13.2 atomic mass units = 2.1919113 × 10-23 grams. (1 atomic mass unit = 1.66053886 × 10-24 grams).
Diamonds weighing 23 carats means that each diamond weighs a total of 23 carats. Carat is a unit of weight used to measure gemstones, with one carat equalling 0.2 grams. So, a 23-carat diamond is quite large and valuable.
To find the mass of 6.02 x 10^23 atoms of an element, you would multiply the atomic mass of the element (x) by Avogadro's number (6.02 x 10^23 molecules/mol) to get the mass in grams. The result would be x grams.
The molar mass of sodium is approximately 23 grams per mole. So, for 0.71 moles of sodium, the mass would be 0.71 moles * 23 grams/mole = 16.33 grams.
The mass of an avogadro number of atoms in grams is numericaly equivalent to the amu mass of the atom. 6.023 * 10^23.
The molar mass of sodium is approximately 23 grams per mole.
13.2 atomic mass units = 2.1919113 × 10-23 grams. (1 atomic mass unit = 1.66053886 × 10-24 grams).
23
Diamonds weighing 23 carats means that each diamond weighs a total of 23 carats. Carat is a unit of weight used to measure gemstones, with one carat equalling 0.2 grams. So, a 23-carat diamond is quite large and valuable.
Gallons can't be converted to grams. Gallons measure volume, while grams measure mass.
The molar mass of sodium is approximately 23 grams per mole.
To find the number of moles of Na in 42 grams, we can use the molar mass of Na, which is approximately 23 grams/mol. First, calculate the number of moles by dividing the given mass by the molar mass: 42 grams / 23 grams/mol = 1.83 moles of Na.
To find the mass of 6.02 x 10^23 atoms of an element, you would multiply the atomic mass of the element (x) by Avogadro's number (6.02 x 10^23 molecules/mol) to get the mass in grams. The result would be x grams.
The molar mass of sodium is approximately 23 grams per mole. So, for 0.71 moles of sodium, the mass would be 0.71 moles * 23 grams/mole = 16.33 grams.
To find the mass of 1.64x10^23 molecules of C6H12O6, you need to determine the molar mass of one molecule of C6H12O6. Then, use Avogadro's number (6.022x10^23 molecules/mol) to convert the number of molecules to moles. Finally, multiply the number of moles by the molar mass to get the mass in grams.
The mass of an avogadro number of atoms in grams is numericaly equivalent to the amu mass of the atom. 6.023 * 10^23.
Grams can't be converted to teaspoons. Grams measure mass, while teaspoons measure volume.