One Uranium atom contains 92 protons as its atom number is 92. Therefore, 6 atoms contain 6*92=552 protons.
Every atom categorised within the same periodic element should contain the same atomic number, which represents the number of protons within the nucleus. Each element is unique in how many protons reside in one atom, for example all oxygen atoms would contain eight protons and hydrogen atoms would only contain one proton.
To find the number of uranium atoms in 6.2 g of pure uranium, you would first determine the molar mass of uranium, which is approximately 238.03 g/mol. Next, use Avogadro's number (6.022 x 10^23 atoms/mol) to convert the grams of uranium to number of atoms. So, 6.2 g of uranium would equal approximately 6.2 x (6.022 x 10^23 / 238.03) uranium atoms.
All the isotopes of uranium (in neutral state) have 92 electrons.
Uncombined atoms have the same number of neutrons as protons only if they are isotopes of the element, which means the atoms have the same number of protons but different numbers of neutrons. Otherwise, atoms with the same number of protons and neutrons would be considered as different elements.
If a solid piece of uranium goes through a process like fission, the amount of uranium left would depend on the specific fission reactions that occur. During fission, uranium atoms split into smaller atoms, releasing energy and more neutrons which can continue the reaction. Some uranium atoms may be converted into other elements through the fission process, so the amount of remaining uranium would be less than the original piece.
d. contain 6.02 x 1023 particles
Every atom categorised within the same periodic element should contain the same atomic number, which represents the number of protons within the nucleus. Each element is unique in how many protons reside in one atom, for example all oxygen atoms would contain eight protons and hydrogen atoms would only contain one proton.
Uranium being element 92, it has 92 protons. If not ionized it also has 92 electrons. U-241 has 241 protons and neutrons together, so it would have 149 neutrons.
92 protons.
To find the number of uranium atoms in 6.2 g of pure uranium, you would first determine the molar mass of uranium, which is approximately 238.03 g/mol. Next, use Avogadro's number (6.022 x 10^23 atoms/mol) to convert the grams of uranium to number of atoms. So, 6.2 g of uranium would equal approximately 6.2 x (6.022 x 10^23 / 238.03) uranium atoms.
After 4.47 billion years, roughly half of the original atoms of uranium-238 would have decayed to lead-206 through alpha decay. This means there would be about 30 atoms of uranium-238 remaining.
To convert uranium atoms to grams, you need to know the molar mass of uranium. Uranium's molar mass is approximately 238.03 g/mol. Therefore, 7.5 x 10^21 uranium atoms would weigh approximately 0.625 grams.
All the isotopes of uranium (in neutral state) have 92 electrons.
92. All isotopes of Uranium have 92 protons. The number of protons in each element is represented by the atomic number of that element. Uranium is atomic # 92, so it will always have 92 protons. The difference in atomic mass (that's the 234 here) is due to difference in number of neutrons. Atomic mass is calculated (#of protons + # of neutrons), so Uranium-234 has 92 protons and 142 neutrons. Uranium-235 would have 92 protons and 143 neutrons and so forth. The number of protons contained in the nucleus of ANY atom will remain constant in ALL isotopes of the same element. Ex. Carbon-12 has 6 protons and 6 neutrons, Carbon-13 has 6 protons and 7 neutrons, etc. Carbon has an atomic number of 6. If the number of protons in the nucleus of an atom were different, it would no longer be the same element. Ex. Carbon - atomic #6 - has 6 protons with one more proton in the nucleus, it would have 7, and have atomic # 7.... then it would just be...... Nitrogen! Nitrogen - atomic #7 - has 7 protons
You think probably to neptunium.
Neon atoms have 10 protons.
All atoms of the same element have the same number of protons. Atoms of different elements have differing numbers of protons.