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  2. Hydrogen Bomb Definition, Explosion & History - Lesson -...

    study.com/academy/lesson/the-hydrogen-bomb-definition-explosion-facts.html

    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 ...

  3. Atomic Bomb Definition, Creation & Legacy - Study.com

    study.com/academy/lesson/atomic-bomb-creation-history.html

    What is an Atomic Bomb? An atomic bomb is a weapon of mass destruction that derives power from the rapid release of nuclear energy. The destruction this bomb inflicts is in the form of heat, blast ...

  4. Atomic Bomb Lesson for Kids: Facts & Definition - Study.com

    study.com/academy/lesson/atomic-bomb-lesson-for-kids-facts-definition.html

    An atomic bomb gets its power either by breaking up the nucleus of an atom or by forcing the ... the nucleus of the atom is split apart to make the explosion. To set off the bomb, a single ...

  5. Atomic Bombings of Hiroshima & Nagasaki | Overview & Aftermath

    study.com/learn/lesson/atomic-bombings-hiroshima-nagasaki-overview-decision...

    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 ...

  6. Strontium-90, a radioactive isotope, is a major product of an...

    homework.study.com/explanation/strontium-90-a-radioactive-isotope-is-a-major...

    Strontium-90, a radioactive isotope, is a major product of an atomic bomb explosion. It has a half-life of 32.9 years. a. Calculate the first order rate constant {eq}(year^{-1}) {/eq} for nuclear decay. b. Calculate the fraction of {eq}^{90}Sr {/eq} that remains after 22 half-lives.

  7. A 2.5 gram sample of an isotope of strontium-90 was formed in a...

    homework.study.com/explanation/a-2-5-gram-sample-of-an-isotope-of-strontium-90...

    Strontium-90, a radioactive isotope, is a major product of an atomic bomb explosion. It has a half-life of 32.9 years. a. Calculate the first order rate constant (year^{-1}) for nuclear decay. b. Cal; The half life of U-238 is 4.5 times 10^9 years. A sample of rock of mass 1.6 g produces 29 disintegrations per second. Find percent by mass of U ...

  8. Critical Mass & Nuclear Chain Reaction - Lesson - Study.com

    study.com/academy/lesson/critical-mass-controlling-chain-reactions.html

    Calculations of critical mass are what led to the large size of the very first atomic bombs. ''Little Boy,'' the atomic bomb dropped on the city of Hiroshima, was 10 feet long, weighed 9,700 ...

  9. Dr. J. Robert Oppenheimer | Biography, Quotes & Inventions

    study.com/learn/lesson/robert-oppenheimer-quotes-atomic-bomb.html

    Father of the Atomic Bomb: Dr. J. Robert Oppenheimer. J. Robert Oppenheimer became a household name overnight when the bombs were dropped on Japan. J. Robert Oppenheimer is known as the father of ...

  10. How does the hydrogen bomb differ from the atomic bomb?

    homework.study.com/.../how-does-the-hydrogen-bomb-differ-from-the-atomic-bomb.html

    The Hydrogen bomb is a themonuclear weapon that employs nuclear fusion to produce a high energy explosion. The magnitude of the explosion produced by the hydrogen bomb goes around the 10,000 kilotons of TNT. The bomb consists of a fission chamber that contains an unstable element like plutonium-239; the fusion fuel chamber, that consists of a ...

  11. In the explosion of an atomic bomb, the wavelength that carried...

    homework.study.com/explanation/in-the-explosion-of-an-atomic-bomb-the...

    In the explosion of an atomic bomb, the wavelength that carried the most energy was measured at the moment when the sphere of fire had a radius of 2 m. The value found was lambda_m = 299 nm. Knowing that the spectrum closely resembles that of a blackbody,