
College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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A proton traveling at 24.7° with respect to the direction of a magnetic field of strength 2.33 mT experiences a magnetic force of 6.38 × 10-17 N. Calculate (a) the proton's speed and (b) its kinetic energy in electron-volts.
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- A proton traveling at 17.8° with respect to the direction of a magnetic field of strength 3.75 mT experiences a magnetic force of 6.19 x 10-17 N. Calculate (a) the proton's speed and (b) its kinetic energy in electron-volts. (a) Number i (b) Number i Units Unitsarrow_forwardA proton traveling at 26.4° with respect to the direction of a magnetic field of strength 2.15 mT experiences a magnetic force of 8.13 × 10-17 N. Calculate (a) the proton's speed and (b) its kinetic energy in electron-volts.arrow_forwardIn 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= kgarrow_forward
- A particle of charge 18 µC feels a force of 2.4 × 10−4 N when it moves at a speed of 24 m/s in a direction perpendicular to a magnetic field. (a) What is the strength of the magnetic field in this region? (b) What is the force on the particle when it moves with a speed of 6.3 m/s at an angle of 25o relative to the direction of the magnetic field?arrow_forwardPlease help me answer this question. An electron moves at a speed of 8 x 10*5 m/s in a direction perpendicular to a field Magnetic uniform of 0.30 T. The magnetic force exerted on the electron is:arrow_forward
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