Each of the electrons in the beam of a television tube has a kinetic energy of 18.0 keV. The tube is oriented so that the electrons move horizontally from south to north. The vertical component of Earth's magnetic field points down and has a magnitude of 47.0 µT. (Ignore the northward component of Earth's field.) In what direction will the electron beam deflect? south east down north up west Submit Answer Answer Submitted: Your final submission will be graded after the due date. Tries 1/16 Previous Tries Calculate the acceleration of a single electron due to the Earth's magnetic field. 6.56x1014 m/s^2 You are correct. Previous Tries Your receipt no. is 158-8977 How far will the beam deflect if it moves a distance of 20.0 cm to the north through the television tube? |-2.96x10^(-3)m The electron's motion is technically circular, but you can assume the acceleration is constant (in the same direction) if it makes your calculation easier. Submit Answer Incorrect. Tries 1/16 Previous Tries
Each of the electrons in the beam of a television tube has a kinetic energy of 18.0 keV. The tube is oriented so that the electrons move horizontally from south to north. The vertical component of Earth's magnetic field points down and has a magnitude of 47.0 µT. (Ignore the northward component of Earth's field.) In what direction will the electron beam deflect? south east down north up west Submit Answer Answer Submitted: Your final submission will be graded after the due date. Tries 1/16 Previous Tries Calculate the acceleration of a single electron due to the Earth's magnetic field. 6.56x1014 m/s^2 You are correct. Previous Tries Your receipt no. is 158-8977 How far will the beam deflect if it moves a distance of 20.0 cm to the north through the television tube? |-2.96x10^(-3)m The electron's motion is technically circular, but you can assume the acceleration is constant (in the same direction) if it makes your calculation easier. Submit Answer Incorrect. Tries 1/16 Previous Tries
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