what is the equation for glycerol dissolved in
water?
Typically the glycerol is defined as "soluble" in water, in other words form a solution before reaction.
But we can THEORETICALLY form this reaction to be an alcohol (a weak acid)

Or as an equation:
C3H7O2OH ⇒ C3H7O2O− + H+ for the first part, the most important basically.
What is the minimum mass of glycerol (C3H8O3) that must be dissolved in 895 mg of water to prevent the solution from freezing at −15.0°C? (Assume ideal behavior.)
Suppose a solution of 0.615 g of glycerol is dissolved in 10.0 g of ethanol. Upon testing, you determined the new freezing point for the mixture to be -115.9 °C. If the normal freezing point of pure ethanol is-114.6 °C and its freezing point depression constant (K) equals 1.99 C/m, what is the molar mass of glycerol?
lithium formate (HCOOLi) is dissolved in water. Write the equation for the hydrolyzing ion from this salt reacting with water.
1- At 25 oC the Henry’s Law constant for carbon dioxide (CO2) dissolved in water is 3.3 x 10-2 mol/L atm. Calculate the solubility of CO2 if the partial pressure of carbon dioxide gas inside a bottle of Fizzy Cola Drink is 6 atm at 25 C 2- Using Raoult’s Law, calculate vapor pressure lowering, DP = C · Po, when 14.0 mL of glycerol (C3H8O3) is added to 496.0 mL of water at 50.0 C. The density of glycerol...
A solution of glycerol, C3H8O3, in water is prepared by mixing 345.1 g C3H8O3 with 1749 g of water. The molarity was found to be 1.846 M. Calculate a) the molality of the glycerol solution b) the density of the glycerol solution
NaCN forms a basic solution when dissolved in water. Write the net ionic equation for the reaction that supports this statement. (Write the reaction involving the basic species)
A 2.350×10−2 M solution of glycerol (C3H8O3) in water is at 20.0∘C. The sample was created by dissolving a sample of C3H8O3 in water and then bringing the volume up to 1.000 L. It was determined that the volume of water needed to do this was 999.0 mL . The density of water at 20.0∘C is 0.9982 g/mL. Include units. Part A: Calculate the molality of the glycerol solution. Part B: Calculate the mole fraction of glycerol in this solution....
Carbon dioxide dissolves in water to form carbonic acid, which
is primarily dissolved CO2. Dissolved CO2 satisfies the equilibrium
equation The acid dissociation constants listed in most standard
reference texts for carbonic acid actually apply to dissolved CO2.
For a CO2 partial pressure of 1.8×10–4 bar in the atmosphere, what
is the pH of water in equilibrium with the atmosphere? (For
carbonic acid Ka1 = 4.46× 10–7 and Ka2 = 4.69× 10–11).
Carbon dioxide dissolves in water to form carbonic...
A 2.450×10−2 MM solution of glycerol (C3H8O3C3H8O3) in water is at 20.0∘C∘C. The sample was created by dissolving a sample of C3H8O3C3H8O3 in water and then bringing the volume up to 1.000 LL. It was determined that the volume of water needed to do this was 999.0 mLmL . The density of water at 20.0∘C∘C is 0.9982 g/mLg/mL. Calculate the mole fraction of glycerol in this solution. Calculate the concentration of the glycerol solution in percent by mass. Calculate the...
1.3g of glycerol, C3H8O3,is mixed with water to form a solution with a volume of 0.25L at 35oC. What is the osmotic pressure (in atmospheres) of the solution.