The molar mass of glucose is 180,16 g.
The molar mass of PbSO4 (lead(II) sulfate) is approximately 303.3 g/mol. This can be calculated by adding the molar masses of each element in the compound: lead (Pb) has a molar mass of 207.2 g/mol, sulfur (S) has a molar mass of 32.1 g/mol, and oxygen (O) has a molar mass of 16.0 g/mol.
The molar mass of H2Te = 129.61588 g/mol
No, the molar mass does not differ in isoelectronic compounds. Isoelectronic compounds have the same number of electrons and therefore the same atomic mass, resulting in the same molar mass.
The molar mass of strontium phosphate, Sr3(PO4)2, can be calculated by adding the molar masses of strontium (Sr) and phosphate (PO4). The molar mass of strontium is 87.62 g/mol, and the molar mass of phosphate is 94.97 g/mol. Therefore, the molar mass of strontium phosphate is 87.623 + 30.972 = 310.64 g/mol.
To find the number of moles in 19.2 g of CS2, we need to divide the given mass by the molar mass of CS2. The molar mass of CS2 is 76.14 g/mol. So, 19.2 g ÷ 76.14 g/mol ≈ 0.252 moles of CS2.
To convert moles to grams, you need to know the molar mass of the compound. The molar mass of CS2 is approximately 76.14 g/mol. To find the grams of CS2 in 10.00 moles, you would multiply the number of moles by the molar mass to get 761.4 grams.
To determine the amount of CS2 that can be produced from 100 grams of S8, we need to first convert 100 grams of S8 to moles using the molar mass of S8 and then use the balanced chemical equation to find the moles of CS2 produced. Finally, we convert moles of CS2 to grams using the molar mass of CS2.
Carbon disulfide (CS2) is composed of one carbon atom and two sulfur atoms. To calculate the percent composition, divide the mass of each element by the molar mass of CS2, then multiply by 100 to get the percentage. The percent composition of CS2 is approximately 45.7% carbon and 54.3% sulfur.
The molar mass of carbon disulfide (CS2) is 76.14 g/mol. To calculate the moles of CS2 in 5.66 g, divide the mass by the molar mass: 5.66 g / 76.14 g/mol = 0.074 moles. Since heat is absorbed when CS2 is formed, we know this process is endothermic. You will need to know the molar enthalpy of formation (ΔHf) of carbon disulfide to calculate the amount of heat absorbed.
To determine the amount of sulfur present in 27.5 grams of carbon disulfide, we need to consider the molar mass of the compound. The molar mass of carbon disulfide (CS2) is 76.142 g/mol. From the chemical formula, one molecule of CS2 contains 2 sulfur atoms. As there are 32.065 grams of sulfur in each mole of CS2, you would calculate the grams of sulfur in 27.5 grams of CS2 using stoichiometry.
CS2 has stronger intermolecular forces, which result in a higher boiling point compared to CO2. CS2 molecules are more polarizable due to the presence of sulfur, leading to stronger London dispersion forces. As a result, CS2 exists as a liquid at room temperature while CO2, being nonpolar, exists as a gas.
Molar Mass of Carbon + Molar Mass of Silicon = Molar Mass of SiC. 12.0107 + 28.0855 = 40.0962 g / mol.
The molar mass of sulfur is approximately 32.06 grams per mole.
The molar mass of glucose is 180,16 g.
what is the molar mass for NaC1 !!!???!!!???!!!??? --- The molar mass of sodium chloride (NaCl) is 57,958 622 382.
to find molar mass you add the molar mass of the carbons 3(amu)+ molar mass of the hydrogens 8(amu) to find molar mass you add the molar mass of the carbons 3(amu)+ molar mass of the hydrogens 8(amu)