Fundamentals of Physics Extended
Fundamentals of Physics Extended
10th Edition
ISBN: 9781118230725
Author: David Halliday, Robert Resnick, Jearl Walker
Publisher: Wiley, John & Sons, Incorporated
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Chapter 26, Problem 81P

A beam of 16 MeV deuterons from a cyclotron strikes a copper block. The beam is equivalent to current of 15 μA. (a) At what rate do deuterons strike the block? (b) At what rate is thermal energy produced in the block?

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A Van de Graaff generator  produces a beam of 2.00-MeV deuterons, which are heavy hydrogen nuclei containing a proton and a neutron. (a) If the beam current is 10.0 μA, what is the average separation of the deuterons? (b) Is the electrical force of repulsion among them a significant factor in beam stability? Explain.
In proton beam therapy, a beam of high-energy protons is used to kill cancerous cells in a tumor. In one system, the beam, which consists of protons with an energy of 2.8×10−11J2.8×10−11J, has a current of 76 nAnA. The protons in the beam mostly come to rest within the tumor. The radiologist has ordered a total dose corresponding to 3.4×10−3J3.4×10−3J of energy to be deposited in the tumor. A)How many protons strike the tumor each second? B)How long should the beam be on in order to deliver the required dose?
In proton bean therapy, a beam of high-energy protons is used to kill canerous cells in a tumor. In one system, the beam, which consists of protons with an energy of 2.8×10^−11J, has a current of 80 nA.The protons in the beam mostly come to rest within the tumor. The radiologist has ordered a total dose corresponding to 3.8×10^−3 J of energy to be deposited in the tumor.Part A How many protons strike the tumor each second?Express your answer as a number of protons.Part B How long should the beam be on in order to deliver the required dose?Express your answer with the in seconds.

Chapter 26 Solutions

Fundamentals of Physics Extended

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