QuestionMay 14, 2025

Radioisotopes often emit one or more types of radiation, including alpha particles, beta particles, and gamma rays. The distance the radiation travels through matter before being absorbed increases in order from alpha to gamma.Which statement describes the best radioisotope that can be used for radioisotope imaging and for radionuclide therapy? It emits only gamma rays. It emits only alpha particles. It emits alpha and beta particles. It emits beta particles and gamma rays.

Radioisotopes often emit one or more types of radiation, including alpha particles, beta particles, and gamma rays. The distance the radiation travels through matter before being absorbed increases in order from alpha to gamma.Which statement describes the best radioisotope that can be used for radioisotope imaging and for radionuclide therapy? It emits only gamma rays. It emits only alpha particles. It emits alpha and beta particles. It emits beta particles and gamma rays.
Radioisotopes often emit one or more types of radiation, including alpha particles, beta particles, and gamma rays. The
distance the radiation travels through matter before being absorbed increases in order from alpha to gamma.Which
statement describes the best radioisotope that can be used for radioisotope imaging and for radionuclide therapy?
It emits only gamma rays.
It emits only alpha particles.
It emits alpha and beta particles.
It emits beta particles and gamma rays.

Solution
4.6(187 votes)

Answer

It emits beta particles and gamma rays. Explanation 1. Determine the properties of radiation types Gamma rays travel the furthest and are ideal for imaging due to their penetrating ability. Alpha particles have limited penetration, making them suitable for therapy but not imaging. Beta particles have moderate penetration. 2. Evaluate combinations for imaging and therapy For effective imaging and therapy, a combination of beta particles (for therapy) and gamma rays (for imaging) is optimal.

Explanation

1. Determine the properties of radiation types<br /> Gamma rays travel the furthest and are ideal for imaging due to their penetrating ability. Alpha particles have limited penetration, making them suitable for therapy but not imaging. Beta particles have moderate penetration.<br /><br />2. Evaluate combinations for imaging and therapy<br /> For effective imaging and therapy, a combination of beta particles (for therapy) and gamma rays (for imaging) is optimal.
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