1. Calculate the energy change in magnitude of the change in energy (in J/mol of reactant) for this reaction. o'n+3°LI 1H+2*He 2. Calculate the energy change in magnitude of the change in energy (in J/mol of reactant) for this reaction. 1940K+.1°c 1840 Ar 3. Calculate the energy change in magnitude of the change in energy (in J/mol of reactant) for this reaction. sl0B +1'H "Be + 2*He Particle Mass (amu) 1.00727 i'p o'n 1.00866 0.00055 39.962383 10.012937 7.016929 1.007825 40AR 7Be 3.016049 "He 4.002603 39.963998 40K Li 6.015122 く

University Physics Volume 2
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Chapter2: The Kinetic Theory Of Gases
Section: Chapter Questions
Problem 54P: (a) Using data from the previous problem, find the mass of nitrogen, oxygen, and argon in 1 mol of...
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1. Calculate the energy change in magnitude of the change in energy (in J/mol of reactant) for this reaction.
o'n + 3°LI
+ H+2*He
2. Calculate the energy change in magnitude of the change in energy (in J/mol of reactant) for this reaction.
1940K+.1°c
3. Calculate the energy change in magnitude of the change in energy (in J/mol of reactant) for this reaction.
510B +1'H
"Be + 2*He
Mass (amu)
1.00727
1.00866
0.00055
39.962383
Particle
'p
o'n
40 Ar
10.012937
"Be
7.016929
1.007825
3.016049
4.002603
39.963998
6.015122
4He
40K
Li
Transcribed Image Text:1. Calculate the energy change in magnitude of the change in energy (in J/mol of reactant) for this reaction. o'n + 3°LI + H+2*He 2. Calculate the energy change in magnitude of the change in energy (in J/mol of reactant) for this reaction. 1940K+.1°c 3. Calculate the energy change in magnitude of the change in energy (in J/mol of reactant) for this reaction. 510B +1'H "Be + 2*He Mass (amu) 1.00727 1.00866 0.00055 39.962383 Particle 'p o'n 40 Ar 10.012937 "Be 7.016929 1.007825 3.016049 4.002603 39.963998 6.015122 4He 40K Li
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