- (20) The table below shows the most commonly useful fusion reactions of the hydrogen isotopes deuterium and tritium. Choose one of the reactions from reactions 1,3,5,7 and one reaction from reactions 4 and 6 and, using the table of masses below, determine the energy released from the reaction in kJ/mole. Thermonuclear Fusion Probability Nucleus Mass(amu) Reaction D T He He He 2.013553 D+D→ He +n D+3DT+p D+ T→ *He + n D + 3He → He +p T+T He +2 n T+ 3He D + *He T + 3He →p+ SHe 1 50% 3.01604928 50% 4.002602 3 100% 3.016029 4 100% 5.012057 100% 1.007277 6. 43% 6% 1.0086649 Reaction Number (circle one) 135 7
- (20) The table below shows the most commonly useful fusion reactions of the hydrogen isotopes deuterium and tritium. Choose one of the reactions from reactions 1,3,5,7 and one reaction from reactions 4 and 6 and, using the table of masses below, determine the energy released from the reaction in kJ/mole. Thermonuclear Fusion Probability Nucleus Mass(amu) Reaction D T He He He 2.013553 D+D→ He +n D+3DT+p D+ T→ *He + n D + 3He → He +p T+T He +2 n T+ 3He D + *He T + 3He →p+ SHe 1 50% 3.01604928 50% 4.002602 3 100% 3.016029 4 100% 5.012057 100% 1.007277 6. 43% 6% 1.0086649 Reaction Number (circle one) 135 7
General Chemistry - Standalone book (MindTap Course List)
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Publisher:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Chapter20: Nuclear Chemistry
Section: Chapter Questions
Problem 20.98QP
Related questions
Question
The table below shows the most commonly useful fusion reactions of the hydrogen isotopes deuterium and
tritium. Choose one of the reactions from reactions 1,3,5,7 and one reaction from reactions 4 and 6 and, using
the table of masses below, determine the energy released from the reaction in kJ/mole.
a) Reaction Number (circle one) 1 3 5 7
Energy released:
b) Reaction Number (circle one) 4 6
Energy released:
![(20) The table below shows the most commonly useful fusion reactions of the hydrogen isotopes deuterium and
tritium. Choose one of the reactions from reactions 1,3,5,7 and one reaction from reactions 4 and 6 and, using
the table of masses below, determine the energy released from the reaction in kJ/mole.
Thermonuclear Fusion
Probability
Nucleus Mass(amu)
Reaction
2.013553
D+3D→ He +n
D+3D→ {T+ p
D + T →He +n
D + 3He →He +p
T + THe +2 n
T+ 3He D+ *He
T+ 3He p+ 5He
50%
T
He
He
He
ip
3.01604928
50%
4.002602
->
100%
3.016029
100%
100%
5.012057
43%
1.007277
->
6%
1.0086649
Reaction Number (circle one) 1 3 5 7
123 4567](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1c07f98b-a229-4f97-b3e2-6a7d31c7d7c7%2F9a048a59-8e60-418c-9ebd-8874eafe4393%2Fctq89ba_processed.jpeg&w=3840&q=75)
Transcribed Image Text:(20) The table below shows the most commonly useful fusion reactions of the hydrogen isotopes deuterium and
tritium. Choose one of the reactions from reactions 1,3,5,7 and one reaction from reactions 4 and 6 and, using
the table of masses below, determine the energy released from the reaction in kJ/mole.
Thermonuclear Fusion
Probability
Nucleus Mass(amu)
Reaction
2.013553
D+3D→ He +n
D+3D→ {T+ p
D + T →He +n
D + 3He →He +p
T + THe +2 n
T+ 3He D+ *He
T+ 3He p+ 5He
50%
T
He
He
He
ip
3.01604928
50%
4.002602
->
100%
3.016029
100%
100%
5.012057
43%
1.007277
->
6%
1.0086649
Reaction Number (circle one) 1 3 5 7
123 4567
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