Consider the fusion reaction H+H → He + n. ▼ Compute the energy liberated in this reaction in MeV and in joules. Express your answer in megaelectronvolts. Q= 3.27 MeV Submit Previous Answers ✓ Correct Part B
Consider the fusion reaction H+H → He + n. ▼ Compute the energy liberated in this reaction in MeV and in joules. Express your answer in megaelectronvolts. Q= 3.27 MeV Submit Previous Answers ✓ Correct Part B
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![Consider the fusion reaction 2H + H → 2He + n.
Part A
Compute the energy liberated in this reaction in MeV and in joules.
Express your answer in megaelectronvolts.
Q=
= 3.27 MeV
Submit
Part B
Correct
Q =
Previous Answers
Express your answer in joules.
Submit
VE ΑΣΦ
Request Answer
?
J](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F73a75771-70b1-4bb7-8045-da7c904db311%2F0741914a-6f63-4e61-8a04-43f6a6d49af7%2Fw8dirfg_processed.png&w=3840&q=75)
Transcribed Image Text:Consider the fusion reaction 2H + H → 2He + n.
Part A
Compute the energy liberated in this reaction in MeV and in joules.
Express your answer in megaelectronvolts.
Q=
= 3.27 MeV
Submit
Part B
Correct
Q =
Previous Answers
Express your answer in joules.
Submit
VE ΑΣΦ
Request Answer
?
J
![Consider the fusion reaction 2H + H → ¿He + £n.
Part C
Compute the energy per mole of deuterium, remembering that the gas is diatomic.
Express your answer in joules.
G| ΑΣΦ
fusion =
Submit
Part D
Q fusion
Qcombustion
Request Answer
Submit
Compare it with the heat of combustion of diatomic molecular hydrogen, which is about 2.90x105 J/mol.
VO
ΑΣΦ
www
Request Answer
?
J
?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F73a75771-70b1-4bb7-8045-da7c904db311%2F0741914a-6f63-4e61-8a04-43f6a6d49af7%2Fwuks9oj_processed.png&w=3840&q=75)
Transcribed Image Text:Consider the fusion reaction 2H + H → ¿He + £n.
Part C
Compute the energy per mole of deuterium, remembering that the gas is diatomic.
Express your answer in joules.
G| ΑΣΦ
fusion =
Submit
Part D
Q fusion
Qcombustion
Request Answer
Submit
Compare it with the heat of combustion of diatomic molecular hydrogen, which is about 2.90x105 J/mol.
VO
ΑΣΦ
www
Request Answer
?
J
?
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