An electron and a proton are both in motion near each other as shown in the...
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An electron and a proton are both in motion near each other as shown in the figure below; at this instant they are a distance r apart. The proton is moving with speed v_p at an angle \theta to the horizontal, and the electron is moving straight up with speed v_e. (Assume the +x direction is to the right and the + y direction is upward. Indicate the direction with the sign of your answer.) (a) Calculate the x and y components of the force that the proton exerts on electron. First calculate the electric field and magnetic field that the proton produces at the location of the electron, then calculate the forces that these fields exert on the electron. (Use the following as necessary for F_net x: \epsi _0, e, r, v_p, v_e, \theta, and c. Use the following as necessary for F_net, y: \mu_0, e, r, v_p, v_e, \theta, and c.) F_net, x = -1/4 \pi \epsi_0 e^2/r^2 +\mu_0/4 \pi e^2 v_ev_psin (\theta)/r^2 Proton 0 Vp r Ve Electron An electron and a proton are both in motion near each other as shown in the figure below; at this instant they are a distance r apart. The proton is moving with speed v_p at an angle \theta to the horizontal, and the electron is moving straight up with speed v_e. (Assume the +x direction is to the right and the + y direction is upward. Indicate the direction with the sign of your answer.) (a) Calculate the x and y components of the force that the proton exerts on electron. First calculate the electric field and magnetic field that the proton produces at the location of the electron, then calculate the forces that these fields exert on the electron. (Use the following as necessary for F_net x: \epsi _0, e, r, v_p, v_e, \theta, and c. Use the following as necessary for F_net, y: \mu_0, e, r, v_p, v_e, \theta, and c.) F_net, x = -1/4 \pi \epsi_0 e^2/r^2 + \mu_0/4 \pi e^2 v_ev_psin (\theta )/r^2 Proton 0 Vp r Ve Electron An electron and a proton are both in motion near each other as shown in the figure below; at this instant they are a distance r apart. The proton is moving with speed v_p at an angle \theta to the horizontal, and the electron is moving straight up with speed v_e. (Assume the +x direction is to the right and the + y direction is upward. Indicate the direction with the sign of your answer.) (a) Calculate the x and y components of the force that the proton exerts on electron. First calculate the electric field and magnetic field that the proton produces at the location of the electron, then calculate the forces that these fields exert on the electron. (Use the following as necessary for F_net x: \epsi _0, e, r, v_p, v_e, \theta, and c. Use the following as necessary for F_net, y: \mu_0, e, r, v_p, v_e, \theta, and c.) F_net, x = -1/4 \pi \epsi_0 e^2/r^2 +\mu_0/4 \pi e^2 v_ev_psin (\theta)/r^2 Proton 0 Vp r Ve Electron An electron and a proton are both in motion near each other as shown in the figure below; at this instant they are a distance r apart. The proton is moving with speed v_p at an angle \theta to the horizontal, and the electron is moving straight up with speed v_e. (Assume the +x direction is to the right and the + y direction is upward. Indicate the direction with the sign of your answer.) (a) Calculate the x and y components of the force that the proton exerts on electron. First calculate the electric field and magnetic field that the proton produces at the location of the electron, then calculate the forces that these fields exert on the electron. (Use the following as necessary for F_net x: \epsi _0, e, r, v_p, v_e, \theta, and c. Use the following as necessary for F_net, y: \mu_0, e, r, v_p, v_e, \theta, and c.) F_net, x = -1/4 \pi \epsi_0 e^2/r^2 + \mu_0/4 \pi e^2 v_ev_psin (\theta )/r^2 Proton 0 Vp r Ve Electron
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Related Book For
Income Tax Fundamentals 2013
ISBN: 9781285586618
31st Edition
Authors: Gerald E. Whittenburg, Martha Altus Buller, Steven L Gill
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