In a mass spectrometer, the mass of a particle is determined by it's circular path in a magnetic field of valu potential difference AV 500 Volts. As shown, this particle enters a chamber with a uniform magneti chamber. Part A Determine the mass of the particle. kg

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In a mass spectrometer, the mass of a particle is determined by it's circular path in a magnetic field of value B= 1T. Here, we consider a particle of charge q=te = 1.6 x 10"C that is accelerated across a
potential difference AV
:- 500 Volts. As shown, this particle enters a chamber with a uniform magnetic field. The particle makes a circular path and strikes the detector a distance I=8 Cm from where it entered the
chamber.
Part A
Determine the mass of the particle.
Vo AEO
m 3=
kg
Transcribed Image Text:In a mass spectrometer, the mass of a particle is determined by it's circular path in a magnetic field of value B= 1T. Here, we consider a particle of charge q=te = 1.6 x 10"C that is accelerated across a potential difference AV :- 500 Volts. As shown, this particle enters a chamber with a uniform magnetic field. The particle makes a circular path and strikes the detector a distance I=8 Cm from where it entered the chamber. Part A Determine the mass of the particle. Vo AEO m 3= kg
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