Two equally charged particles, held 4.5 x 103 m apart, are released from rest. The initial acceleration of the first particle is observed to be 6.1 m/s? and that of the second to be 12 m/s?. If the mass of the first particle is 9.4 x 107 kg, what are (a) the mass of the second particle and (b) the magnitude of the charge of each particle? (a) Number i Units (b) Number i Units
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- Two particles, with identical positive charges and a separation of 2.00 x 10-2 m, are released from rest. Immediately after the release, particle 1 has an acceleration a1 whose magnitude is 6.85 x 10° m/s2, while particle 2 has an acceleration a2 whose magnitude is 8.50 x 10° m/s?. Particle 1 has a mass of 7.87 x 10-6 kg. Find (a) the charge on each particle and (b) the mass of particle 2.A charge of -2.70 nC is placed at the origin of an xy-coordinate system, and a charge of 2.45 nC is placed on the y axis at y = 3.90 cm . A)If a third charge, of 5.00 nC , is now placed at the point x = 2.90 cm , yy = 3.90 cm find the x and y components of the total force exerted on this charge by the other two charges. B)Find the magnitude of this force.One particle has a mass of 3.71 x 103 kg and a charge of +7.56 μC. A second particle has a mass of 7.17 x 103 kg and the same charge. The two particles are initially held in place and then released. The particles fly apart, and when the separation between them is 0.177 m, the speed of the 3.71 x 103 kg-particle is 126 m/s. Find the initial separation between the particles. V1,B V2,B 92 92 91 Number i 0.011 Units m "B 91
- Two identical small spheres of mass 1.10 g each carry equal charge (sign and magnitude) and are placed 3.60 cm apart. When released, each sphere experiences an instantaneous acceleration of 419 m/s². Determine the magnitude of the charge on one of the spheres. Report your answer in nC. (1 nC = 1.00×10-⁹ C and k = 8.99x10⁹ Nm²/C²)Two charged particles are a distance of 1.72 m from each other. One of the particles has a charge of 7.03 nC, and the other has a charge of 3.86 nC. (a) What is the magnitude (in N) of the electric force that one particle exerts on the other? (b) Is the force attractive or repulsive?As stated in pic
- Two charged particles are a distance of 1.82 m from each other. One of the particles has a charge of 6.75 nC, and the other has a charge of 4.30 nC. (a) What is the magnitude (in N) of the electric force that one particle exerts on the other? (b) Is the force attractive or repulsive?One particle has a mass of 3.71 x 103 kg and a charge of +7.56 µC. A second particle has a mass of 7.17 x 103 kg and the same charge. The two particles are initially held in place and then released. The particles fly apart, and when the separation between them is 0.177 m, the speed of the 3.71 x 103 kg-particle is 126 m/s. Find the initial separation between the particles. V1,B V2,B 92 92 91 Number i Units "B 91Three identical metallic conducting spheres carry the following charges: q1 = +4.60 μC, q2 = +1.80 μC, and q3 = −1.60 μC. The spheres that carry the charges q1 and q2 are brought into contact. Then they are separated. After that, one of those two spheres is brought into contact with the third sphere that carries the charge q3; those two are then separated as well. How many excess (or deficiency) electrons make up the final charge on the third sphere?