iii. An object passes through a mass spectrometer as illustrated below. The electric field between the plates of the velocity selector has a magnitude of 8 250 V/m, and the magnetic fields in both the velocity selector and the deflection chamber have magnitudes of 0.093 1 T. In the deflection chamber the particle strikes a photographic plate 39.6 cm removed from its exit point after traveling in a semicircle. What is the mass-to- charge ratio of the object?

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iii. An object passes through a mass spectrometer as illustrated below. The electric field between
the plates of the velocity selector has a magnitude of 8 250 V/m, and the magnetic fields in both the
velocity selector and the deflection chamber have magnitudes of 0.093 1 T. In the deflection
chamber the particle strikes a photographic plate 39.6 cm removed from its exit point after traveling
in a semicircle. What is the mass-to- charge ratio of the object?
Photographic
plate
E.
E-
Velocity selector
iv. Aqueous ions move at 1.0 m/s through a bloodstream of a person standing near a large
magnet. The magnetic field B = 0.254 T and makes an angle of 37.0° with the motion of the ions.
The bloodstream contains 100 cm3 of blood with a concentration of 3.00x 1020 cir1 ions per cubic
centimeter. Determine the magnetic force on the arm.
Transcribed Image Text:iii. An object passes through a mass spectrometer as illustrated below. The electric field between the plates of the velocity selector has a magnitude of 8 250 V/m, and the magnetic fields in both the velocity selector and the deflection chamber have magnitudes of 0.093 1 T. In the deflection chamber the particle strikes a photographic plate 39.6 cm removed from its exit point after traveling in a semicircle. What is the mass-to- charge ratio of the object? Photographic plate E. E- Velocity selector iv. Aqueous ions move at 1.0 m/s through a bloodstream of a person standing near a large magnet. The magnetic field B = 0.254 T and makes an angle of 37.0° with the motion of the ions. The bloodstream contains 100 cm3 of blood with a concentration of 3.00x 1020 cir1 ions per cubic centimeter. Determine the magnetic force on the arm.
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