, = +5.4#C at x, = +4.8 cm, and q2 = +5.4#C at x, = -4.8 cm. Two other charges are located on the y axis: q, = +4.5#C at y, = +4.5 cm, and q. = -10#C at y, = +6.7 cm. Find (a) the magnitude and (b) the direction of the net electric field at the origin. %3D
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- Two charges 3µC are placed on the y-axis at y=-2 m and y = 2m. Two more charges Q, are placed at x = 4.5 m and y =-2 m, and x= 4.5 m and y=2.0 m. Calculate Q so that E = 4,01 kN/C in origo.Two point charges of +2.0 uC and - 1.0 µC are 10 cm apart. The electrical force between them is * O 1.8 N, attractive O 180 N, attractive O 180 N, repulsive O 1.8 N, repulsivePoint charges 91 distance 3.70 mm, forming an electric dipole. == 4.20 nC and q2 = + 4.20 nC are separated by
- the answer must be 1.198x10^9 NTwo charged balls are hanging by threads as shown below: 5.0⁰ Each ball has a mass of 3.90 grams and a charge Q nC, and the length of each thread is 58.6 cm. For what value of Q will the masses be held in place? Assume units of nC = 10-⁹℃ for the charge and assume 3 significant digits.Two charges are located on the x axis: q₁ = +5.6 μC at x₁ = +4.9 cm, and q2 = +5.6 μC at x2 = -4.9 cm. Two other charges are located on the y axis: q3= +3.8 μC at y3 = +4.7 cm, and 94 = -11 μC at y4=+7.6 cm. Find (a) the magnitude and (b) the direction of the net electric field at the origin. (a) Number i (b) The net electric field points Units 94 92 --+x
- Two charges are located on the x axis: q1 = +4.8 μC at x₁ = +4.1 cm, and q2 = +4.8 μC at x2 = -4.1 cm. Two other charges are located on the y axis: 93 = +2.7 μC at y3 = +4.1 cm, and 94 = -8.6 μC at y4 = +6.9 cm. Find (a) the magnitude and (b) the direction of the net electric field at the origin. (a) Number i (b) The net electric field points Units N/C 94 43 41--+x 目6 AV + A₁ C₁=1pF C₂=2μF C3 = 3µF AV = 6V C₁ C- C3 (a) Find the charge on C₁ in Micro-Coulombs (input the num the answer box).Three point charges are located in the xy-plane as in the figure. Given that Q = 20.9 µ y (8, 6) 3Q 4Q Select one: A. 0.47 B. 0.34 С. 3.01 D. 0.86 E. 1.32
- Two charges, each 6 µC, are on the x axis, one at the origin and the other at x = 8 m. Find the electric field on the x axis at each of the following locations. x = -2 m x = 2 m x = 6 m x = 10 m At what point on the x axis is the electric field zero?Three point charges are located as shown in the figure. q1 =-9 x 10-12 [C) and d =5 [cm] 92 =1x 10-12 (C] and d; = 1 [cm] 93 =-4 x 10-2 (C) and dy = 7 [cm] 93 d3 a. n Jami the t 1 at the- 92 INA d, d, de electri nyutuae or tne eiectrio neld created by the charge g at the origin d E What ie thadie origin. e.t harge qs at the origin. UR OL ne e E = (N/C f. JWha Oi Calculate ther THL NT Î IN/C) A charge go equal to -1.6 x 10-19 is located at the origin. The net electric field at the origin and the total force applied on the charge g will have: Osame direction Oopposite direction ik s]A charge go equal to -1.6x 10-19 is located at the origin, where the net electric field vector is supposed to be Ener "-4 i +4 ĵ IN/C). Calculate the net electric force vector created on go and select its unit (DO NOT USE THE VALUES FOUND IN THE PREVIOUS PARTS) metThere are two spheres of different charges, one with three times the charge of the other. The spheres are 16 cm apart, and the force between them is 0.28 N. What are the charges on the two spheres?Options: 3.99 x 10^-7 C & 1.19 x 10^-6 C 8.24 x 10^-7 C & 2.47 x 10^-6 C 9.15 x 10^-7 C & 2.74 x 10^-6 C 5.15 x 10^-7 C & 1.5 x 10^-6 C