Use the graph in the figure below to find the half-life of isotope A. All you need is a sound understanding of the definition of half-life. 40 30 20 10 10 20 30 40 50 Time (days) Need Help? Read It Talk to a Tuter Grams of radionuclide
Nuclear Fusion
Nuclear fusion is a type of nuclear reaction. In nuclear fusion, two or more than two lighter atomic nuclei combine to form a heavier nucleus. During this process, an enormous amount of energy is released. This energy is called nuclear energy. Nuclear fusion is the energy source of the sun and stars.
Fusion Bomb
A fusion bomb is also known as a thermonuclear bomb or hydrogen bomb which releases a large amount of explosive energy during a nuclear chain reaction when the lighter nuclei in it, combine to form heavier nuclei, and a large amount of radiation is released. It is an uncontrolled, self-sustaining nuclear chain reaction where isotopes of hydrogen combine under very high temperature to form helium. They work on the principle of operation of atomic fusion. The isotopes of Hydrogen are deuterium and tritium, where they combine their masses and have greater mass than the product nuclei, get heated at high temperatures, and releases energy.
data:image/s3,"s3://crabby-images/78dfd/78dfdb23db9728ac0d865b3f517eae6ae000d354" alt="Use the graph in the figure below to find the half-life of isotope A. All you need is a sound understanding of the definition of half-life.
**Graph Explanation:**
- The graph displays the decay of two isotopes, A and B, over time in days.
- The x-axis represents time in days, ranging from 0 to 50 days.
- The y-axis represents the grams of radionuclide, ranging from 0 to 40 grams.
- Curve A starts at 40 grams and decreases over time.
- Curve B also starts at 40 grams and decreases more steeply than Curve A.
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