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Chapter 27, Problem 34P

(II) The path of protons emerging from an accelerator must be bent by 90° by a “bending magnet” so as not to strike a barrier in their path a distance d from their exit hole in the accelerator. Show that the field B in the bending magnet, which we assume is uniform and can extend over an area d × d, must have magnitude B ( 2 m K / e 2 d 2 ) 1 2 , where m is the mass of a proton and K is its kinetic energy.

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iii) Calculate the radius for the helical path of the proton which is shot into the field of flux density B=0.080i T with velocity 2x10°i+3×10°j m/s.
(30) Earth’s field strength is 1.0 gauss pointing northward at the surface in the plane of the equator.That field drops off with distance from earth’s center cubed, so that it can be written as B =B0r3earthr3where r is distance from earth’s rotation axis and B0 = 1 gauss. Is there a distance from earth wherea proton can ”orbit” the earth being held in orbit by the magnetic force? Show whether or not this isreasonable/possible.
(a) Triply charged uranium-235 and uranium-238 ions are being separated in a mass spectrometer. (The much rarer uranium-235 is used as reactor fuel.) The masses of the ions are 3.90 X 10-25 kg and 3.95 X 10-25 kg,respectively, and they travel at 3.00 X 105 m/s in a 0.250-T field. What is the separation between their paths when they hit a target after traversing a semicircle? (b) Discuss whether this distance between their paths seems to be big enough to be practical in the separation of uranium-235 from uranium-238.
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Magnets and Magnetic Fields; Author: Professor Dave explains;https://www.youtube.com/watch?v=IgtIdttfGVw;License: Standard YouTube License, CC-BY