Two identical small charged spheres, each having a mass of 0.0365 kg, hang in equllibrium as shown in figure 1. eie L. L L = 0.15 m 0=5.0°
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A: The charge of sphere A is qA=6.5nC The charge of sphere B is qB=1.45 nC The charge of sphere C is…
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A: Q1 = 100 x 10-6 C at P (1, 2, 3 ) Q2 = 2 x 10-6 C at R (0, 0, 0)
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Q: IP The point charges in the figure below have the following values: q₁ = 2.4 μC, q2 = 6.2 μC, q3 =…
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Q: Point charges 9₁ 55μC and 92 = - 40μC are placed 0.8 m apart. Hint a. What is the force on a third…
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A: Given value--- q1 = 4 nC. q2 = - 3 nC. q3 = 6 nC. We have to find--- net force on q3 ?
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A: q1 = 20 μC q2 = -30 μC q3 = 40 μCd = 9 mm = 0.009 m
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Q: In the figure above, a = 19.3 cm and b = 8.00 cm. What is the magnitude of the force on the 5.0 nC…
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Q: please help asap!
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Q: The figure below shows three small, charged beads, all lying along the horizontal axis. Bead A, at…
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Q: The figure below shows three small, charged beads, all lying along the horizontal axis. Bead A, at…
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Q: A particle with charge of -3.5 mC feels an electric force of 0.350 N West. What are the magnitude…
A: Given:Charge on particle q=-3.5mcq=-3.5mc=-3.5×10-3 cforce experienced by charge →F =0.350N west
Q: What is the resultant magnitude and direction of the force on a 5.9 µC charge situated on the…
A: Note: As per our guidelines we can answer only one question in one session. For another question…
Q: Three point charges are arranged as shown in the figure below. 5.00 C 0:300m 0.100m (a) Find the…
A: a) Draw the schematic diagram of the system.



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- Three charges are placed on a horizontal line. Charges q1 = +7 nC and q2 = -3 nC are fixed in place, with q2 2.0 m to the right of q1. Charge q3=+5 nC is in equilibrium but free to slide on the line (but not off of it.) a. Find the distance between q3 and q1 and whether q3 is to the right or left of q1. b. If q3 can move along the line away from its initial location, is the equilibrium stable or unstable? How did you decide? c. If q3 were were on a vertical line instead, so it could move up and down but not horizontally, would the equilibrium be stable or unstable for that motion? How did you decide? m1. Three charges are arranged as shown in the figure below. Find the magnitude and direction of the electrostatic force on the charge at the origin. y 5.00 nC 0.300 m 6.00 nC + x 0.100 m -3.00 nCTwo point charges are placed on the x-axis as follows: Charge q1=+4.00nC is located 0.20m,and charge q2=+5.00nC is at x=-0.30m. a.Draw a sketch of te setting discussed in the question above. Make sure to label all points discussed. b. What are the magnitude and direction of the total force exerted by these two charges on a negative point charge q3=-6.00nC that is placed at the origin?
- Two charged particles apply an electric force of 5.5 x 10^-3 N on each other at a certain distance. If the distance between the two particles is doubled, how much force will they exert on each other? A. 1.375 x 10^-4 NB. 1.735 x 10^-4 NC. 1.735 x 10^-3 ND. 1.375 x 10^-3 NDuring a lab experiment, two identical conducting spheres were charged using a rubber rod and a piece of fur. They were hung from strings as shown in this diagram. Based on the information in the diagram, how much electrostatic force occurred between the spheres in the experiment? Q1. Two identical spheres. Both charged with identical methods. The spheres repel each other. The charge on sphere A is 4.1 x 10^6 Coulombs. Sphere B's charge isn't provided for you. Given the info about both spheres, which of these would be a safe assumption for the charge of sphere B? A)Both spheres are identical so sphere B should also have a charge of B)4.1 x 10^6 Coulombs. 4.1 x 10^6 C is already the charge of sphere A, so sphere B will have to have a different charge that hasn't been taken already. C)Sphere B must have a charge of zero (neutral).5. Four charges are arranged in a square as shown in the following figure. What is the net force on a fifth charge Q placed in the middle of the square where (a) Q = +1 μµC, (b) Q = -1 μC. +4uC +4uC 0.5 m +4 μC 0.5 m +4 uC