Δm = m(2-H) + m(2-H) - m(3-H) + m(1-H)
= 2.01410 + 2.01410 - 3.01605 - 1.00782
= 0.00433 u
= 0.00433 g/mol
= 4.33*10^-6 kg/mol
ΔE = Δm*c^2
=(4.33*10^-6)*(3*10^8)^2
= 3.897*10^11 J/mol
Answer: 3.897*10^11 J/mol
For the following fusion reaction, calculate the change in energy of the reaction in units of...
For the following fusion reaction, calculate the change in energy of the reaction in units of joules per mole. H+H + H+ H Atom or particle H-1 H-2 H-3 He-3 He-4 neutron Mass (amu) 1.00782 2.01410 3.01605 3.01603 4.00260 1.00866 Number 3.9 x 1011 J/mol
For the fusion reaction shown, calculate the change in energy of the reaction in units of joules per mole. H12+H12⟶H13+H11 Atom or particle Mass (amu) H-1 1.00782 H-2 2.01410 H-3 3.01605 He-3 3.01603 He-4 4.00260 neutron 1.00866
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The sun produces energy via fusion. One of the fusion reactions that occurs in the sun is 4 11H→4 2He+2 0 1e How much energy in joules is released by the fusion of 2.31 g of hydrogen-1? Express your answer to three significant figures and include the appropriate units.
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How much energy (in MeV) is released during the following fusion reaction? 1H + 2H → 3He Molar mass of 1H = 1.00728 g/mol Molar mass of 2H = 2.01355 g/mol Molar mass of 3He = 3.01493 g/mol 1 MeV = 1.60218 * 10-13 J Report your answer to one decimal place. Do not input a unit or a sign (+/-).
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