Uranium

Difference Between Uranium 234 235 and 238

Difference Between Uranium 234 235 and 238

U-238 is the most abundant uranium followed by U-U- 235 and 234. The difference between the three isotopes is the number of neutrons present in the nucleus. U-238 has 4 more neutrons than U-234 and three more neutrons than U-235. ... U-235 is used as fuel in nuclear reactors and/or weapons.

  1. What is the difference between uranium-235 and uranium 238?
  2. Is U-235 or U-238 more radioactive?
  3. What is the atomic difference between uranium-235 and uranium 238 quizlet?
  4. What is U 239 in what ways is it different from U-238?
  5. Why is U 238 more stable than U-235?
  6. Why is U 238 not used as a fuel?
  7. Can you touch uranium?
  8. How is U 235 separated from U 238?
  9. Can you eat uranium?
  10. What is the difference between uranium 233 and uranium 235?
  11. What is the best description for the atomic number of an atom?
  12. Which parts of an atom contribute most to its mass?

What is the difference between uranium-235 and uranium 238?

U-235 is the main fissile isotope of uranium. ... The nucleus of the U-235 atom contains 92 protons and 143 neutrons, giving an atomic mass of 235 units. The U-238 nucleus also has 92 protons but has 146 neutrons – three more than U-235 – and therefore has a mass of 238 units.

Is U-235 or U-238 more radioactive?

Though uranium is highly associated with radioactivity, its rate of decay is so low that this element is actually not one of the more radioactive ones out there. Uranium-238 has a half-life of an incredible 4.5 billion years. Uranium-235 has a half-life of just over 700 million years.

What is the atomic difference between uranium-235 and uranium 238 quizlet?

What is the atomic difference between uranium-235 and uranium-238? Uranium-235 has three fewer neutrons than uranium-238. have more neutrons than the usual nitrogen atom.

What is U 239 in what ways is it different from U-238?

In what ways is it different from U-238? U-239 is an isotope of uranium. It has one more neutron in the nucleus than U-238.

Why is U 238 more stable than U-235?

U-238 is the most abundant uranium followed by U-U- 235 and 234. The difference between the three isotopes is the number of neutrons present in the nucleus. U-238 has 4 more neutrons than U-234 and three more neutrons than U-235. U-238 is more stable thus being more abundant naturally.

Why is U 238 not used as a fuel?

U is not usable directly as nuclear fuel, though it can produce energy via "fast" fission. In this process, a neutron that has a kinetic energy in excess of 1 MeV can cause the nucleus of 238U to split in two.

Can you touch uranium?

Purified uranium metal or uranium oxide is chemically toxic (like lead) but not very radioactive. You can handle it. Don't eat it.

How is U 235 separated from U 238?

Thermal diffusion uses the transfer of heat across a thin liquid or gas to accomplish isotope separation. The process exploits the fact that the lighter 235U gas molecules will diffuse toward a hot surface, and the heavier 238U gas molecules will diffuse toward a cold surface.

Can you eat uranium?

eating large doses of uranium would be very dangerous if you consumed 25 milligrams of it, you'd immediately start to experience kidney damage and anywhere past 50 milligrams could cause complete, kidney failure and even death.

What is the difference between uranium 233 and uranium 235?

Uranium 236 is formed in the nuclear fuel from uranium 235, after neutrons captures that did not cause fission. ... Uranium 233 is a fissile nucleus that does not exist naturally, such as plutonium 239, which it is close to by its mode of production. It is produced by neutron capture in reactors containing thorium.

What is the best description for the atomic number of an atom?

The atomic number or proton number (symbol Z) of a chemical element is the number of protons found in the nucleus of every atom of that element. The atomic number uniquely identifies a chemical element. It is identical to the charge number of the nucleus.

Which parts of an atom contribute most to its mass?

Atoms have most of their mass in the nucleus not only because protons and neutrons are heavier than electrons, but also because together, protons and neutrons outnumber electrons by roughly 2:1.

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