It is HNO3 so one equivalent H+ to one mole
To calculate the molarity of nitric acid, you need to determine the number of moles of barium hydroxide used in the neutralization reaction. From there, you can use the balanced chemical equation to find the moles of nitric acid present in the solution. Finally, divide the moles of nitric acid by the volume of the solution in liters to find the molarity.
It depends on how the solution is made. The typically noted makeup is a 1:3 ratio of nitric acid to hydrochloric acid. You could technically make aqua regia with different ratios of component acids, but the reactions wouldn't proceed at a ideal or predictable rate.
Two steps. Find molarity of nitric acid and need moles HNO3.Then find pH. 1.32 grams HNO3 (1 mole HNO3/63.018 grams) = 0.020946 moles nitric acid ------------------------------------- Molarity = moles of solute/Liters of solution ( 750 milliliters = 0.750 Liters ) Molarity = 0.020946 moles HNO3/0.750 Liters = 0.027928 M HNO3 ----------------------------------finally, - log(0.027928 M HNO3) = 1.55 pH ==========( could call it 1.6 pH )
HNO3 is Nitric Acid Compare with HNO2 ; Nitrous Acid. Note the difference in the formulas and the names. Accounted for by the different oxidation states of nitrogen .
The IUPAC name for nitric acid is "nitric acid." But its Periodic name is HNO3
To calculate the molarity of nitric acid, you need to determine the number of moles of barium hydroxide used in the neutralization reaction. From there, you can use the balanced chemical equation to find the moles of nitric acid present in the solution. Finally, divide the moles of nitric acid by the volume of the solution in liters to find the molarity.
HNO3 is Nitric Acid Compare with HNO2 ; Nitrous Acid. Note the difference in the formulas and the names. Accounted for by the different oxidation states of nitrogen .
It depends on how the solution is made. The typically noted makeup is a 1:3 ratio of nitric acid to hydrochloric acid. You could technically make aqua regia with different ratios of component acids, but the reactions wouldn't proceed at a ideal or predictable rate.
Two steps. Find molarity of nitric acid and need moles HNO3.Then find pH. 1.32 grams HNO3 (1 mole HNO3/63.018 grams) = 0.020946 moles nitric acid ------------------------------------- Molarity = moles of solute/Liters of solution ( 750 milliliters = 0.750 Liters ) Molarity = 0.020946 moles HNO3/0.750 Liters = 0.027928 M HNO3 ----------------------------------finally, - log(0.027928 M HNO3) = 1.55 pH ==========( could call it 1.6 pH )
No, it does not
nitric acid is heterogeneous.
The IUPAC name for nitric acid is "nitric acid." But its Periodic name is HNO3
The number of nitric acid molecules is 28,6723.10e23.
Amount present in 0.50 L * 16 mol/L is 8.0 mol HNO3.The mass of it will be 8.0 mol * 63.01 g/mol = 504 gThis highly concentrated acid solution has a high density of about 1.4 kg/L
Nitric acid lead to nitrates.
Yes, nitric acid is homogeneous.
nitric acid be used insted of hypophrosphous acid