Three point charges are fixed as shown in the figure. You are given that q-5 uC and a = 0.3 m. Find the magnitude of the net electric force (in N) on the charge located at the origin. +g
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Q: IP The point charges in the figure below have the following values: 91 = 2.4 uC, 2 = 6.2 uC, qs =…
A: Since you have asked multiple questions, we will solve the first question for you. If you want any…
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Q: Q1:Two point charges are fixed as shown in the figure. If q = 80 nC and a= 0,5 m, then the magnitude…
A: Note:- Based on our guidelines we are providing solution for 1st question. Please repost again for…
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A: "As per the guidelines i solved the first three subpart". The figure shows the charges arranged on…
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Q: 6.0 nC -0.216 m +) 2.5 nC 0.237 m -1.7 nC
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Q: Q1:Two point charges are fixed as shown in the figure. If q = 80 nC and a= 0,5 m, then the magnitude…
A: q=80 nC=80 x 10-9 C (1nC=10-9 C) a=5m also we know coulomb's constant , k=9 x 109 Let us consider…
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- A triangle has the following charges on its corners: q1=A μC q2=-B μC q3=C μC Each side of the triangle is D cm. Find the magnitude of total electric field caused by q1 and q2 on the location of q3. Draw the triangle and label properly.Point charges q1 = 75 nC, q2 = -36 nC, and q3 = 16 nC are arranged in Figure. a. Find the magnitude of the electric field at P. b. Find the direction of the electric field at P.A point charge q = 2C is situated at a long distance r = 15 m on axis from one end of a thin no conducting rod of length L = 2m (r > L) having a charge Q = 7C (Uniformly distributed along its length). The magnitude of electric fied at the point charge q will feel is: Magnitude of the Electric field q will feel Give your answer up to at least three significance digits. V/m
- A solid conducting sphere of radius a=12 cm shown below has a total charge of Q = -13 nC. Determine the electric energy density at point P. Give answer in µJ/m and to three places to the right of the decimal. Q a 50 cm Charged conducting sphereAsapA line of charge of length L = 42 cm with charge Q = 430.0 nAies along the positive Y axis whose one end is at the origin O. A point charge q = 310.0 µClies on point P = (41, 21.0)Here the coordinates are given in centi-meters. a) Find the Electric field at Pdue to the rod. x component of E Give your answer to at least three significance digits. N/C y component of E Give your answer to at least three significance digits. N/C b)Find the charge density of the rod? why is it in C/mbut not in C/m?? Charge density Give your answer to at least three significance digits. C/m
- In Figure 1 the four particles are xed in place and have charges q1 = q2 = +5e, q3 = +3e and q4 = -12e. Distance d = 5.0 μm. What is the magnitude of the net electric eld at point P due to the particles?Positive charge Q is distributed uniformly along the positive y-axis between y=0 and y=a. A negative point charge −q lies on the positive x-axis, a distance x from the origin Calculate the x-component of the electric field produced by the charge distribution Q at points on the positive x-axis. Express your answer in terms of the variables Q, x, y, a and appropriate constants. Calculate the y-component of the electric field produced by the charge distribution Q at points on the positive x-axis. Express your answer in terms of the variables Q, x, y, a and appropriate constants. Calculate the x-component of the force that the charge distribution Q exerts on q. Express your answer in terms of the variables Q, q, x, y, a and appropriate constants. Calculate the y-component of the force that the charge distribution Q exerts on q. Express your answer in terms of the variables Q, q, x, y, a and appropriate constants.Four points charges of equal magnitude Q=45 nC are placed on the corners of a rectangle of sides D1=18cm and D2=12 cm. The charges on the left side of the rectangle are positive while the charges on the right side of the rectangle are negative. Use a coordinate system where the positive y-direction is up and the positive x-direction is to the right. I just need help with letters c-e, please. I answered b already. But we need that answer for the following questions. b. Calculate the horizontal component of the net force, in newtons, on the charge which lies at the lower left corner of the rectangle. Answered: 8.7 *10^-4 c. Calculate the vertical component of teh net force, in newtons, on the charge which lies at the lower left corner of teh rectangle. d. Calculate the magnitude of the net force, in newtons, on the charge located at the lower left corner of the rectangle. e. Calculate the angle of the net force vector relative to the +x axis, with the positive direction being…
- ASAPIn the figure below, determine the point (other than infinity) at which the electric field is zero. (Let q, = -1.65 µC and q2 = 6.90 µc.) -1.00 m-Three-point charges are in an x-y plane. Charge 1 has a charge of 11.2 mC, charge 2 has a charge of -19.8 μC, charge 3 has a charge -15.4mC. Charge 2 is at the origin, charge 1 is 9.4 mm to the left of charge 2, and charge 3 is 6.8 mm along the +x-axis and 3.5 mm along the y-axis. a. Determine the individual force applied by charge 1 and charge 3 onto charge 2. b. Illustrate a free-body diagram of force applied by charge 1 and charge 3 onto charge 2, then determine the net force.