Vanadium does not have moles but rather formula units. The formula unit for vanadium is a single atom. Therefore, the number of formula units in any number of atoms is equal to the number of atoms divided by Avogadro's Number, in this instance 7.17 X 10-3 formula units.
The answer is 15,2 moles.
1,67.1024 argon atoms is equal to 2,773 moles.
If it is 1.54 moles of Br atoms then the answer is 9.274 X 1023 atoms.If it is 1.54 moles of Br2 molecules then the answer is 1.855 X 1024 atoms.
10.0 moles K2SO4 (6.022 X 1023/1 mole K2SO4) = 6.02 X 1024 atoms of potassium sulfate ==========================
How many moles are there in 9.0333x1024 atoms of helium
2,80 1024 atoms of silicon equals 0,465 moles.
The answer is 15,2 moles.
1,67.1024 argon atoms is equal to 2,773 moles.
56 moles × (6.02 × 1023) = 3.37 × 1024 atoms
2.26*1024
If it is 1.54 moles of Br atoms then the answer is 9.274 X 1023 atoms.If it is 1.54 moles of Br2 molecules then the answer is 1.855 X 1024 atoms.
(2.16x10^24 atoms) x ( 1 mole/ 6.022x10^23 atoms) = 0.3586848223x10^1 which your answer should be 3.59 moles
10.0 moles K2SO4 (6.022 X 1023/1 mole K2SO4) = 6.02 X 1024 atoms of potassium sulfate ==========================
How many moles are there in 9.0333x1024 atoms of helium
10 moles LiBr (6.022 X 1023/1 mole LiBr)= 6.022 X 1024 atoms of lithium bromide=========================
(2.16x10^24 atoms) x ( 1 mole/ 6.022x10^23 atoms) = 0.3586848223x10^1 which your answer should be 3.59 moles
There are approximately 2.34 x 10^24 atoms in 7.75 moles of CH4. This can be calculated by multiplying Avogadro's number (6.022 x 10^23 atoms/mol) by the number of moles.