The ratio of the osmotic pressures of 0 .30 M NaCl and 0 .10 M CaCl 2 has to be given. Concept introduction: Osmosis is the process by which net movement of solvent into a expanse of higher solute concentration via semi permeable membrane. Osmotic pressure is the pressure that is needed to stop osmosis. Osmotic pressure of the solution is directly proportional to the concentration of the solution. We can calculate osmotic pressure by using this formula is given by, Osmotic pressure (π) = iMRT Where, i- Von’tHoff’s factor M – Molarity of the solution (mol/L) R- Ideal gas constant (0.08206 L atm mol -1 K -1 ) T-Temperature in Kelvin
The ratio of the osmotic pressures of 0 .30 M NaCl and 0 .10 M CaCl 2 has to be given. Concept introduction: Osmosis is the process by which net movement of solvent into a expanse of higher solute concentration via semi permeable membrane. Osmotic pressure is the pressure that is needed to stop osmosis. Osmotic pressure of the solution is directly proportional to the concentration of the solution. We can calculate osmotic pressure by using this formula is given by, Osmotic pressure (π) = iMRT Where, i- Von’tHoff’s factor M – Molarity of the solution (mol/L) R- Ideal gas constant (0.08206 L atm mol -1 K -1 ) T-Temperature in Kelvin
Solution Summary: The author explains that osmosis is the process by which net movement of solvent into a expanse of higher solute concentration via semi permeable membrane. Osmotic pressure is directly proportional to the concentration of
The ratio of the osmotic pressures of 0.30MNaCl and 0.10MCaCl2 has to be given.
Concept introduction:
Osmosis is the process by which net movement of solvent into a expanse of higher solute concentration via semi permeable membrane.
Osmotic pressure is the pressure that is needed to stop osmosis. Osmotic pressure of the solution is directly proportional to the concentration of the solution. We can calculate osmotic pressure by using this formula is given by,
For the titration of a divalent metal ion (M2+) with EDTA, the stoichiometry of the reaction is typically:
1:1 (one mole of EDTA per mole of metal ion)
2:1 (two moles of EDTA per mole of metal ion)
1:2 (one mole of EDTA per two moles of metal ion)
None of the above
Please help me solve this reaction.
Indicate the products obtained by mixing 2,2-dimethylpropanal with acetaldehyde and sodium ethoxide in ethanol.
Chapter 8 Solutions
General, Organic, And Biological Chemistry, Hybrid (with Owlv2 Quick Prep For General Chemistry Printed Access Card)
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