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The formula for sulfuric acid is H₂SO₄. A mole of sulfuric acid would have a mass of approximately 98 grams.
The molar mass of sulfuric acid (H2SO4) is 98.08 g/mol. Therefore, one mole of sulfuric acid would have a mass of 98.08 grams.
Sulfuric acid (H₂SO₄) contains two hydrogen atoms in the molecule. To find the percentage of hydrogen in sulfuric acid, divide the atomic mass of hydrogen by the molar mass of sulfuric acid and multiply by 100. This calculation gives approximately 2.03% hydrogen in sulfuric acid by mass.
The equivalent mass of sulfuric acid (H2SO4) is calculated as its molar mass divided by the number of replaceable hydrogen ions it can donate. Since sulfuric acid can donate 2 hydrogen ions (H+), the equivalent mass is half of the molar mass. Therefore, the equivalent mass of sulfuric acid is approximately 49 g/mol.
The molar mass of sulfuric acid (H2SO4) is approximately 98.08 g/mol. To calculate the mass of sulfuric acid, you need to know the number of moles of the substance and then apply the formula mass = number of moles * molar mass.
The formula for sulfuric acid is H₂SO₄. A mole of sulfuric acid would have a mass of approximately 98 grams.
The molar mass of sulfuric acid (H2SO4) is 98.08 g/mol. Therefore, one mole of sulfuric acid would have a mass of 98.08 grams.
Sulfuric acid (H₂SO₄) contains two hydrogen atoms in the molecule. To find the percentage of hydrogen in sulfuric acid, divide the atomic mass of hydrogen by the molar mass of sulfuric acid and multiply by 100. This calculation gives approximately 2.03% hydrogen in sulfuric acid by mass.
The equivalent mass of sulfuric acid (H2SO4) is calculated as its molar mass divided by the number of replaceable hydrogen ions it can donate. Since sulfuric acid can donate 2 hydrogen ions (H+), the equivalent mass is half of the molar mass. Therefore, the equivalent mass of sulfuric acid is approximately 49 g/mol.
The molar mass of sulfuric acid (H2SO4) is approximately 98.08 g/mol. To calculate the mass of sulfuric acid, you need to know the number of moles of the substance and then apply the formula mass = number of moles * molar mass.
The molecular maass of sulfuric acid (98,08) is greater than the molecular mass of water (18).
To determine the mass of strontium chloride that reacts with 300 g of sulfuric acid, you need to know the balanced chemical equation for the reaction between strontium chloride and sulfuric acid. From the equation, you can determine the mole ratio between strontium chloride and sulfuric acid. Then, you can use the molar mass of strontium chloride to calculate the mass that reacts with 300 g of sulfuric acid.
The molar mass of sulfuric acid is 98 grams per mole.
A 40 grams per liter solution of sulfuric acid would be approximately a 4% solution. This is calculated by dividing the mass of sulfuric acid by the total mass of the solution and multiplying by 100.
1 gm mole of Sulphuric Acid (H2SO4) weights 98 gm.
To find the number of moles of atoms of oxygen in sulfuric acid (H2SO4), we need to calculate the molar mass of sulfuric acid. The molar mass of sulfuric acid is 98 g/mol. Oxygen constitutes 64 g/mol in sulfuric acid. Therefore, in 49 grams of sulfuric acid, there are 49/98 = 0.5 moles of sulfuric acid. Since each mole of sulfuric acid contains 4 moles of oxygen atoms, there are 0.5 moles x 4 = 2 moles of oxygen atoms in 49 grams of sulfuric acid.
512 GRAMS Divide the quantity by the SG: EG1000 litres divide by 1.28 = 781.25 litres per tonne. dumb*** has to use percent sulfuric acid .4*.391=.1564 *1000=156ml of sulfuric acid 156*1.28=200.2 grams H2SO4 in .4L and is 5.1M