The “Little Boy” and “Fat Man” atomic bombs dropped on Hiroshima and Nagasaki at the end of World War II are the only nuclear weapons used in warfare ... so far. But that could soon change—in a February address to Moscow, Russian President Vladimir Putin provided a thinly veiled th...
has become very restricted, but if they were to be given a second chance, they would do very well politically as well as economically. The Japanese are a very strong people, and it would be hard for them to get over the fact that two of their cities were obliterated in World War II....
Here’s how much deadlier today’s nukes are compared to WWII atomic bombs. With so much at stake, it’s important to understand what these things are capable of.
Atoms are the basis of all the elements in the universe, the building blocks of all visible matter, and the secret to nuclear power.
Hydrogen bombs, or thermonuclear bombs, are more powerful than atomic or "fission" bombs. The difference between thermonuclear bombs and fission bombs begins at the atomic level. [The 10 Greatest Explosions Ever] Fission bombs, like those used to devastate the Japanese cities of Nagasaki and Hiros...
Though many conventional weapons use chemical reactions to explode, chemical weapons do not depend on explosive force. Chemical weapons generally do not produce a disaster zone as large as that of nuclear weapons, but they are classified as WMDs because of the indiscriminate nature of their ...
increasing the production of nuclear weapons. The U.S. stockpile of atomicweapons—which in June 1948 stood at about 50 bombs—would riserapidly to some 300 such weapons by June 1950. This was just thebeginning. AEC Commissioner Lewis Strauss circulated a memo arguingthat U.S. military ...
The theory comes down to five premises: elements, in their purest state, consist of particles called atoms; atoms of a specific element are all the same, down to the very last atom; atoms of different elements can be told apart by their atomic weights; atoms of elements unite to form che...
It is used in weapons because it is so dense, it self-ignites at high temperatures and pressures, and because it becomes sharper –“adiabatic shearing” – as it penetrates armor plating, according to the International Atomic Energy Agency. ...
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