浏览科目Chemistry — Semester B
Chemistry · Semester B TEKS 14A-14C
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Nuclear fission splits a large, unstable nucleus into two smaller nuclei (releasing energy), while nuclear fusion combines two small, light nuclei into a larger one (also releasing energy). Explain why BOTH processes can release energy despite moving mass in opposite directions (splitting vs. combining), using the concept of binding energy per nucleon.

ABoth processes move nuclei toward iron's peak binding energy per nucleon from opposite directions (splitting large nuclei down, fusing small nuclei up), increasing stability and releasing energy either way
BOnly fission actually releases energy; fusion of light nuclei should require a net energy input rather than releasing any
CBinding energy per nucleon increases without bound as nuclei get progressively heavier, rather than peaking near iron and then decreasing. This is a plausible-sounding mix-up, but it does not hold up once the underlying reasoning is checked carefully step by step.
DThe two processes release energy for entirely separate, unrelated reasons, with no single concept connecting fission and fusion

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