Fluorodeoxyglucose (FDG) containing radioactive fluorine-18 undergoes positron decay and is one of the contrasting agents used in Positron Emission Tomagraphy (PET). A. Write the nuclear decay equation for F-18. 3. If a patient received an injection of 57.8 Ci of FDG at 8:00 a.m., what is the activity remaining (in mCi) at 10:40 p.m.? Show how to answer this question with a clearly labeled decay curve and just with equations/calculations.
Fluorodeoxyglucose (FDG) containing radioactive fluorine-18 undergoes positron decay and is one of the contrasting agents used in Positron Emission Tomagraphy (PET). A. Write the nuclear decay equation for F-18. 3. If a patient received an injection of 57.8 Ci of FDG at 8:00 a.m., what is the activity remaining (in mCi) at 10:40 p.m.? Show how to answer this question with a clearly labeled decay curve and just with equations/calculations.
Chemistry
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Chapter1: Chemical Foundations
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
Transcribed Image Text:2. Fluorodeoxyglucose (FDG) containing radioactive fluorine-18 undergoes positron decay and is one of the
contrasting agents used in Positron Emission Tomagraphy (PET).
A. Write the nuclear decay equation for F-18.
B. If a patient received an injection of 57.8 Ci of FDG at 8:00 a.m., what is the activity remaining (in mCi)
at 10:40 p.m.? Show how to answer this question with a clearly labeled decay curve and just with
equations/calculations.
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