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Nuclear Bomb. A nuclear bomb is a weapon that uses nuclear energy for destruction. Nuclear energy is released either from nuclear fission or fusion. Generally, nuclear fission is used as it produces an enormous amount of energy. When one free neutron hits the nucleus in an atom of radioactive material, it strikes two or three more free neutrons.
There are two main types of atomic bombs: fission bombs and fusion bombs. Fission Bombs. In a fission bomb, the nucleus of the atom is split apart to make the explosion.
In hydrogen-bomb (nuclear fusion) explosions, blasts of as much as 100 Megatons (of TNT) have been recorded. For your information, a Megaton is the energy that would be released if 1,000,000 tons of TNT had exploded, and 1 g of TNT releases 1000 calories
The hydrogen bomb is also referred to as the H-bomb. Consequently, both the hydrogen bomb definition and the H-bomb definition are a type of thermonuclear bomb fueled by nuclear fusion, the source ...
A nuclear explosion can be caused by fission or fusion. In a fission process, there is the splitting of a large nucleus into smaller nuclei. ... The Soviets tested a nuclear bomb on August 29 ...
In hydrogen-bomb (nuclear fusion) explosions, blasts of as much as 100 Megatons (of TNT) have been recorded. For your information, a Megaton is the energy that would be released if 1,000,000 tons of TNT had exploded, and 1 g of TNT releases 1000 calories
In the very first atomic bombs, the fissile material that was used was Uranium-235, an unstable uranium isotope. The critical mass for a sphere of Uranium-235 is around 104 lbs. (47 kg).
Atomic Bombings of Hiroshima and Nagasaki. The only two times nuclear bombs were detonated in acts of war were by the United States in Japan, shortly before the end of World War II. These bombs ...
Explore the life of atomic bomb creator, J. Robert Oppenheimer. ... Oppenheimer pulled together a first-class team of scientists to test the possibilities of building a nuclear bomb. Across the ...
The energy released by the nuclear bomb that destroyed hiroshima was equivalent to 12.4 kilotons of tnt or 9.0x10^26 MeV. Calculate the energy in joules and the mass that was converted to energy in th; A nuclear bomb explosion results in a mass decrease of about 2.10 g, between the initial and the final ingredients. How much energy is released?