‘Atomic Diplomacy’: At Potsdam the President had seemed in a conciliatory mood toward the interests of the Soviet Union‚ traditional Russian concerns like those for an ‘ice free’ port were treated with an earnestness they didn’t deserve‚ and when it came to any serious measures like the fixing of borders post war‚ the American President would note that such important matters should rightly be postponed until the meeting of the “full peace conference” expected to take place sometime in the fall
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The dropping of two atomic bombs in Japan was a decision that took several years and a countless amount of people. During World War II‚ it was clear that the fighting was ruthless and many political figures felt the only way to stop the war was to drop the bombs. Since the atomic bombs were new technology‚ there were several arguments made about the idea and several outcomes had to be considered. The final decision to drop the bombs in 1945 was made through consideration of several different outcomes
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The atomic bomb is the most destructive weapon that has ever been used‚ so deadly it has never been used after the bombing of Hiroshima and Nagasaki. It was not necessary to drop the bomb on these cities as there were many other ways that they could have made Japan surrender without dropping/developing the atomic bomb.However many believe that the atomic bomb should have been dropped on Japan so that the casualties could have been minimized for the allies. The United States had made 2 bombs to decimate
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The Atomic Bomb The atomic bomb is a powerful‚ explosive nuclear weapon. It is fueled by the fission of the nuclei of specific amounts of plutonium or uranium‚ in a chain reaction. The strength of the explosion created by one of these bombs is equal to the strength of an explosion created by thousands of tons of TNT. The atomic bomb was first created in the early twentieth century. Physicists in the United States and Europe had discovered that the fission of uranium could be used to create
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Conclusions The purpose of this experiment was to find the relationship between a substance’s specific heat and its atomic weight. In the lab‚ the substances with the higher atomic weights had less specific heat. From this‚ we can conclude that specific heat and atomic weight have an inverse relationship‚ meaning as one decreases the other increases. The reason for this is because if atoms are small‚ or light‚ they have the ability to pack tightly together‚ leaving almost no space between them
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secret of the plutonium bomb and implosion to the Soviets‚ Fuchs allowed the Soviet bomb project to skip the length and astounding expensive development stage that had led the Manhattan project to that solution.” Fuchs alone sped the Soviet Union’s atomic bomb program up by months allowing them to skip months of expensive‚ tedious‚ and resource consuming work. “With the great deal of information stolen by Soviet spies‚ the question of its usefulness and applicability
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Chemistry 2500- Exercise C4 The Emission Spectrum of Atomic Hydrogen Objective The purpose of this lab was to calculate an experimental value for the Rydberg constant and then the ionization energy for the hydrogen atom. These values will be obtained by using a prism spectrograph to measure the wavelength value for a section of the visible line spectrum of atomic hydrogen. Theoretical Background When H+ combines with an electron it forms it’s excited state‚ H. This excited atom
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FUNCTIONS OF MONEY Money is something that people use every day. We earn it and spend it but do not often think much about it. Economics define money as any good that is widely accepted as final payment for goods and services. Money is so common that we rarely think about what it is. The characteristics of money include durability‚ divisibility‚ portability‚ and scarcity. Money acts as a unit of account‚ medium of exchange‚ and a store of money. First money is a store of value. Store of value
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Problem: For a p-electron‚ orbital angular moment is (A) √2h (B) h (C) √6h (D) 2h Solution: Orbital angular momentum L = √l ( l + 1 )h where h = h/2π ∴ L for p electron = √1 ( 1 + 1 )h = √2h ∴ (A) Problem: For which of the following species‚ Bohr theory doesn’t apply (A) H (B) He+ (C) Li2+ (D) Na+ Solution: Bohr theory is not applicable to multi
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PHYSICAL CHEMISTRY CHAPTER 1 Principle of Chemistry Relative Atomic Masses of atoms & molecules Mass number & atomic number Atomic structure (neutrons‚ protons & electrons) Mole concept & conversion Avogadro’s concept Empirical & molecular formulae Isotopes FHSC1114 Physical Chemistry Centre for Foundation Studies‚ UTAR Objectives To define relative atomic masses of atoms & molecules To define & determine mass no. & atomic no. To determine no. of neutrons‚ protons & electrons To understand
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