
College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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(a) Find the direction of the force on a proton (a positively
charged particle) moving through the magnetic fields in
Figure P19.2, as shown. (b) Repeat part (a), assuming the
moving particle is an electron.

Transcribed Image Text:Figure P19.2 .
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- Consider the following figures. (a) Find the direction of the force on a proton (a positively charged partide) moving through the magnetic fields in the figure, as shown. Field Force Direction (b) Repeat part (a), assuming the moving particle is an electron. Field Force Directionarrow_forwardA proton moves with a speed of 963953 m/s. It is travelling in the xy plane. A magnetic field of 7.3 mT is pointing in the z-direction. What is the radius (in meters) of the circular path this electron will follow?arrow_forwardA charged particle moves into a region of uniform magnetic field, goes through half a circle, and then exits that region. The particle is either a proton or an electron (you must decide which). It spends 130 ns in the region. What is the magnitude of B? Give your answer in T. (mproton=1.672x1027 kg, melectron-9.1lx10-3! kg, e-1.602x10-19 C) OBarrow_forward
- A beam of electrons is accelerated from rest through a 134-V potential beam then enters a uniform magnetic field and follows a circular path of radius r = 21.9 cm in the field region. a) What is the angle between the magnetic field and the electrons velocity? b) What is the magnitude of the magnetic field?arrow_forwardPlease solve it!arrow_forwarda) What is the magnitude and strength of the magnetic field? b) Find the magnitude and direction of the elecritric field that would allow this proton to pass through undeflected?arrow_forward
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