6. (a) A lμC charge is at the center of the square shown below. How much external work is needed to move it to the corner of the square (assuming it is initially and finally at rest)? -5 µC 2 cm 2 μC I jic - 10 με
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Q: Problem 16: A +38 μC point charge is placed 36 cm from an identical +38 μC charge. A -1.5 μC charge…
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Q: A spherical conducting shell has an inner radius of 0.2 m and an outer radius of 0.4 m. There is no…
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- We have the following configuration of point charges q1= 1 uC, located at (0, 1 cm) and q2= -1 HC, located at (0, 0): P 92 If a third particle of charge q3= 7 uÇ is added, which is placed from infinity a to point P (1 cm, 0 cm). Find the potential energy difference necessary to add the third particle. a) AU = 1.8426 J b) AU = -10.7397 J c) AU = -1.8426 J d) AU = 10.7397 J(a) How much charge can be placed on a capacitor with air between the plates before it breaks down if the area of each plate is 9.00 cm²? nC (b) Find the maximum charge if nylon is used between the plates instead of air. nCThere are two charges → Q1 = +q and charge Q2 = +2q. From the initial point (Q), Q1 is at a distance of r and Q2 is at a distance 2r. Which charge (Q1 or Q2) will have higher electrostatic potential energy? a) Q1 b) Both will have the same energy c) Q2 d) The information given is not enough to determine
- Write this in decimal format. Do not use scientific notationThe nucleus of a helium atom contains two protons that are approximately 1 fm apart. How much work must be done by an external agent to bring the two charges from an infinite separation to a separation of 1.0 fm? -230 J -2.3 x 10-13 J 2.3 x 10-13 j 2.3 x 10-16 JPlease type clear thank you
- 8. The system consists of two concentric metal shells of radii R1 and R2 (R2> R1) with the corresponding charges q1 and q2. Find: a) self-energy W1, W2, of each shell; b) the interaction energy of the shells Wwz; c) total electrical energy W of this system.An immovable charge Q₁ = +2.0µC is placed in fixed location at the origin on an (x, y) coordinate system. Another charge, Q₂ = +4.0μC is allowed to move near the first charge. How much work does it take to move this charge from it's starting location of (-3cm, 4cm) to the following locations and if the time to make this change is 10 ms how much power was output during each process: (a) (-1.5cm, 2cm) (b) (-6cm, 8cm) (c) (3cm, 4cm)pls help me answer these questions and showcase all your work
- Points A and B are 40 and 25 mm away from a 6 μC charge, how much work is necessary to do against the electric field (through external forces) to move a 5 μC charge from point A to point B?Question 1 Consider two charges +q and +3q. There original distance is d. How much work is needed to bring +3q to a distance d/2? 1 W ext 4πεο O 3q^2 (1/d) -3q^2 (1/d) 3q (1/d) -3q (1/d)SER Three particles with + 2q, -2q, + 3q charges are placed in the corners of the equilateral triangle with one edge d as shown in the figure. Accordingly, how many kq² / d is the electrical potential energy of the system? +2q by Cevap Listesi +3q 39 13 14 15 -2q 19 20 x Bos a) 0. 4 Cevap Kaydedi -4 XCevap Kaydedi b) C -3 3.