give evidence for and descrube heavier elements during star formation and evolution.
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The arrangement of components heavier than iron and nickel requires the contribution of energy. Supernova blasts result when the centers of gigantic stars have depleted their fuel supplies and consumed everything into iron and nickel. The cores with mass heavier than nickel are believed to be shaped amid these blasts.
The components shaped in these stages go from oxygen through to iron. Amid a supernova, the star discharges a lot of energy and in addition neutrons, which permits components heavier than iron, for example, uranium and gold, to be created. In the supernova blast, these components are removed out into space.
The components shaped in these stages go from oxygen through to iron. Amid a supernova, the star discharges a lot of energy and in addition neutrons, which permits components heavier than iron, for example, uranium and gold, to be created. In the supernova blast, these components are removed out into space.
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