A particle of mass 42 g and charge 23 µC is released from rest whem it is 18 cm from a second particle of charge-29 µC. Determine the magnitude of the initial ac- celeration of the 42 g particle. Answer in units of m/s.
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- of the average electric field that could accelerar to a speed of 1,0 x 10' m/s. Ignore any relainist effects (Chapter 26) and determine the magnitude tor is 4.0 m long and must accelerate protons from red killing the malignant cells. Suppose a proton acceler ton therapy in which proton beams are accelerated o high energies, then directed to collide into a ru 56. + e Some forms of cancer can be treated using pr these protonsare the charge A helium nucleus, called an alpha particle, has a charge of 2e and mass of 4mp, where e and and mass of a proton, respectively. mp Starting from rest, a proton and an alpha particle are accelerated through a constant electric field E. After a time At, which particle has more kinetic energy? O (a) The alpha particle O (b) They have the same kinetic energy O (c) The protonTwo point charges Q₁ = 3.27 nC and Q2 = -3.02 nC are shown in the figure. Q₁ is located at (-2.1 cm, 0.0 cm) while Q2 is at (0.0 cm, 2.6 cm)). from the charges? very far away If a proton is released from rest at the origin, how fast will it be moving when it is V = If an electron has a speed of 6.52 × 106 very far away from the charges shown above, how fast would it be moving at the origin? V =