Introduction To Health Physics
Introduction To Health Physics
5th Edition
ISBN: 9780071835275
Author: Johnson, Thomas E. (thomas Edward), Cember, Herman.
Publisher: Mcgraw-hill Education,
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Chapter 2, Problem 2.43P
To determine

The energy equivalence of 1 AMU of matter, in MeV?

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2.00 mol of the helium is confined to a 2.00-L container at a pressure of 11.0 atm. The atomic mass of helium is 4.00 u, and the conversion between u and kg is 1 u = 1.661 ××10−27 kg. 1)Calculate vrms. (Express your answer to three significant figures.)
How much energy in kJ is released to form one mole of 75As from protons, electrons, and neutrons if the nucleus has a mass of 74.921594 amu? The masses of the proton, electron and neutron are 1.00728 amu, 0.000549 amu and 1.00867 amu, respectively.   -3.15e10 kJ/mol   -6.31e10 kJ/mol   -6.31e13 kJ/mol   3.15e13 kJ/mol
The mass of a neutron, mn=10^-27 kg is trapped inside a nucleus of a cubical box of size 10^-14m with impenetrable walls. Calculate the energy of neutron in Mev.

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Introduction To Health Physics

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