Osmotic forces related to protein concentration differences are referred to as ________ forces.
Osmotic forces related to protein concentration differences are referred to as ________ forces.
If the osmotic pressure of the protein solution is 5.95 torr, what is the osmotic pressure in atmospheres?
The osmotic pressure of an aqueous solution of a certain protein was measured in order to determine the protein’s molar mass. The solution contained 3.50-g of protein dissolved in sufficient water to form 5.00-L of solution. The osmotic pressure of the solution at 25oC was found to be 1.54-mmHg. (Hint: Remember to convert mmHg to atm) Calculate the molar mass of the protein.
A protein solution containing 80.0 mg of the protein (dissolved in water) displays an osmotic pressure of 319.88 Pa at 310.15 K. If the volume of the protein solution is 16.0 mL, what is the molar mass of the protein
A protein solution containing 90.0 mg of the protein (dissolved in water) displays an osmotic pressure of 319.88 Pa at 310.15 K. If the volume of the protein solution is 18.0 mL, what is the molar mass of the protein?
A protein solution containing 90.0 mg of the protein (dissolved in water) displays an osmotic pressure of 319.88 Pa at 310.15 K. If the volume of the protein solution is 13.0 mL, what is the molar mass of the protein? g/mol
I need help with this ~
The osmotic pressures of mystery protein X are given below as a function of mass concentration c/(gL') 1.00 3.00 (kPa) 0.0200 0.120 Determine the molar mass of the protein in g/mol. Show any data transformations required below. Draw a graph which would enable you to determine the information required to solve this problem. You may use your graphing calculator to solve the problem but I still need to see the graph.
0.00100g of a certain protein is dissolved in 1.00ml of solution. The osmotic pressure of the solution is found to be 1.12 torr at 25° C. Calculate the molar mass of the protein. π = C x R x T x i
What is the molarity of the protein solution if the osmotic pressure is 5.80 torr and the temperature is 23.1℃? Assume that the van't Hoff factor is 1.00
A solution of 7.50mg of a small protein in 5.00ml aqueous solution has an osmotic pressure of 7.95 torr at 23.1 degree Celsius. Calculate the molar mass of the protein.
0.20 grams of a small protein is dissolved in 100.0 mL water. The osmotic pressure of the solution at 25 degrees Celsius is 0.0129 atm. What is the molecular weight of the protein?