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Exercise · Q18

Q.Explain the process of nuclear fusion. Why does fusion require an extremely high temperature to occur, and where does it happen naturally?

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Nuclear fusion is the combination of two light nuclei into a single heavier one, releasing energy because the product nucleus is more tightly bound per nucleon than the separate light nuclei were (Section 8.7). Every nucleus, however, carries a positive charge, so two approaching nuclei feel a strong, repulsive Coulomb force pushing them apart long before they are close enough for the short-range attractive strong nuclear force to bind them together. Overcoming this repulsion requires giving the nuclei a very large amount of kinetic energy, which in bulk matter means raising it to an extremely high temperature, typically 10710^7 to 108 K10^8\ \text{K}, at which nuclei collide fast and often enough to fuse despite their mutual repulsion -- which is why fusion is called a THERMONUCLEAR reaction. Fusion occurs naturally, on an enormous scale, in the cores of the Sun and other stars, wh …

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