A beam of electrons passes through an electric field where the magnitude of the electric field strength is 3.00 x 103 newtons per coulomb. What is the magnitude of the electrostatic force exerted by the electric field on each electron in the beam?
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A: Given: Electric field, E=32 nN/C=32x10-9 N/C. The plates are at a distance, d=131 fm=131x10-15 m.…
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- The plate shown moves in the xy plane. Knowing that (va)_x = 165 mm/s, (vb)_y = 180mm/s, and (vc)_y = -55 mm/s, determine the: 1. Angular velocity of the plate 2. Velocity at point A. 3. Velocity at point B 4. The point of the plate with zero velocityCharge q1 = 3.00 nC is at x1 = 0 and charge q2 = 4.50 nC is at x2 = 2.50 m. At what point between the two charges is the electric field equal to zero? (Enter the x coordinate in m.)Two charged objects are placed side-by-side at a certain distance. By what factor does the electrostatic force between the two objects change if the charge on one object is increased by 2 times and the other is increased by 4 times? 1/4 16 1/8 8.
- What is the ratio of the electric force to the gravitational force between a proton and an electron separated by 5.3×10^-11 m (the radius of a hydrogen atom)?What is the magnitude and direction of an electric field that exerts a 1.70x105 N downward force on a -1.50 µC charge? Direction Downward Upward To the right To the leftA proton is released from rest in a uniform electric field of magnitude 406 N/C. (a) Find the electric force on the proton. magnitude 6.496e-17 ✓ N direction in the direction of the electric field (b) Find the acceleration of the proton. magnitude 3.889e10 m/s² direction in the direction of the electric field (c) Find the distance it travels in 2.08 μs. X
- Two small spheres have the same mass and volume. One sphere has a charge of 4.00 micro Coulombs, and the other sphere has a charge of -1.00 micro Coulombs. If these two spheres are brought into brief contact with each other and then separated to a distance of 2.00 x 10^-1 metres, what is the electric force between them at this distance?A particle of mass m = 1.0 g and charge 2.0 µC is placed in a region of space that has a constant electric field of magnitude 2000 N/C. What is the magnitude of the force exerted on the particle due to the electric field? O 4 x 103 N O 2N O 4N O 1000 N 2000 N O 4000 N 2 x 10° N O 1x 10° NAn electron and a proton have charges of an equal magnitude but opposite sign of 1.6 × 10 −19 C. If the electron and proton in a hydrogen atom are separated by a distance of 5 × 10^−11 m, what are the magnitude and direction of the electrostatic force exerted on the electron by the proton?
- An electron is placed in a uniform electric field of 43 nN/C directed north created by two horizontal parallel plates that are 120 mm apart. The electron accelerates from rest, starting at the negative plate. What is the net force and acceleration acting on the electron? How long did it take the electron to get from one side of the plate to the other?A 2.56~nC2.56 nC charge is placed at the origin (x = 0.0, y = 0.0)(x=0.0, y=0.0). What is the y-component of the electric field at the location (x = 6.0{m}, y = 8.0 {m})(x=6.0 m,y=8.0 m) due to the charge at the origin?An electron, initially at rest is placed in an electric field of 5x10 N/C directed west. What is the acceleration of the electron due to the electric field? O 4.79x10^13 ms^2 O 8.78x10^-16 ms^2 8.78x10^16 m's^2 O 4.79x10^-13 m/s^2