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5. as the mass of the nucleus increases, what happens to the ratio of n…

Question

  1. as the mass of the nucleus increases, what happens to the ratio of neutrons to protons in stable isotopes?

the neutron:proton ratio decreases.
the neutron:proton ratio increases.
the neutron:proton ratio remains 1:1.
the neutron:proton ratio remains 1.5:1.

Explanation:

Brief Explanations

For light - weight stable isotopes (e.g., \(^{12}\text{C}\) with \(n:p = 1:1\)), as the mass of the nucleus increases (e.g., heavier elements like \(^{238}\text{U}\)), the electrostatic repulsion between protons increases. Neutrons provide additional strong - force binding (without adding electrostatic repulsion) to stabilize the nucleus. So, more neutrons are needed relative to protons.

Answer:

The neutron:proton ratio increases.