The figure shows a schematic diagram of a simple mass spectrometer, consisting of a velocity selector...
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The figure shows a schematic diagram of a simple mass spectrometer, consisting of a velocity selector and a particle detector and being used to separate singly ionized atoms (q+e 1.602e-19 C) of gold (Au) and molybdenum (Mo). The electric field inside the velocity selector has magnitude E = 1.787-104 V/m and points toward the top of the page, and the magnetic field has magnitude B = 1.19 T and points out of the page. Source Velocity selector Mass separator a) Calculate the velocity, Vo, of the ions that make it through the velocity selector (those that travel in a straight line). 1.5017x10 m/s You are correct. Your receipt no. is 155-5717 Previous Tries b) The gold ions (represented by the black circles) exit the particle detector at a distance d-36.50 cm from the entrance slit, while the molybdenum ions (represented by the gray circles) exit the particle detector at a distance d. 18.076 cm from the entrance slit. The mass of a gold ion is mgold -3.27-10-25 kg. Calculate the mass of a molybdenum ion. Submit Answer Incorrect. Tries 8/100 Previous Tries Mo+ Au The figure shows a schematic diagram of a simple mass spectrometer, consisting of a velocity selector and a particle detector and being used to separate singly ionized atoms (q+e 1.602e-19 C) of gold (Au) and molybdenum (Mo). The electric field inside the velocity selector has magnitude E = 1.787-104 V/m and points toward the top of the page, and the magnetic field has magnitude B = 1.19 T and points out of the page. Source Velocity selector Mass separator a) Calculate the velocity, Vo, of the ions that make it through the velocity selector (those that travel in a straight line). 1.5017x10 m/s You are correct. Your receipt no. is 155-5717 Previous Tries b) The gold ions (represented by the black circles) exit the particle detector at a distance d-36.50 cm from the entrance slit, while the molybdenum ions (represented by the gray circles) exit the particle detector at a distance d. 18.076 cm from the entrance slit. The mass of a gold ion is mgold -3.27-10-25 kg. Calculate the mass of a molybdenum ion. Submit Answer Incorrect. Tries 8/100 Previous Tries Mo+ Au
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Physics
ISBN: 978-0077339685
2nd edition
Authors: Alan Giambattista, Betty Richardson, Robert Richardson
Posted Date:
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