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Biophysics & Medical Physics FAQ

Proton therapy has clinical advantage over conventional photon therapy because:

Protons deposit most energy at Bragg peak — minimal exit dose beyond tumour. Protons have a Bragg peak — sharp energy deposition at defined depth (set by proton energy) — sparing healthy tissue beyond the tumour.

Short Answer

Protons deposit most energy at Bragg peak — minimal exit dose beyond tumour is the best answer.

Biophysics questions work best when you translate anatomy or instrumentation back into plain physics: pressure gradients, flow, diffusion, energy deposition, imaging contrast, and signal-to-noise.

Protons have a Bragg peak — sharp energy deposition at defined depth (set by proton energy) — sparing healthy tissue beyond the tumour.

Why This Answer Is Correct

This is a Medium-level question in Biophysics & Medical Physics. The prompt is really testing whether you can connect the concept to its defining physical relationship instead of picking a nearby-but-wrong term.

Clinical wording can hide a simple physics core. Strip the scenario down to transport, force, energy, or measurement first.

Choices At A Glance

  • A. Protons are cheaper
  • B. Protons deposit most energy at Bragg peak — minimal exit dose beyond tumour
  • C. Protons are less ionising
  • D. They don't cause DNA damage

When similar options appear on an exam, eliminate the ones that break the core law, use the wrong units, or confuse a definition with a consequence.

Topic Snapshot

Topic: Biophysics & Medical Physics

Difficulty: Medium

Best next move: Re-state the governing law in your own words, then solve one more example from the same topic before moving on.