The most common isotope of uranium 2U has a half-life of 4.47 x 10 years, decaying to 92 234 Th by a emission. i) iv) Write down the nuclear decay equation. What is meant by the decay constant? Calculate the mass of uranium would be required for an activity of 6.00 μCi. Calculate the number of a particle emitted per second by 30.0 g of uranium. [1 Ci= 3.70 x 10¹⁰ decays/s]

Principles of Physics: A Calculus-Based Text
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Chapter30: Nuclear Physics
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Problem 18P
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The most common isotope of uranium 23 U has a half-life of 4.47 x 10⁹ years, decaying to
92
234 Th by a emission.
i)
ii)
iii)
iv)
Write down the nuclear decay equation.
What is meant by the decay constant?
Calculate the mass of uranium would be required for an activity of 6.00 µμCi.
Calculate the number of a particle emitted per second by 30.0 g of uranium.
[1 Ci = 3.70 x 10¹⁰ decays/s]
Transcribed Image Text:The most common isotope of uranium 23 U has a half-life of 4.47 x 10⁹ years, decaying to 92 234 Th by a emission. i) ii) iii) iv) Write down the nuclear decay equation. What is meant by the decay constant? Calculate the mass of uranium would be required for an activity of 6.00 µμCi. Calculate the number of a particle emitted per second by 30.0 g of uranium. [1 Ci = 3.70 x 10¹⁰ decays/s]
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