If air is 80% N15 and 20% 016. Using the data below, calculate the average distance a thermal neutron travels in air before having an interaction. Air density = 1.202 gm/cm3 016 atomic wt = 15.994 gm N15 atomic wt = 14.0067 gm %3D o16 total microscopic cross section = 4.03 b section N15 total microscopic cross !3! 12.20 b %3D 129.328 cm O 1.855 cm O 123.762 cm 12.653 cm

Modern Physics
3rd Edition
ISBN:9781111794378
Author:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Publisher:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Chapter14: Nuclear Physics Applications
Section: Chapter Questions
Problem 38P
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If air is 80% N15 and 20% 016. Using the data below, calculate the average distance
a thermal neutron travels in air before having an interaction.
Air density = 1.202 gm/cm3
016 atomic wt =
15.994 gm
N15 atomic wt = 14.0067 gm
O10 total microscopic cross section = 4.03 b
section
N15 total microscopic cross
12.20 b
%3D
129.328 cm
O 1.855 cm
O 123.762 cm
12.653 cm
Transcribed Image Text:If air is 80% N15 and 20% 016. Using the data below, calculate the average distance a thermal neutron travels in air before having an interaction. Air density = 1.202 gm/cm3 016 atomic wt = 15.994 gm N15 atomic wt = 14.0067 gm O10 total microscopic cross section = 4.03 b section N15 total microscopic cross 12.20 b %3D 129.328 cm O 1.855 cm O 123.762 cm 12.653 cm
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