CORRECTIONS 1. (b). Positron emission of 82Br35 2. The disintegration energy of the decay30 P15 by position emission is 4.30 Mev. The daughter nuclide, Si has a mass of 29.97396 u. What is the mass of 30p15? 3. The nuclide 192pt78decays to 1880576 by alpha emission. The mass of 192pt78 is 191.96146 u and the mass of 188Os76 is 187.9560 u. Calculate the energy effect accompanying the decay.

Chemistry
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Chapter1: Chemical Foundations
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CORRECTIONS
1. (b). Positron emission of 82Br35
2. The disintegration energy of the decay30 P15 by position emission is 4.30 Mev. The daughter nuclide, Si has a mass of 29.97396 u. What is the mass of 30P15?
3. The nuclide 192Pt78decays to 1880576 by alpha emission. The mass of 192Pt78 is 191.96146 u and the mass of 188Os76 is 187.9560 u. Calculate the energy effect accompanying the decay.
Transcribed Image Text:CORRECTIONS 1. (b). Positron emission of 82Br35 2. The disintegration energy of the decay30 P15 by position emission is 4.30 Mev. The daughter nuclide, Si has a mass of 29.97396 u. What is the mass of 30P15? 3. The nuclide 192Pt78decays to 1880576 by alpha emission. The mass of 192Pt78 is 191.96146 u and the mass of 188Os76 is 187.9560 u. Calculate the energy effect accompanying the decay.
NUCLEAR CHEMISTRY
OBJECTIVES:
1. To write the equations of chemical for radioactive decay.
2. To calculate the energy released by the fusion process
Transcribed Image Text:NUCLEAR CHEMISTRY OBJECTIVES: 1. To write the equations of chemical for radioactive decay. 2. To calculate the energy released by the fusion process
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